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5-m backscatter mosaic from south and west of Martha's Vineyard and north of Nantucket produced from sidescan-sonar and interferometric backscatter datasets

Dates

Publication Date
Start Date
2007-08-09
End Date
2013-06-11

Citation

Pendleton, E.A., Baldwin, W.E., Foster, D.F., Ackerman, S.D., Andrews, B.D, Brothers, L.L., and Schwab, W.C., 2018, Geospatial data layers of shallow geology, sea-floor texture, and physiographic zones from the inner continental shelf of Martha's Vineyard from Aquinnah to Wasque Point, and Nantucket from Eel Point to Great Point: U.S. Geological Survey data release, https://doi.org/10.5066/P9E9EFNE.

Summary

Geologic, sediment texture, and physiographic zone maps characterize the sea floor south and west of Martha's Vineyard and north of Nantucket, Massachusetts. These maps were derived from interpretations of seismic-reflection profiles, high-resolution bathymetry, acoustic-backscatter intensity, bottom photographs, and surficial sediment samples. The interpretation of the seismic stratigraphy and mapping of glacial and Holocene marine units provided a foundation on which the surficial maps were created. This mapping is a result of a collaborative effort between the U.S. Geological Survey and the Massachusetts Office of Coastal Zone Management to characterize the surface and subsurface geologic framework offshore of Massachusetts.

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Attached Files

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MV_ACK_backscatter_5m_browse.png
“Map showing a composite backscatter image of the study area.”
thumbnail 564.99 KB image/png
Extension: MV_ACK_backscatter_5m.zip
MV_ACK_backscatter_5m.tfw 90 Bytes
MV_ACK_backscatter_5m.tif 7.6 MB
MV_ACK_backscatter_5m_browse.png
“Figure 4. Map showing a composite backscatter image of the study area”
thumbnail 564.99 KB
MV_ACK_backscatter_5m.tif-ColorRamp.SLD 2.07 KB

Purpose

This backscatter intensity mosaic was created as a single image of the acoustic reflectivity of the sea floor south and west of Martha's Vineyard and north of Nantucket, Massachusetts. Generally, higher backscatter values (light tones) represent rock, boulders, cobbles, gravel, and coarse sand. Lower values (dark tones) usually represent fine sand and muddy sediment. In this final form and at the input resolutions, these data helped define the sediment texture and distribution maps presented as interpretive data layers in USGS OFR 2018-1181.

Additional Information

Raster Extension

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