VI Update

USVI Public Records

A VI Update Project · Brian LoudenThe territory’s public record — kept public.

In accordance with the VI Beach Program weekly water quality samples are analyzed for Enterococci Bacterial Concentrations.

Collection
Research & Technical Reports
Sub-shelf
dpnr.vi.gov
Kind
Research Report
Pages
1
Text
Native Text

11/15/24 In accordance with the VI Beach Program weekly water quality samples are analyzed for Enterococci Bacterial Concentrations. If the sample is found to have more than 70 colonies per 100ml, the beach is considered to be unsafe for swimming. *Key: * - This beach is not monitored during this season TNTC – Too Numerous To Count J - The reported value is an estimate NS – Not Sampled This Week (Conflict with the lab or Issue at the site) NV – Not Validated SI – Sampled, yet issues with the collection/transport Beach Name Island #/100ml Enterococci Turbidity (NTU) Stony Ground St. Croix 41 1.38 Dorsch Beach St. Croix 41 1.78 Frederiksted Public Beach St. Croix <10 0.56 Rainbow Beach St. Croix 10 1.50 Sprat Hall St. Croix * * Davis Bay St. Croix * * Cane Bay St. Croix 20 0.80 Gentle Winds St. Croix <10 0.61 Columbus Landing St. Croix * * Pelican Cove (Comorant) St. Croix <10 0.96 Princess (Condo Row) St. Croix <10 1.33 Protestant Cay St. Croix 52 0.17 New Fort (Ft. Louise Augusta) St. Croix < 10 0.43 Buccaneer St. Croix 31 2.63 Shoy’s St. Croix 10 1.65 Chenay Bay St. …

Download the original document · Plain text (TXT) · Browse the archive · How this archive works

Original source: https://dpnr.vi.gov/wp-content/uploads/2024/11/Beach-Data-_-11.15.24.pdf

SHA-256 1ffbcb46a6905ad8b7f2f5d172fc002a1d556647772adc91b5833ae15b1629ab

Re-using this document

A public record of the Government of the Virgin Islands, published by the agency itself. No copyright is asserted on it and 17 U.S.C. § 105 does not reach territorial government, so it publishes as a territorial public record.

Our description, tagging, arrangement, extracted text and machine transcripts are released under CC0 1.0. We assert nothing about the document itself.

Archive identifier LF-1ffbcb46a690

Document text

11/15/24 In accordance with the VI Beach Program weekly water quality samples are analyzed for Enterococci Bacterial Concentrations. If the sample is found to have more than 70 colonies per 100ml, the beach is considered to be unsafe for swimming. *Key: * - This beach is not monitored during this season TNTC – Too Numerous To Count J - The reported value is an estimate NS – Not Sampled This Week (Conflict with the lab or Issue at the site) NV – Not Validated SI – Sampled, yet issues with the collection/transport Beach Name Island #/100ml Enterococci Turbidity (NTU) Stony Ground St. Croix 41 1.38 Dorsch Beach St. Croix 41 1.78 Frederiksted Public Beach St. Croix <10 0.56 Rainbow Beach St. Croix 10 1.50 Sprat Hall St. Croix * * Davis Bay St. Croix * * Cane Bay St. Croix 20 0.80 Gentle Winds St. Croix <10 0.61 Columbus Landing St. Croix * * Pelican Cove (Comorant) St. Croix <10 0.96 Princess (Condo Row) St. Croix <10 1.33 Protestant Cay St. Croix 52 0.17 New Fort (Ft. Louise Augusta) St. Croix < 10 0.43 Buccaneer St. Croix 31 2.63 Shoy’s St. Croix 10 1.65 Chenay Bay St. Croix 1396 4.48 Teague Bay St. Croix * * Cramer’s Park St. Croix 31 5.13 Grapetree Bay St. Croix 30 3.44 Halfpenny Beach St. Croix 1483 5.16 Lindbergh Bay St. Thomas 62 1.77 Brewers Bay St. Thomas 20 0.73 Hull Bay St. Thomas 121 2.60 Magens Bay St. Thomas 41 0.74 Coki Point St. Thomas 10 0.90 Water Bay St. Thomas NS NS Lindqvist Beach St. Thomas 275 2.17 Sapphire Beach St. Thomas 10 1.31 Vessup Bay St. Thomas 120 1.94 Bluebeard’s Beach St. Thomas 85 3.18 Secret Harbor St. Thomas 74 0.74 Bolongo Bay St. Thomas 331 3.17 Limetree Bay St. Thomas * * Frenchman’s Bay St. Thomas 52 0.68 Morningstar St. Thomas * * Honeymoon Beach (Druif) Water Island NS NS Cruz Bay St. John 20 1.09 Oppenheimer St. John 52 2.08 Johnson Bay St. John 96 1.04 Klein Bay St. John * * Hart Bay St. John * * Chocolate Hole St. John * * Great Cruz Bay St. John 132 1.75 Frank Bay St. John 238 0.52