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Quinones-Marques and Pena-Cruz 1985 Water resources investigations in Puerto Rico and the US Virgin Islands

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Research & Technical Reports
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Zenodo 8301362 — USVI freshwater gray literature
Kind
Research Report
Date
1984
Pages
48
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Native Text

Water Resources Investigations in Puerto Rico and the U.S. Virgin Islands Open-File Report 85-556 by Ferdinand Quinones-MaYquez and Gilberto Pena-Cruz 1984-1985 Programs and Activities of the U.S. Geological Survey Water Resources Division Caribbean District San Juan, Puerto Rico 1985 CONTENTS A message from the Caribbean District Chief .................. VI Water resources investigations and activities during 1984-85 . 1 Hydrologic Data Section ..................................... 1 Surface-water stream-flow network in Puerto Rico ........ 2 Minimum (low) flow investigations ....................... 3 Surface-water stream-flow network in the U.S. Virgin Islands ............................................ 4 Surface-water quality network in Puerto Rico ............ 5 Ground-water levels network in Puerto Rico and the U.S. Virgin Islands ..................................... 6 Ground-water quality monitoring ......................... 7 Suspended-sediment data collection ...................... 8 Water-use data program in Puerto Rico and the U.S. …

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Water Resources Investigations in Puerto Rico and the U.S. Virgin Islands Open-File Report 85-556 by Ferdinand Quinones-MaYquez and Gilberto Pena-Cruz 1984-1985 Programs and Activities of the U.S. Geological Survey Water Resources Division Caribbean District San Juan, Puerto Rico 1985 CONTENTS A message from the Caribbean District Chief .................. VI Water resources investigations and activities during 1984-85 . 1 Hydrologic Data Section ..................................... 1 Surface-water stream-flow network in Puerto Rico ........ 2 Minimum (low) flow investigations ....................... 3 Surface-water stream-flow network in the U.S. Virgin Islands ............................................ 4 Surface-water quality network in Puerto Rico ............ 5 Ground-water levels network in Puerto Rico and the U.S. Virgin Islands ..................................... 6 Ground-water quality monitoring ......................... 7 Suspended-sediment data collection ...................... 8 Water-use data program in Puerto Rico and the U.S. Virgin Islands ............................................ 9 Hydrologic investigations Section - 1984-85 projects ......... 11 Ground-water flow in the Guanica Valley ................. 12 Water resources of Vieques Island, Puerto Rico .......... 13 Comprehensive appraisal of the ground-water resources of the North Coast Limestone aquifers of Puerto Rico .. 14 Ground-water recharge in the lower Rio Grande de Arecibo Valley ............................................. 15 Surface-water investigation in the Lesser Antilles ...... 16 Water-use for rice irrigation in northern Puerto Rico ... 17 Water resources of the Humacao-Naguabo area ............. 18 Hydrology and chemical quality of the principal springs in Puerto Rico ..................................... 19 IV Reconnaisance of fifty solid-waste disposal sites ....... 20 Preliminary assessment of the ground-water system in the Jobos area ......................................... 21 Effects of channelization on aquifer recharge along Rfo Bucana'............................................. 22 Ground-water in the Lajas Valley ........................ 23 Inventory of water wells in Puerto Rico ................. 24 Rainfall - runoff simulation in the Rio Grande de Lofza at Quebrada Arenas watershed, Puerto Rico ...........25 Suspended-sediment transport in the Rio Grande de Lofza basin, Puerto Rico ................................. 2b Ground-water in the Juana Diaz - Santa Isabel area ...... 27 Other activities of the Hydrologic Investigations sections during 1984-85 .......................................... 28 Monitoring of Organic contaminants in Ground-water near Vega Alta, Barceloneta, and Guayama ................ 28 Monitoring of trihalomethanes in drinking water ......... 28 Ground-water flow simulation in the Vega Alta to Dorado area ............................................... 29 New projects started in fiscal year 1984 ..................... 30 The Caribbean Islands Aquifer-RASA ...................... 30 Caribbean Islands - RASA - Geochemistry ................. 31 Other activities ............................................. 32 Automatic data processing unit .......................... 32 Administrative section .................................. 33 Reports published and/or approved during 1984-85 ........ 34 Water resources information center ...................... 35 International Symposium of Tropical Hydrology and 2nd Caribbean Islands Hater Resources Congress ......... 35 Drilling and logging operations ......................... 35 The application of Rn (222) in measuring ground-water discharge to the Rfo Grande de Manatf, Puerto Rico.. 36 Appendices 1-3: Lists of surface, quality and ground-water stations ................................................ 37 Index ........................................................ 43 V| A MESSAGE FROM THE CARIBBEAN DISTRICT CHIEF: This report summarizes the activities of the Caribbean District of the U.S. Geological Survey, Water Resources Division during the last 18 months (October 1983-June 1985). The period. was characterized by one of continued successes in the ongoincr programs, development of new projects, completion of a record number of projects and reports, and record employment and financial growth. During this period the District completed 7 projects and initiated 4 new investigations. Work continued on 7 ongoing projects in addition to the basic-data collection programs. The District staff increased to about 55 employees, from about 50 in 1983. Equally important. Federal and Commonwealth funding of the water resources program resulted in a record operating budget of about 2.8 million dollars. The perspectives for the coming 1986 fiscal year are as promising as during the past few years. Two new projects were initiated in October, as well as several sattellite smaller sub-projects. Under federal funding, a comprehensive appraisal of the regional aquifer systems in Puerto Rico and the U.S. Virgin Islands began last October. The project will concentrate in the aquifers of the south coast of Puerto Rico and the Kingshill ' aquifer in St. Croix. In Puerto Rico it will supple- ment the ongoing "Comprehensive Appraisal of the North Coast Limestone Ground Water Resources" project, now in its second year. A second ground-water oriented project, also federally funded by the Environmental Protection Agency, will result in the publica- tion of a comprehensive "atlas" of the most important aquifers in P. R. and the U.S.V.I. We will continue our efforts to maintain the flow of publications of prior investigations initiated several years ago. The computer-modeling efforts developed during he last three years are now being used effectively by the Department of Natural Resources and the Puerto Rico Aqueduct and and the Puerto Rico Aqueduct and Sewer Authority for practical applications in the area of water use and management. The results of our investigations of the quality of ground waters in Puerto Rico have resulted in the "discovery" of several areas contamin- nated with toxic organic compounds. Three of these sites are now part of the "EPA Superfund" list of priority sites. A milestone of the activities during the year was the cele- bration of the "International Symposium on Tropical Hydrology". The USGS organized and sponsored the activity with the cooper- ation of several Commonwealth and Federal agencies. Five papers were presented by District's hydrologists. The mission of the Caribbean District of the USGS is to provide Commonwealth, U.S. Virgin Islands, and Federal agencies timely, accurate water-related information necessary for the management of the region's water resources. To achieve this goal, the District will continue to labor as a partner of the cooperating agencies. I feel very proud of the achievements of our staff. We are also very grateful1 to the cooperating agencies that support the program. Ferdinand Quinones District Chief, Caribbean District WRD PROGRAMS AND ACTIVITIES OF THE U.S. GEOLOGICAL SURVEY. WATER RESOURCES DIVISION, CARIBBEAN DISTRICT 1984-85 WATER RESOURCES INVESTIGATIONS AND ACTIVITIES DURING 1984-85 HYDROLOGIC-DATA SECTION: The Hydrologic Data Section of the Caribbean District is responsible for the operation of the networks of basic-data stations. These networks, both short-range for special projects or long-range for general water-resources accounting, are the "backbone" of the District's program. This Section is also re- sponsible for the preparation of the series of reports "Water Resources Data for Puerto Rico and the U.S. Virgin Islands." The hydrologlc records section personnel. SURFACE-WATER STREAMFLOW NETWORK: The Caribbean District operates a network of streamflow gaging stations throughout Puerto Rico and the U.S. Virgin islands. In Puerto Rico the network is operated under the general water-resources investigations programs coordinated by the Environmental Quality Board in cooperation with the following Commonwealth and Federal Agencies: Department of Natural Resources - (DNR) Puerto Rico Industrial Development Company.- (PRIDCO) Puerto Rico Aqueduct and Sewer Authority - (PRASA) Administration for Agricultural Development - (AFDA) Department of Agriculture - (DOA) Department of Health - (DOH) Puerto Rico Rice Corporation - (PRRC) Planning Board - (PB) Puerto Rico Energy and Power Authority - (PREPA) Department of Transportation and Public Works - (DTPW) U.S. Army Corps of Engineers - (COE) Water Resources Research Institute of the University of Puerto Rico (Mayaguez Campus) - (WRRI) Four stations are financed as part of the federally funded USGS National Stream Quality Accounting Network (NASQAN). During 1984-85, the surface-water network in Puerto Rico included 53 recording and 1 non-recording stations (fig. 1). Ten stations were discontinued while 15 new stations were constructed, These new stations were established in support of the following projects: North Coast Limestone - 5 Rio Grande de Loiza Sedimentation Study South Coast Vegetables Area - 3 Lajas Valley - 2. - 5 FIGURE 1.--Location of surface-water stations In Puerto Rico. MINIMUM FLOWS: Minimum flows (better known as low flows) are an important parameter for water-resourses planning and management. Knowledge about the frequency and magnitude of minimum flows are essential for waste-allocation programs, water-supply facilities design, and general resource assessments. During the 1983 fiscal year, the Caribbean District initiated within the basic-data program a project to, define the magnitude and frequency of low flows in Puerto Rico. A network of about 100 measuring sites was selected in the eastern part of the Island. Two sets of measurements have been obtained each year representing drought and recession condi- tions at the streams. An Island-wide run to measure the total outflow to the ocean was also completed each year. The project, directed by Engineer Eloy Colon-Dieppa, will continue over the next seven years extending to other areas in Puerto Rico (fig.la), " EXPLANATION SURFACE WATER STATION* IOW-FLOW STATION FIGURE 1a.~iocatlon of low-flow partial-record stations fn eastern toiorto Rico. U.S. VIRGIN ISLANDS: In the U.S. Virgin Islands, operation on the network of 4 recording streamflow stations was continued in cooperation with the U.S. Virgin Islands Department of Public Works (fig. 2). In addition, one new recording streamflow station was established on Hawknest Bay Gut, St. John in support of the rainfall-runoff sedimentation study funded by the U.S. Park Service. Bonne Resolution Turpeftllne ST/THOMAS U.S. VIRGIN ISLANDS ^Guinea Out i^^, ST. JOHN 6 MILES Location of Islands not to scale. FIGURE 2.~Loc*tlon of surf*c9-water stations In the U.S. Ml gin Islands. SURFACE WATER-QUALITY NETWORK: The U. S. Geological Survey operates a network of 74 long term water-quality stations (fig. 3) in cooperation with PREQB, USCOE, and PRDOA. Samples were collected every other month from 63 streamflow stations and lagoons and quarterly from 6 of the principal lakes in the Island. Samples were collected every other month at two of four federally supported National Stream Quality Accounting Network stations. The other two sites are sampled quarterly. Several parameters were added to the sampling program this year. In almost all the stations, samples were collected for laboratory determinations of copper, iron, manganese, cyanide, sulfide, phenols, and methylene blue active substance (MBAS) in addition to the already established parameters. Analytical field and laboratory results of the sampling program for 1984 were pub- lished in the 'Water Resources Data for Puerto Rico', 1984 water year report. The District does not operate any surface water quality monitoring stations in the U. S. Virgin Islands. However samples for selected chemical parameters and suspended sediment were collected at three streamflow stations in the Lesser Antilles (St. Lucia, St. Vincent, and Dominica). FIGURE 3. Location of quality-water stations In Puerto JWco GROUND-WATER LEVELS The determination of long-term changes in ground-water levels is an important aspect of the. basic-data collection program in the District. Ground-water levels provide an insicrht into withdrawals and recharge rates to the aquifers. As we move into the design and construction of ground-water flow models, the water-level data collected as part of the basic-data program are essential for the continuous updating of the moaels. In Puerto Rico operation of the network of 12 recording arid 52 non-recording wells was continued during the 1984 Fiscal year The network was re-eval'uated in January J.985 and gradual!v re- duced to 11 recording wells (fig. 4). During che 1985 water y^ar about 80 recording wells will be installed in support of special projects. Ground-water levels for the 1962 and 1983 water years were published in the Water Resources Data for Puerto Rico report Data for the 1984 water year is due for publication this summer. In the U.S. Virgin Islands, the operation of 7 recording and 21 non-recording wells continued (fig. 4). Ground-water levels for the 1983 water year were published in the Water Resources Data for Puerto Rico and the U.S. Virgin Islands report last year FIGURE 4. Location of ground-water stations In Puerto Rico and U.S. Virgin Islands. GROUND-WATER QUALITY MONITORING: Ground water quality monitoring throughout Puerto Rico con- tinued with great intensity during 1984 and the first part of 1985. The baseline data established during 1982 and 1983 were expanded with emphasis on determinations of organic compounds in ground-water used for drinking. In cooperation with the Puerto Rico Department of Health, a program was begun to collect samples from about 350 PRASA wells used for public supply. As a result of this program, two wells in Vega Alta, one in Caguas, two in Patillas, two in Cayey, and one in Comerfo (fig.5) were closed by the Puerto Rico Department of Health due to high concentrations of trichloroethylene and tetrachloroethylene (TCE and PCE). In the areas of Vega Alta and Guayama, where wells operate nearby known contaminated aquifer areas r sampling frequency was increased to a weekly basis. This program is conducted in coop- eration with PRASA. FIGURE 5.-Ar99S In Puerto Rico wh*r% w*H* cont«mlff«f«0 compound* * bolng monitored. SUSPENDED-SEDIMENT DATA COLLECTION: Suspended-sediment data collection activities continued this year with the operation of two daily sampling stations. Suspend- ed-sediment samples were collected daily at Rio Fajardo near Fajardo and at Rio Tanama near Utuado (fig. 6). The Rfo Fajardo station is operated in cooperation with USCOE and the Rio Tanama' site in cooperation with PREQB. An automatic sediment sampler was installed at Rio Fajardo early in the year. This sampler is capable of collecting 24 sediment samples in a period of 9.5 hours starting on discharges above 100 cubic feet per second. FIGURE 6. Location of dally suspended-sediment stations. WATER-USE DATA PROGRAM: The water-use program in Puerto Rico continues to be one of our most significant basic-data projects. The collection, analyses, computerized-storage, and dissemination of water-use data for different categories are the main objectives of the program. The project is conducted in cooperation with PRASA, PRIDCO, DNR, DOA, and PREPA. The report on "Public Water-Supplies in Puerto Rico, 1983" was published during the year. It included a listing of public water supply facilities serving Puerto Rico's 78 "municipios". The results revealed that surface-water sources supply nearly 300 million gallons per day (Mgal/d) of potable water, while ground water sources supply about 80 Mgal/d. A comprehensive report of* the basic water-use data available for calendar years 1980, 1981, and 1982 will be published this year. The report will include details on water-use categories including public water-supply, rural use, irrigation, thermoelectric and hydroelectric power generation, as well as return flows to public waste-water treat- ment plants (fig. 7). The main effort in the program for 1986 fiscal year will be the collection of data from calendar years 1983-85 with special emphasis on obtaining 1985 water-use data for industrial and irrigation purposes. 2500 >- Q CC LJJ G_ CO § d :z~ o 2000 1500 1000 500 EXPLANATION IRRIGATION PUBLIC WATER SUPPLY czi HYDROELECTRIC POWER GENERATION THERMOELECTRIC POWER GENERATION 1 1981 1982 FIGURE 7. Estimated W9t9r u*9 by major use categories In Puerto Rleo during 1980, 1981, and 198*. 10 WATER USE IN ST.THOMAS, U.S. VIRGIN ISLANDS: A comprehensive water-use inventory was conducted in St. Thomas during 1983 and 1984 as part of the water-use program in the District. The publication of the report "Estimated Water Use in St. Thomas, U. S. Virgin Islands, July 1983-June 1984", was a major achievement. This inventory included water use categories of public-water supply, thermoelectric power generation, domestic and commercial self-supplied, and public waste-water treatment (fig. 8). As a second effort in the water-use program in the U. S. Virgin Islands, an inventory will be conducted in St. Croix dur- ing this year. GROUND WATER 0.35 MGD SALINE WATER 93.72 MGD PF - Thermoelectric Power WS - Public Supply DO - Domestic CO - Commercial FIGURE a. Estimated water use by source and major use categories In St. Thomas during July, 1983 to June, 1984. 11 HYDROLOGIC INVESTIGATIONS SECTION - 1984-85 PROJECTS: The Hydrologic Investigations Section in the District is re- sponsible for the design, field execution and resulting technical reports of areal water-resources investigations. The District is fortunate to have a dedicated staff of hydrologists r geologists, engineers, and supporting technical personnel under the direction of Engineer Alien Zack. A combination of experienced scientists with a group of recently hired engineers and geologist has resulted in a productive team of investigators. Among the inves- tigations completed or in progress in fiscal year 1985 were: The hydrologlc Investigations section personnel. 12 GROUND-WATER FLOW IN THE GUANICA VALLEY: A ground-water flow model of the Guanica alluvial valley (fig. 9) aquifer was completed and calibrated. The model, prepared in cooperation with the Department of Agriculture, is now being utilized by Commonwealth agencies for the management of the water resources in the valley. Although the model is now operational in the USGS computers, it is readily available to any user that wishes to test ground-water withdrawals in the area. The model will eventually be loaded into the DNR computers. The project was completed by Engineer Arturo Torres. Front6n de la Brea MA* C A ft J * * FIGURE 9."The Lago Loco and fffb Loco area. 13 WATER RESOURCES OF VIEQUES ISLAND, PUERTO RICO: The investigation of the "Water Resources of Vieques Island" conducted in cooperation with the P. R. Land Administration and the DNR r was concluded during the year. Preliminary results of the investigation show that ground water resources in the Esperanza Valley are adequate to provide most of the needs of Vieques (fig. 10). However, strict management of withdrawals. from the aquifer would be required. A ground-water flow model of the alluvial aquifer in La Esperanza area was constructed and calibrated. The model can be used to simulate changes in ground- water levels with pumpage in the valley. Engineer Sigfredo Torres contributed to development and final calibration of the ground- water flow model. ' Los FaraHones * Cavo Icacos Punta Bateria \) lsla Palominos O Cayo Obispo 0-Ceyo Zancudi Isla de Rahs Pta Mata Redonda 66°30' Las Lavanderes Isla Pin«ros CAYO DE LUI» PEAA Cabeza de Perro godones Punta Cabellos Colorados unta Goleta De*«mbarcad«ro Mos Pta Arenas La Esptranza ValUy FIGURE 10.~La Esperanza Valley In the Vieques Island, P.R. 14 COMPREHENSIVE APPRAISAL OF THE GROUND-WATER RESOURCES OF THE NORTH-COAST LIMESTONE AQUIFERS OF PUERTO RICO: The second year of activities of the "Comprehensive Apprais- al of the Ground Water Resources of the North Coast Limestone Aquifers of Puerto Rico" continued at an accelerated pace (fig. 11). An intensive program of well inventory, borehole geophysics, hydrogeologic mapping, flow model conceptualization, and drilling arrangements was initiated early in Fiscal Year 1984. The investigation is conducted in cooperation with PRDNR and. directed by Engineer Arturo Torres. The well inventory of the North-Coast limestone area was com- pleted in March 1985. More than 500 wells (active, abandoned or destroyed) have been or are used to obtain data on water levels, water quality, and ground-water withdrawals of the limestone aquifers. A series of cross sectional and areal-hydrogeologic maps were prepared to refine the regional hydrogeologic framework of the nor,th-coast aquifers. A regional water-table contour map was prepared and shows important ground-water flow patterns in the study area. Simultaneous design and construction of regional and subregional ground-water flow digital models is presently being undertaken. A drilling contract was prepared for the application of dual-tube drilling techniques for 5-deep (over 1500 ft) north-coast wells. The dual-tube method provides contin- ous, depth-representative samples (cores) and hydraulic informa- tion. Drilling costs for FY-85 and FY-86 are estimated at $250,000 per year. FIGURE 11.~The North Coast Limestone area of Puerto Rico. 16 GROUND-WATER RECHARGE IN THE LOWER RIO GRANDE DE ARECIBO VALLEY: The feasibility of injecting excess surface water into a salty limestone aquifer as a means of storing freshwater for use when surface-water resources are minimal were investigated as part of the project in cooperation with the Puerto Rico Rice Corporation. Water from the Rio Grande de Arecibo was injected into the Monte Grande well, stored for various lengths of time, and recovered (fig. 12). A series of 6 injection and recovery tests were conducted at the site. Recharge rates up to 600 gal/min are readily accepted by the well. Recovery rates ranged from 5 to 26 percent of the water injected depending upon the quality of the injected water and the storage time. However as much as 16 to 42 percent of tie recovered mixed water is suitable for irrigation, having a chloride concentration of less than 500 mg/L. Although the project has demonstrated, unequivocally, that freshwater can be injected into saltwater aquifers, stored, and, at least, partially retrieved, the potential of the area studied for storing recharged water may be limited. The percentage of injected water recovered was low, even after only a short residence time, but could be considerably greater as the amount of water injected is increased. The project is directed by Eng- ineer Alien Zack. INJECTION/ RECOVERY WELL FIGURE 12. Location of the ground-water recharge study area In the lower Rfo Grande de Arectoo ra/foy. 16 LESSER ANTILLES: An investigation designed to collect and analyze base data on streamflow, water quality and rainfall in selected watersheds in Dominica, St. Vincent and St. Lucia, Lesser Antilles (fig. 13) was begun in 1983. Streamflow and rainfall data are being col- lected continuosly, while water-quality samples are collected weekly and during special hydrologic events. The study is part of a 2-years effort for hydrologic-data collection through a cooperative agreement between the U. S. Forest Service, the U. S. Agency for International Development, the U.S. Geological Survey, ' and the local governments of each island. Preliminary data for nine months of record showed average* monthly discharges as follows: 290 cubic feet per second in Layou River, Dominica; 32 cubic feet per second in Buccament River, St. Vincent; and 20 cubic feet per second in Troumasse River, St. Lucia. Rainfall is relatively high as compared to other Caribbean Islands and varies from 60 inches per year in the coastal plains to 200 inches per year in the interior. Suspended-sediment con- centrations ranged from 0 to 654 milligrams per liter. Prelimi- nary water-quality analyses indicate that waters from the water- sheds are similar to that from rain-forest areas in Puerto Rico. 66°00'_____64000'______62000'______eO°00'_____6e°00'_____ 66°00' ie°oo* ie°oo' 14°00' 12°00' 10°00* Rio Fajardo PUERTO RICO DOMINICA 0 6 10 MILES I r-»-i 0 6 10 KILOMETERS 10 MILES 0 6 10 KILOMETERS FIGURE 13.--Locatlon of the Lesser Antilles study areas. 17 WATER USE FOR RICE IRRIGATION IN NORTHERN PUERTO RICO: The "Water Use for Rice Irrigation" project, now in its third year is being conducted in cooperation with the Puerto Rico Rice Corporation, Department of Agriculture (fig. 14). The objec- tive of this investigation is to determine the actual amount of water used to irrigate rice during a complete crop cycle, consid- ering different soil types and climatic conditions. Five farms along the north coast have been instrumented to measure the actual water inputs and outputs. The data will provide baseline information regarding the water requirements for future rice grow- ing areas. During the year, data on rates of infiltration, evapotran- spiration and water input and output to the five instrumented farms were measured. Meteorological data including temperature (maximum and minimum), pan evaporation, rainfall and wind veloc- ity were collected at each rice-growing area. Preliminary results of the investigation show that the actual water pumped to the farms ranges from 2-4 times the amount needed. Infiltration rates are much lower than previously estimated. The project is directed by hydrologist Angel Roman Mas. FIGURE 14.~Loc9tlon of the rice Irrigation study areas In Northern Puerto Rico. 18 WATER RESOURCES OF THE HUMACAO-NAGUABO AREA: Field work on the investigation of the water resources of the Humacao-Naguabo area (fig. 15) was completed as part of a three year project in cooperation with the Puerto Rico Industrial Development Corporation. The final product of the investigation will define the occurence, availability, and quality of surface- and ground-water resources of the Humacao-Naguabo area. Under the direction of geologist Robert Graves, a two-dimensional, steady-state digital flow model of the Rio Humacao basin was developed to estimate ground-water availability in the basin and to determine the effects of additional ground-water withdrawals on the aquifer water levels. FIGURE 15.--Water resources of the Humacao-Naguabo area. 19 HYDROLOGY AND CHEMICAL QUALITY OF THE PRINCIPAL SPRINGS IN PUERTO RICO: A summary of the physical, chemical and bacteriological data collected from 1982 to 1984 in 17 of the principal springs of Puerto Rico (fig. 16) is due for publication next year. The project was completed in cooperation with the Puerto Rico Depart- ment of Natural Resources and the Water Resources Research Insti- tute of the University of Puerto Rico, Mayaquez. Engineer Sene'n Guzman-Rios (project chief), indicated that the total mean daily discharge of the seventeen springs is about 50 cubic feet per second. The maximum recorded discharge occurred at San Pedro Spring near Arecibo (35 cubic feet per second). The second highest recorded occured at Ojo de Agua at Vega Baja (9.4 cubic feet per second). In these two springs continous automatic digital recorders were installed during the last year of the investigation. At Banos de Coamo, near Coamo, the springflow, temperature, and specific conductance were monitored continuously for a year. Springflow varied from 32,000 to 83,000 gallons of water per day (gal/d). Specific conductance and temperature did not vary significantly, averaging 2,300 microsiemens per centi- meter(us/cm) and 43 degree Celsius( C) respectively. r*oo' °30' ee'oo' 0 6 10 20 30 KILOMETERS 1«*00'- EXPLANATION QUATERNARY 8URFICIAI DEPOSITS PEHH MIOCENE DEPOSITS OLIGOCENE DEPOSITS INTRUSIVE IGNEOUS ROCKS VOLCANIC AND SEDIMENTARY ROCKS 8ERPENTINITE AND CHERT FAULT SPRING FIGURE 16.~Surflclal geology and location of springs. to SOLID-WASTE DISPOSAL SITES: A reconnaisance of fifty (50) solid-waste disposal sites throughout Puerto Rico was completed in 1984 as part of an evalu- ation of the hydrogeology, and the associated potential for contamination of surface- and ground waters (fig. 17). Forty of the sites pose a threat to surface water quality, and 38 sites have the potential for ground water pollution. Eng. Sigfredo Torres completed the field work and a preliminary report was sub- mitted to the Environmental Quality Board. The results of the study were presented by Eng. Torres at the First Environmental Symposium held in May 1985 by the Environmental Health Associa- tion of Puerto Rico. FIGURE 17.--Locution of solid-waste disposal sites. 21 JOBOS AREA: During the 1984-85 fiscal year, a preliminary assessment of the ground water system*in the Jobos Area (fig. 18) will be made for the development of a two-dimensional ground-water flow model. General information on the hydrogeology will be obtained from from previous publications. After calibrating the ground-water flow model for this area, an attempt will be made to couple this model with a solute transport model. It will be used to define the flow rate and dispersion of pollutants detected at the Fibers public supply well field under the existing aquifer conditions. The project is being conducted in cooperation with the Puerto Rico Industrial Development Corporation. FIGURE 18."Jobos are* Including land aff*cr*d by Industrial spin 22 EFFECTS OF CHANNELIZATION ON AQUIFER RECHARGE ALONG RIO BUCANA: Fieldwork is being conducted in an effort-to determine the effect of the channelization of Rio Bucana* near Ponce (fig. 19) on the aquifer. The project is being conducted in cooperation with the Puerto Rico Department of Natural Resources. The inves- tigation, being conducted by hydrologist Vicente Quinones, will determine the effect of the river channelization on the water table in the area. The study is scheduled to be completed during 1985. ) CANAL .}^\^'ffmj& ~~ ^5^ ' £y~'-l V/\;-~V. i-Vv-i FIGURE 19.~Locatlon of th* Rfo Bucana'study area. 23 GROUND WATER IN THE LAJAS VALLEY: The second year of the appraisal of the ground-water resources in the Lajas Valley (fig. 20) is now in progress. The project is conducted in cooperation with the Puerto Rico Rice Corporation and directed by geologist Robert Graves. During the first year of data collection, 100 wells were inventoried in the valley. At Laguna Cartagena a multi-site of 11 test wells was drilled to determine hydraulic gradient and to determine if a salinity profile occurs in the near surface sediments. In conjunction with this multi-site a continuous recording surface- water gaging station was installed at the Laguna to determine elevation and outflow. Further plans for the valley include deep well drilling to 500 feet, shallow, multi test well sites at select locations, ground-water quality sampling, and aquifer tests. FIGURE 20.~The La/as Valley area. 24 INVENTORY OF WATER WELLS IN PUERTO RICO: An inventory of water wells in Puerto Rico was begun during 1984, in cooperation with the PRDNR. The objectives of this project are: to update the well inventory completed between 1959-61; to enter all the information into computerized data bases within the USGS local computer facilities; and to make the information available or accessible to all users in a publication and/or through the local computer via remote terminals. The well inventory data base is essential in the management of aquifers in Puerto Rico by Commonwealth agencies and as a repository for ground water information. The inventory is being conducted by hydrologist He'ctor Colon. Compilation of data available in the Caribbean District and files in cooperating agencies indicate a dramatic increase in the number of wells in Puerto Rico (fig. 21). Overall, the number of wells have increased by about 80 percent from the previous number inventoried in 1959-61 (Ward and Truxes, 1964). 132 1969-61 WELL INVENTORY | 277] 1»«4 WELL INVENTORY Not*: The Inventory Includaa actlva. abandoned, and deetroyad wall*. FIGURE 21.-Water wells Inventory In Puerto Rico. 25 RAINFALL - RUNOFF SIMULATION IN THE RIO GRANDE DE LOIZA AT QUEBRADA ARENAS WATERSHED, PUERTO RlCO: In 1984 r in cooperation with the Water Resources Research Institute of the University of Puerto Rico (Mayaguez Campus) Engineer Eloy Colon Dieppa completed a project designed to calibrate a rainfall-runoff model at a selected "pilot" basin in Puerto Rico using available data. Preliminary calibration of the model was completed for the Rio Grande de Loiza at Quebrada Arenas. The modeling at the pilot basin fairly simulated stream flow on an annual, monthly and daily basis during both the 2-year cal- ibration interval and the 3-year verification interval. Differ- ences between observed and simulated values during the calibra- tion and verification period (fig. 22) have been attributed to the quality of the record and the rain gage location not repre- senting average conditions for the entire watershed. 120 110 100 90 cc leo CC Ul 0- 70 CO Ul O 60 Ik Ik Oz3 CC 50 40 30 20 10 8-SIMULATED O-OBSERVED 1970 1979 CALIBRATION YEARS 1980 1981 1982 VERIFICATION YEARS FIGURE 22. Comparison of observed and simulated annual volumes recorded at ft/o Grande de Lolza at Quebrada Arenas, 1978-1982. 26 SUSPENDED SEDIMENT TRANSPORT IN THE RIO GRANDE DE LOIZA BASIN, PUERTO RICO: In 1983 the USGS in cooperation with the USCOE, PRDNR, and PRASA started an investigation in the Loiza basin under the lead- ership of Engineer Senen Guzman-Rios. Total basin sediment trans- port and inflow to Lago Lofza will be accounted. The Universal Soil Loss Equation will be calibrated utilizing the collected data. The results will be used by the USCOE in the preliminary design of three proposed reservoirs upstream from Lago Loiza. The Rio Grande de Loiza Basin, in east-central Puerto Rico (fig. 23) is among the most intensively developed watersheds in the island. Developments in the basin include agricultural and industrial activities. Lago Loiza the only reservoir in the basin supplies about 75 million gallons per day (Mgal/d) of water to the San Juan metropolitan area. This reservoir is losing storage capacity at a rate of about 2 percent per year due to sedimentation. Preliminary results have shown that silt and clay account for most of the sediment. Although total inflow of sedi- ment to the resevoir is known, contributions from individual sub- basins and land-use effects, have not been well defined. During the past year emphasis of the project has been placed on suspended-sediment sampling at 10 streamflow-sediment stations (fig. 23). Depth-integrated samplers were installed at 6 of the stations. At least three major flood events have been documented and preliminary results are being evaluated. To supplement these data, automatic sediment samplers will be installed in 5 of the stations by the end of this fiscal year. Bed material sampling and particle size analysis will be started during this fiscal year. A progress report on the major findings of the investigation is due for completion early next calendar year. t Carolina Trif/llloUlto iv«w v \Qurabo V C.Vua. J'Vf °V^ I ^S*/* Lonnxo FIGURE 23.~S»dim»nt transport study area In th* Rl'o Qrand9 da Loua 27 GROUND WATER IN THE JUANA DIAZ - SANTA ISABEL AREA: The Puerto Rico Department of Agriculture, through the Puerto Rico Vegetable Corporation, has initiated an intensive agricultural development program along the south coast of the island. Most of the current developments are located on the coastal piedmont alluvial plain between Rio Jueyes near Salinas and Rio Jacaguas near Juana Diaz (fig. 24). The alluvial aquifer is the primary source of water for furrow and drip irrigation, although some surface water is also used. The Vegetable Corpora- tion is concerned with how ground-water availability and quality will be affected as the area under cultivation expands and as more land is converted to drip irrigation. The second part of an in-depth ground-water resources inves- tigation, under the direction of geologist Dennis O'Connell, is in progress in cooperation with the Puerto Rico Vegetable Corporation. In the initial year of the project, a network of ground-water and surface-water monitoring stations was estab- lished. Stream discharge and seepage were measured during a period of low flow in January, 1985, and two preliminary potenti- ometric maps have been prepared from data collected during November, 1984 and January, 1985. Ground-water samples were collected during April, 1985 to measure chloride concentration and specific conductance. Future efforts will be directed towards an inventory of water use in the region, and the development of a ground-water flow model which will be used as a tool to predict changes in water level due to pumpage or recharge. FIGURE 24.--The Juana Dfaz-Santa Isabel study area. 28 OTHER ACTIVITIES OF THE HYDROLOGIC INVESTIGATIONS SECTION DURING 1984-85: Monitoring of Organic Contaminants in Ground Water near Vega Alta, Barceloneta, and Guayama: In cooperation with the P. R. Aqueduct and Sewers Authority, monitoring of contaminated well fields near Barceloneta (for Carbon Tetrachloride), Vega Alta (Trichloroethelene), and Guayama (Tetra- and Trichloroethelene) continued during the year. Samples are being collected weekly at public supply wells to ascertain that well water is free of the contaminants or that the concen- tration does not exceed drinking water standards. Monitoring of Trihalomethanes in Drinking Water: In cooperation with PRASA the USGS initiated a comprehensive appraisal of the concentration of trihalomethanes (THL's) in finished drinking water. Samples were collected from about 50 PRASA filtration plants. Preliminary results showed that EPA standards for THL's were exceeded at key plants serving the San Juan metropolitan area (fig. 25). Sampling of an additional 30 sites will continue this year. Aguadll Quebradlllas La Plata (170) Guaynabo (140) Sorglo Cuevas (ISO) Loiza (65) Luqulllo Fa fordo Maunabo FIGURE 25. Chloroform concentrations In the Puerto Rico Aqueduct and Sewer Authority purification plants during November 1984. 29 GROUND WATER FLOW SIMULATION IN THE VEGA ALTA TO DORADO AREA: A two dimensional (2-D) ground-water flow model was con- structed and calibrated for the 50 square mile (mi2; study area (fig. 26). The model has contributed significantly in advancing the knowledge of the local ground-water flow system. This project was begun in 1983 in cooperation with PRIDCO, DNR,and PRASA and will be completed by October 1985. Among the most important findings are: 1. Rainfall infiltration through the outcrop area of the Aymamoh Limestone unit is the principal source of recharge to the water table aquifer. Recharge through the Aymamon accounts for about 12 Mgal/d (millions of gallons per day) or almost 1/2 of the total aquifer recharge. 2. In general, the part of the water table aquifer within the Cibao Formation has little potential for ground-water development. Transmissivity values in this part are generally less than 1,000 ft2/d (feet squared per day), limiting development mostly to self supplied rural use. 3. The most productive part of the aquifer is the area located north of Highway PR-2, south of the coastal plain, and between Rio Cibuco and de La Plata. In this area transmissivity ranges from 25,000 to at least 150,000 ft2/d. 4. The most productive part of the aquifer is already being pumped at almost 10 Mgal/d or approximately the estimated rate of rainfall recharge. Increased withdrawals within this area will lead to a thinning of the fresh-water lens (due to a lowering of the water table sur- face) and encroachment of seawater at coastal areas. A publication documenting the conceptual basis of this model, its use and limitations, will be available by the end of calendar year 1985. FIGURE 26~The Vaga Alfa to Dorado area. to NEW PROJECTS STARTED IN FISCAL YEAR 1984 Although only one major project was started in fiscal year 1985, its scope, resources, and funding will have a significant impact in the District's program. THE CARIBBEAN ISLANDS AQUIFER - RASA: In 1977, the U. S. House of Representatives introduced a national program of regional aquifer analyses and stated that the U. S. Geological Survey was to implement the program (Committee Report 95-392). Twenty-eight aquifer systems covering all major ground-water basins were included in this effort and referred to as the Regional Aquifer System Analysis program. The Caribbean Islands Aquifer RASA was initiated with a federal assignment of $425,000 for FY1985. The project, under the leadership of Engi- neer Fernando Gomez, will concentrate its efforts in the alluvial aquifer of the south coast plain of Puerto Rico and the Kingshill aquifer of St. Croix, in the USVI. In addition, a special effort will be made to define more accurately the interrelationship between ground-water in the unconsolidated deposits and in the limestone aquifer system of northern Puerto Rico. The project goals are: 1. To provide a system analyses framework for the investigation of the indicated aquifers. 2. To develop areal maps of the principal aquifer properties including thickness, transmissivity, geology, geochemistry, salinity, and water levels. 3. Develop regional ground-water flow models of the three principal aquifers to enhance the understanding of their functioning. The RASA project staff includes three (3) full time profes- sionals and several support technicians. During the first nine months of the project, the following were the principal accom- plishments: 1. Preparation of the "Planning Report for the Caribbean Islands Regional Aquifer Systems Analysis", outlining the objectives and scope, work elements, approach, and time table; 2. Meet the staff requirements; 3. Initiate work activities. 3.1 CARIBBEAN ISLANDS - RASA - GEOCHEMISTRY: As part of the Caribbean Islands - Regional Aquifers System Analyses (RASA) project, a detailed investigation on the water quality and geochemistry of each aquifer under consideration is being conducted. The reconnaissance phase of this investigation consists of assembling the historical water quality data and preliminary geochemical modeling. This has been completed for the North Coast Limestone aquifer (Table 1 and fig. 27), and commenc- ed for the South Coast Alluvial Plain aquifer and the Kingshill Aquifer in St. Croix. The geochemical models will be valuable in assessing the ground water flow and other hydrogeological processes in the areas studied. Table 1. Mass Transfer Calculations for a Sample Flow Path in the North Coast Limestone Aquifers. Montebello Limestone (From site 1 to site 2) Aguada Limestone (From site 3 to site 4) Aymamoh Limestone (From Rainfall to sites) (From site 6 to site 7) Calcite Dolomite Gypsum CO (gas) 2 Initial Solution (%) Rainfall (%) Sea Water (%) -0.3280 0.0870 0.0160 -0.2630 0.2251 0.0862 0.0886 1.2564 76.30 23.70 1.9123 0.0227 0.0417 2.3438 1.9040 98.00 2.00 2.3106 9.50 89.23 1.26 OCEANO ATLANTICO Laguna Tortugucro x FIGURE 27.~Locatlon of sites. 32 OTHER ACTIVITIES: Automatic Data Processing Unit The computer section personnel. The District's computer facilities continued to be modernized with the acquisition of additional memory units, terminals, and a drum plotter. The Caribbean District entered the age of NESS-GOES (National Earth Satellite Service-Geostationary Operational Environmental Satellite). The month of May herald the installation of Data General's CRT and four-part modules (CPU, Memory, Floppy and I/O) and Synergetics' demodulator and receiver. This facility, coupled to remote transmitter at 5 streamflow gaging stations will allow the District to start receiving real-time flow data. GOES uses Synergetics SCADA-SOFT application software for configuring the S-34 Bus System and Remote Computer modules into a Data Collection Platform (DCP). The SCADA-DCP's main feature is the maximum control and flexibility in determining sensor data collection and processing algorithms. 33 The District also acquired a software package to enable the data processing of the satellite data into the PRIME providing for graphics and other applications. We are also considering the acquisition of a multiplexor to enable inside and outside agency users to access our system. The Districts minicomputer was upgraded from a 250 to a 750 CPU model, double the processing speed of the system, and from 5 to 25 terminals. The graphics capabilities have been enhanced with the addition of a drum plotter model HP7586B. This upgrade to our system gives more flexibility to the data manipulation that the on going projects need to ensure our agency goals. ADMINISTRATIVE SECTION: The Administrative Section of the Caribbean District under the direction of Mrs. Georgina Pineiro, performs a variety of activities related to management, personnel, purchasing, and pro- curement. These functions are vital to our succesfull operations The administrative staff is also responsible for the prepa- ration, drafting, and camera-ready production of the reports published by the Caribbean District. 1984-85 was again a very productive period in the reports unit. The administrative and reports section personnel. S4 REPORTS PUBLISHED AND/OR APPROVED DURING 1984-85: The following reports are published, approved for publica- tion, or in the drafting or processing phase prior to printing and distribution:. 1. Estimates of 7-day r 10-year Low Flow at Ungaged Streams in Puerto Rico, WRI 84-4089, (2-plates), by Eloy Colon-Dieppa and Vicente Quinones-Aponte. 2. Floods of April 18, 1983 in St. Thomas and St. John, USVI, WRI 84-4184, (1-plate), by Russell Curtis, Jr. 3. Reconnaissance of Ground-Water Quality in the Virgin Islands, July 1984. OFDR-84-807 (1-plate) by Rene'Garcia and Michael Canoy, 4. Reconnaissance of Trace Organic Compounds in Ground Water Throughout Puerto Rico, Oct. 1983: OFDR-84-810. 5. Surface-Water Data Network Analysis for Puerto Rico, WRI 83- 4055, by Patrick W. McKinley. 6. Water Resources of the Lower Rio Grande de Arecibo Alluvial Valley, Puerto Rico, WRI-85-4160, by Vicente Quinones-Aponte. 7. Simulation of Ground-Water Flow in the Rio Yauco Alluvial Valley, Yauco, Puerto Rico, WRI-85-4179, by Vicente Quinones- Aponte . 8. Planning Report for the Comprehensive Appraisal of the Ground Water Resources of the North Coast ^Limestone Area of Puerto Rico, OFDR-84-427, by Arturo Torres-Gonz/lez and Richard M. Wolansky. 9. Estimated Water Use in St. Thomas, USVI, July, 1983 - June, 1984, OFDR-84-721, (1-plate), by Heriberto Torres-Sierra and Rafael Dacosta. 10. A Reconnaissance of the Water Resources of the^ Central Guanajibo Valley, Puerto Rico, WRIR-82-4050, by Eloy Colon-Dieppa and Ferdinand Quinones-Marquez. 11. Water Resources of the Sabana Seca to Vega Baja Area, Puerto Rico, WRIR-82-4115, by Arturo Torres-Gonzalez and Jose R. Diaz. 12. Water Resources of the Lower Rio Grande de Manati Valley, Puerto Rico, WRIR-83-4199, by Fernando Gomez-Gomez. 13. Publications of the U. S. Geological Survey, Water Resources Division for Puerto Rico and the U. S^. Virgin Islands, 1946-1984, OFDR-84-229, by Ferdinand Quifiones-Ma'rquez and Marisol Lopez. 14. Publications of the U. S. Geological Survey, Water Resources Division, for Puerto Rico and the- U.SX Virgin Islands, 1946-1985, OFDR-85-414, by Ferdinand Quinones-Marquez and Elba Rivera. 15. Flow Duration at Streamflow Gaging Stations in Puerto Rico, OFDR-84-127, by Ferdinand Quinones-Marquez, Eloy Colon-Dieppa, and Max Juarbe. 16. Determinacion de Caudal y Tecnicas de Muestras en Agua Super- ficial, OFR-85-89, by Ferdinand Quinones-Marquez and Sene'n Guzman- Rios. 17. Simulation of Ground-Water Flow in the Water Table Aquifer near f Barceloneta, Puerto Rico, WRIR-84-4113, by Arturo Torres- Gonzalez. 35 Water Resources Information Center: One of the most important functions of the Hydrologic Data Section is to provide basic-data information to the water- resources data users. Government officials, engineers, planners, students, and private citizens constitute a constant stream of visitors to our office in search of information or reports. During the year, more than 400 persons visited our offices and around 600 telephone calls, related to data inquiries, were received. International Symposium on Tropical Hydrology and 2nd Caribbean Islands Water Resources Congress: The USGS, in cooperation with PREQB, PRDNR, and the USEPA, co-sponsored with the American Water Resources Association and the Water Resources Research Institute of UPR-Mayaquez an Inter- national Symposium on Tropical Hydrology. Nearly 170 hydrologists and scientists from 11 countries participated in the 3-day activity. A highlight of the activity was the presentation of 14 papers related to the hydrology of Puerto Rico. The Third Carib- bean Islands Water Resources Congress is scheduled for July, 1986 in St. CroiXr U.S. Virgin Islands. Drilling and Logging Operations: Test drilling and geophysical logging capabilities were fully utilized during 1984 and 1985 by the Hydrologic Investiga- tions Section of the Caribbean District. Douglas Whitesides, Technical Support Coordinator, oversaw test-drilling operations and well construction at an EPA "Super Fund" cleanup site in Vega Alta, as well as project drilling in Humacao, Dorado, Toa Baja, Lajas Valley, Vieques, Ft. Alien, and Isabela. Most recently, test drilling on Isla Caja de Muertos, an island 6 miles from Ponce, revealed anomolous artesian conditions and chloride concen- trations greater than that of seawater. A new geophysical logging unit was received in May. The unit has sonic-velocity capability, very valuable in estimating limestone porosity. The logger, operated by hydrologic technician Ramoln Carrasquillo, is able to perform multiple tests at one time, considerably speeding up logging operations. ' The logging capabi- lities of the District surpass those of most USGS operations. 36 The Application of Rn(222) in Measuring Ground Water Discharge to the Rio Grande de Manati,Puerto Rico: The U. S. Geological Survey, WRD, is actively engaged in testing a new method of assessing ground water - surface water interactions in the principal streams in Puerto Rico. The method utilizes a naturally occuring radioisotope, radon-222, which is far more abundant in ground water than in surface water. The contribution of groundwater to streamflow can be estimated by collecting water samples and measuring the concentration of radon-222 relative to background concentrations in the nearby ground-water samples. Originally developed at the Lamont Doherty Geological Obser- vatory, Columbia University, New York, the technique has been field-tested in Jamaica by a graduate student, Ms. Katherine- Kelly Ellins. Its application in Puerto Rico was tested on Rio Grande de Manati, a stream flowing along karstic terrain on the north coast of the island and having considerable ground-water contributions. Ms. Katherine-Kelly Ellins, assisted by geochem- ist Roger Lee formerly with the USGS Southeastern Region Office and hydrologist Angel Roman-Mas from the USGS Caribbean District office, obtained promising results from the methodology. Ground- water inputs were detected and a quantitative model of ground water - surface water interaction is being prepared as part of the Caribbean Islands - RASA project. 37 APPENDIX 1 ACTIVE RECORDING SW STATIONS IN PR AS OF 04/01/85 STATION NAME NUMBER 50010600 RIO GUAJATACA AB. LAGO DE GUAJATACA 50011200 RIO GUAJATACA BELOW LAGO DE GUAJATACA 50011400 RIO GUAJATACA AB.MOUTH NR QUEBRAD. 50014800 RIO CAMUY NEAR BAYANEY 50015700 RIO CAMUY NEAR HATILLO 50027750 RIO GDE. DE ARECIBO ABOVE ARECIBO 50028000 RIO TANAMA NEAR UTUADO 50028400 RIO TANAMA AT CHARCO HONDO 50031200 RIO GDE. DE MANATI NR MOROVIS 50035000 RIO GDE. DE MANATI AT CIALES 50038100 RIO GDE. DE MANATI HWY 2 NR MANATI 50038320 RIO CIBUCO BELOW COROZAL 50039500 RIO CIBUCO AT VEGA BAJA 50043000 RIO DE LA PLATA AT PROY LA PLATA 50046000 RIO DE LA PLATA AT HWY 2 NR TOA AL 50050900 RIO GDE. DE LOIZA AT QUEB ARENAS 50051150 QUEBRADA BLANCA AT EL JAGUAL 50051180 QUEBRADA SALVATIERRA NR SAN LOREN. 50051310 RIO CAYAGUAS AT CERRO GORDO 50053050 RIO TURABO AT BORINQUEN 50055000 RIO GDE. DE LOIZA AT CAGUAS 50055650 QUEBRADA CAIMITO NR JUNCOS 50056400 RIO VALENCIANO NR JUNCOS 50056900 QUEBRADA MAMEY NR GURABO 50057000 RIO GURABO AT GURABO 50061800 RIO CANOVANAS NR CAMPO RICO 50063440 QUEBRADA SONADORA NR EL VERDE 50063500 QUEBRADA TORONJA AT EL VERDE 50063800 RIO ESPIRITU SANTO NR RIO GRANDE 50065500 RIO MAMEYES NR SABANA 50067000 RIO SABANA AT SABANA 50071000 RIO FAJARDO NEAR FAJARDO 50075000 RIO ICACOS NEAR NAGUABO 50082000 RIO HUMACAO AT HWY 3 AT HUMACAO 50092000 RIO GDE. DE PATILLAS NR PATILLAS 50106500 RIO COAMO NEAR COAMO 50108000 RIO DESCALABRADO NEAR LOS LLANOS 50111500 RIO JACAGUAS AT JUANA DIAZ 50112500 RIO INABON AT REAL ABAJO 50114000 RIO CERRILLOS NEAR. PONCE 50115000 RIO PORTUGUES NEAR PONCE 50124200 RIO GUAYANILLA NEAR GUAYANILLA D.A. (SQ MI) A ACA 140 18.4 57.6 55.2 128 197 15.1 99.1 54.8 TA 200 6.00 3.25 3.74 10.2 7.89 89.8 0.82 16.4 2.30 60.2 9.84 1.04 0.19 8.62 6.88 3.96 14.9 1.26 17.3 18.3 46.0 12.9 49.8 9.70 17.8 8.82 18.9 LAT. 181957 182401 182831 182348 182744 182529 181802 182452 181745 181926 182552 182113 182653 180937 182350 180710 180939 181024 180927 181010 181433 181408 181258 181452 181530 181908 181927 181946 182137 181946 181952 181756 181638 180849 180204 180352 180308 180316 180510 180415 180445 180240 LONG. 665529 665540 665746 664854 664956 664144 664658 664252 662447 662736 663137 662007 662229 661344 661517 655922 655856 655838 655729 660237 660034 655212 655534 655645 655805 655321 654906 654916 654849 654504 654352 654142 654709 654937 660158 662210 662534 663040 663346 663451 663801 664753 DATE BEGAN 081269 072569 060782 120159 022869 010165 100160 012370 050169 011273 040160 010160 100177 091184 050184 091577 122183 120159 012584 012871 122983 100159 032867 032983 040783 080166 080167 102679 040161 100179 101582 010166 022484 021784 041484 070164 050164 070164 022470 *TYP] D D MGD D D MGD MGD MGD D MGD MGD MGD MGD D D MG D MGD D MGD D MGD MGD D D D MGD MGD MGD D MGD MGD D D M MGD MGD MGD MGD 38 APPENDIX 1--Continued ACTIVE RECORDING SW STATIONS IN PR AS OF 04/01/85. STATION NAME D.A. LAT. LONG. DATE *TYPE NUMBER (SQ MI) BEGAN 50129900 LACUNA CARTAGENA NR BOQUERON 180052 670634 060584 MGD 50136000 RIO ROSARIO AT ROSARIO 16.4 181022 670431 051475 D 50138000 RIO GUANAJIBO NEAR HORMIGUEROS 120 180836 670857 011673 MGD 50144000 RIO GDE. DE ANASCO NR SAN SEB. 94.3 181705 670305 040163 MGD 50147800 RIO CULEBRINAS AT HWY 404 NR MOCA 71.2 182142 670533 071267 MGD ACTIVE RECORDING SW STATIONS IN WEST INDIES AS OF 04/01/85 STATION NAME D.A. LAT. LONG. DATE *TYPE NUMBER (SQ MI) BEGAN 1311350- 60153300 BUCCAMENT RIVER AT PEMBROKE, ST.V. 7.12 131135 601533 030184 D 1350220- 60572400 TROUMASSEE RIVER AT MAHAUT,ST.LUCIA 5.44 135022 605764 030884 D 1524500- 61234400 LAYOU RIVER AT L. VALLEY, DOMINICA 27.1 152450 612344 031584 D ACTIVE RECORDING SW STATIONS IN VI AS OF 04/01/85 STATION NAME D.A. LAT. LONG. DATE *TYPE NUMBER (SQ MI) BEGAN 9 50252000 BONNE RESOLUTION GUT AT B.R.,ST.TH. 0.49 182157 645734 112562 MGD 50276000 TURPENTINE RUN AT MARIENDAL,ST.TH. 2.97 181948 645258 010163 D 50295000 GUINEA GUT AT BETHANY, ST. JOHN 0.37 181955 644650 010163 D 50345000 JOLLY HILL GUT AT JOLLY HILL,ST.CR. 2.10 174400 645147 010163 MGD ACTIVE SW CREST STAGE STATION IN PR AS OF 04/01/85 STATION NAME D.A. LAT. LONG. DATE NUMBER (SQ MI) BEGAN 50115900 RIO PORTUGUES AT HWY 14 AT PONCE 18.6 180109 663626 1965 ATYPE D.A. DRAINAGE AREA D DIGITAL RECORDER MGD MANOMETER, GRAPHIC AND DIGITAL RECORDERS APPENDIX 2 ACTIVE QW STATIONS IN PUERTO RICO AS OF 05-20-85 STATION NUMBER NAME LAT 50010500 RIO GUAJATACA AT LARES 50010720 LAGO GUAJATACA NO. 3 NR MOUTH NR QUEBRADILLAS 50010790 LAGO GUAJATACA NO.l NR DAM NR QUEBRADILLAS 50011000 CANAL DIVERSION AT LAGO GUAJATACA 50011400 RIO GUAJATACA NR QUEBRADILLAS 50020050 LAGO GARZAS NO.l NR DAM NR ADJUNTAS 50020500 RIO GRANDE DE ARECIBO NR ADJUNTAS 50025000 RIO GRANDE DE ARECIBO NR UTUADO 50025110 LAGO DOS BOCAS NO. 3 AT WEST BR NR UTUADO 50026050 RIO CAONILLAS AB LAGO CAONILLAS 50027090 LAGO DOS BOCAS NO.l NR DAM NR UTUADO 50027250 RIO GRANDE DE ARECIBO BL DOS BOCAS NR FLORIDA 182050 50028000 RIO TANAMA NR UTUADO 50029000 RIO GRANDE DE ARECIBO AT CENTRAL CAMBALACHE 50030700 RIO OROCOVIS NR OROCOVIS 50031200 RIO GRANDE DE MANATI NR MOROVIS 50035500 RIO GRANDE DE MANATI AT HWY 149 AT CIALES 50035950 RIO CIALITOS AT HWY 649 AT CIALES 50038100 RIO GRANDE DE MANATI AT HWY 2 NR MANATI 50038200 LACUNA TORTUGUERO OUTLET NR VEGA BAJA 50038320 RIO CIBUCO BELOW COROZAL 50039500 RIO CIBUCO AT VEGA BAJA 50039650 DRAINAGE DITCH Bl WARNER LAMBERT NR VEGA BAJA 50039700 DRAINAGE DITCH AT RIO CIBUCO BL SAN VICENTE 50039750 RIO CIBUCO BL CENTRAL SAN VICENTE 50039900 LAGO CARITE NO. 3 ON RIO LA PLATA NR CAYEY 50039950 LAGO CARITE NO.l NR DAM NR CAYEY 50043000 RIO DE LA PLATA AT PROYECTO LA PLATA 50044000 RIO DE LA PLATA NR COMERIO DAM 50044400 LAGO LA PLATA NO. 5 NR NARANJITO 50044850 RIO GUADIANA NR NARANJITO 50044950 LAGO LA PLATA NO. 3 NR NARANJITO 50046000 RIO DE LA PLATA AT TOA ALTA 50047600 RIODE BAYAMON NR AGUAS BUENAS 50047990 RIO GUAYNABO NR BAYAMON 50048510 RIO DE BAYAMON AT BAYAMON FLOOD CHANNEL 50048530 RIO HONDO BL RIO HONDO AT BAYAMON 50048800 RIO PIEDRAS NR RIO PIEDRAS 50049100 RIO PIEDRAS AT HATO REY 50049820 LACUNA SAN JOSE NO. 2 LONG BEGAN TYPE 181801 182205 182356 182402 182831 180821 181054 181811 181915 181326 182009 182050 181802 182720 181420 181745 182046 182018 182552 182829 182113 182653 182717 182744 182747 180504 180439 180937 181433 181933 181839 182018 182350 181439 182232 182439 182613 182215 182434 182550 665224 665436 665523 665525 665746 664435 664412 664159 664011 663822 664004 664002 664658 664210 662258 662447 662806 662828 663137 662650 662007 662229 662109 662152 662153 660603 660619 661344 661228 661228 661328 661401 661517 660839 660759 660909 660950 660340 660410 660212 1975 1980 1980 1975 1969 1980 1979 1979 1980 1979 1980 1975 1975 1969 1979 1979 1976 1975 1969 1964 1975 1975 1982 1982 1982 1980 1980 1975 1979 1980 1979 1980 1958 1974 1975 1974 1979 1972 1971 1974 P A A,* P P A P P A P A, * P P,S/W P P P P P A,N,* A P P P P P,* A A,* P P A P A,* N,* P P P,* P P,* P A 40 APPENDIX 2 Continued ACTIVE QW STATIONS ON PUERTO RICO AS OF 05-20-85. STATION NUMBER 50049920 50050300 50055000 50055250 50055400 50057025 50057500 50058800 50059000 50059100 50063800 50071000 50072500 50082000 50083500 50086500 50091000 50091800 50092000 50106500 50114000 50115000 50116200 50124700 50129700 50133600 50136400 50138000 50138800 50143000 50144000 50146000 50147600 50149100 NAME BAH I A DE SAN JUAN NO. 5 QUEBRADA BLASINA NR CAROLINA RIO GRANDE DE LOIZA AT CAGUAS RIO CAGUITAS AT HWY 30 AT CAGUAS RIO BAIROA NR CAGUAS RIO GURABO NEAR GURABO LAGO LOIZA NO. 4 NR MOUTH NR CAGUAS LAGO LOIZA NO. 7 NR DAM NR TRUJILLO ALTO LAGO LOIZA AT DAM SITE (BELOW DAM) RIO GRANDE DE LOIZA BL TRUJILLO ALTO *RIO ESPIRITU SANTO NEAR RIO GRANDE RIO FAJARDO NR FAJARDO RIO FAJARDO BL FAJARDO RIO HUMACAO AT HWY 3 AT HUMACAO RIO GUAYANES NR YABUCOA RIO GUAYANES AT PLAYA GUAYANES RIO MAUNABO AT MAUNABO RIO CHICO AT PROVIDENCIA RIO GRANDE DE PATILLAS NR PATILLAS RIO COAMO NR COAMO RIO CERRILLOS NR PONCE RIO PORTUGUES NR PONCE RIO PORTUGUES AT PONCE RIO GUAYANILLA AT CENTRAL RUFINA RIO LOCO AT GUANICA RIO GUANAJIBO NR SAN GERMAN RIO ROSARIO NR HORMIGUEROS RIO GUANAJIBO NR HORMIGUEROS RIO YAGUEZ NR MAYAGUEZ RIO GRANDE DE ANASCO NR LARES RIO GRANDE DE ANASCO NR SAN SEBASTIAN RIO GRANDE DE ANASCO AB RIO CANAS RIO CULEBRINAS NR SAN SEBASTIAN RIO CULEBRINAS NR AGUADA EXPLANATION OF TYPES: P POLLUTION .............................. * PESTICIDE. ...................... .-. . . . . . A NAMP ( & LAKES )......................... N NASQAN. ................................ S/D CONTINUING SEDIMENT STATION (DAILY) S/W CONTINUING SEDIMENT STATION (WEEKLY)... LAT 182637 182327 184535 181511 181528 181556 181651 181929 181949 182135 182137 181756 181935 184938 180333 180353 180-024 175916 180204 180352 180422 180445 180020 180050 175833 180718 180936 180836 181231 181528 181700 181600 182051 182403 , ,55 ,18 . .15 , 4 , 1 . . 1 LONG 660516 655828 660035 660126 660213 655904 660035 660047 660100 660015 654849 654142 653847 654938 655403 654944 655419 660018 660158 662210 663453 663803 663628 666704 665452 670356 670508 670857 670707 665505 670302 670805 670240 670940 BEGAN 1974 1972 1972 1972 1979 1979 1980 1980 1974 1980 1979 1961 1975 1969 1979 1972 1975 1979 1960 1979 1964 1975 1975 1975 1975 1979 1979 1969 1979 1976 1963 1979 1979 1969 TYPE A P P P P PA,* A A P P P,S/D,* P P P,* P P P N P P P P,* P,* P,* P P Pr* P P N P,* P Pr* 41 APPENDIX 3 ACTIVE GW WELLS NETWORK IN P.R. AS OF 05/20/85 LOCAL WELL NUMBER STATION NAME LATITUDE LONGITUDE *6 *70 *87 *96 *132 *135 *141 *143 *172 *173 JUANA 5 SABANA HOYOS ALOMAR 1 Y-7 PPG 4 OR YAUCO 2 LEDERLE RESTAURADA 8A VIVONI - COL. AMISTAD USGS/ARROYO WELL # 1 RIO HUMACAO GW STATION SQUIBB OBS. WELL #3 175858 182647 175829 180415 180133 182621 175950 180132 181217 180849 180908 661002 662017 662322 655139 665033 663433 663542 670338 654530 655024 654750 * RECORDING WELL PR GW NETWORK- 11 RECORDING WELLS ACTIVE GW WELLS NETWORK IN US VIRGIN ISLANDS AS OF 05/20/85 3T. CROIX LOCAL WELL NUMBER STATION NAME FAIRPLAINS #6 *USGS 10 - FAIRPLATNG AGOLDEN GROVE *e GOLDEN GROVE #1 MAHOGANY ROAD - 3 LATITUDE LONGITUDE 174225 174225 174243 174245 L74336 644719 644720 644751 644753 645232 42 APPENDIX 3--Continued ACTIVE GW WELLS NETWORK IN US VIRGIN ISLANDS AS OF 05/20/85 ST. CROIX LOCAL WELL NUMBER 8 9 10 11 STATION NAME AADVENTURE 28 CONCORDIA 14 CONCORDIA 1 (MAIN PUMP HOUSE) CONCORDIA 7 BARREN SPOT 5 ADVENTURE 16 LATITUDE LONGITUDE 174303 174525 174527 174532 174329 174308 644844 644606 644601 644603 644547 644841 ST. THOMAS 1 2 3 4 5 6 7 USGS - 8 (FAMILY WELL MAHOGANY #15 MAHOGANY #16 MAHOGANY #17 DONOE #3 *GRADE SCHOOL #3 AWELL # 4 @ VI COLLEGE - THATCH FARM) 182050 182138 182138 182136 182029 182038 182043 645804 645431 645425 645419 645352 645503 645816 ST. JOHN 11 10 9 8 7 AGUINEA GUT DPW #1 (SUSSANABERG) DPW #2 (SUSSANABERG) DPW #3.(SUSSANABERG) DPW #4 (SUSSANABERG) DPW #5 (SUSSANABERG) ADPW #6 (SUSSANABERG) USGS #15 (CALABASH BOOM ANPS #6 (CINNAMON BAY) NPS #5 (TRUNK BAY) NFS #2 (CRUZ BAY) 181956 182044 182044 182044 182044 182044 182042 181951 182116 182109 182010 644645 644552 644550 644549 644548 644546 644545 644221 644510 644603 644726 RECORDING WELL V.I. GW NETWORK- 22 PARTIAL WELLS AND 8 RECORDING WELLS INDEX A message from the Caribbean District Chief .................. VI Administrative Section ....................................... 33 Appendix 1 - list of surface-water stations .................. 37 Appendix 2 - list of quality of water stations ............... 39 Appendix 3 - list of ground-water levels stations ............ 41 Arecibo, water resources of the lower Rfo Grande de Arecibo .. 15 Automatic data processing unit ............................... 32 Comprehensive appraisal of the ground water resources of the North Coast Limestone aquifers of Puerto Rico .............. 14 Drilling and logging operations .............................. 35 Effects of channelization on aquifer recharge along Rio Bucana 22 Ground-water levels network in Puerto Rico and the U.S. Virgin Islands .................................................... 6 Ground-water quality monitoring .............................. 7 Ground-water in the Lajas Valley ............................. 23 Ground-water in the Juana Diaz - Santa Isabel area ........... 27 Ground-water flow simulation in the Vega Alta to Dorado area . 29 Hydrologic data section ...................................... 1 Hydrologic Investigations Section 1984-85 .................... 11 Hydrology and chemical quality of the principal springs in Puerto Rico ................................................ 19 International Symposium of Tropical Hydrology and 2nd Caribbean Islands Water Resources Congress ................. 35 Inventory of water wells in Puerto Rico ...................... 24 Jobos, Preliminary assessment of the ground-water system in the Jobos Area ............................................. 21 Minimum (low) flow investigations ............................ 3 Monitoring of organic contaminants in ground-water near Vega Alta, Barceloneta, and Guayama ............................. 28 Monitoring of trihalomethanes in Drinking water .............. 28 New project started in fiscal year 1984 ...................... 30 Other activities ............................................. 32 Other activities of the hydrologic investigations sections during 1984-85 ............................................. 28 Rainfall-runoff simulation in the Rio Grande de Loiza at Quebrada Arenas watershed, Puerto Rico ..................... 25 Rasa, Caribbean Islands Aquifer - Rasa ....................... 30 Rasa, Caribbean Islands Geochemistry - Rasa .................. 31 Reconnaissance of fifty solid waste disposal sites ........... 20 Surface-water investigation in the Lesser Antilles ........... 16 Surface-water streamfiow network in Puerto Rico .............. 5 Surface-water quality network in Puerto Rico ................. 7 Suspended-sediment data collection ........................... 8 Suspended sediment transport in the Rio Grande de Loiza basin, Puerto Rico ................................................ 26 The application of Rn (222) in measuring ground-water discharge to the Rio Grande de Manati, Puerto Rico ......... 36 Water resources investigations and activities during 1984-85 . 1 Water resources of Vieques Island ............................ 13 Water-use data program in Puerto Rico and the U.S. Virgin Islands .................................................... 9 Water use for rice irrigation in northern Puerto Rico ........ 17 Water Resources information .................................. 35