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Scientific Investigations Report 2012–5089

Prepared in cooperation with the U.S. Army Corps of Engineers

Bathymetric and Underwater Video Survey of Lower Granite Reservoir and Vicinity, Washington and Idaho, 2009–10

By Marshall L. Williams, Ryan L. Fosness, and Rhonda J. Weakland

Thumbnail of and link to report PDF (3.6 MB)Abstract

The U.S. Geological Survey conducted a bathymetric survey of the Lower Granite Reservoir, Washington, using a multibeam echosounder, and an underwater video mapping survey during autumn 2009 and winter 2010. The surveys were conducted as part of the U.S. Army Corps of Engineer’s study on sediment deposition and control in the reservoir. The multibeam echosounder survey was performed in 1-mile increments between river mile (RM) 130 and 142 on the Snake River, and between RM 0 and 2 on the Clearwater River. The result of the survey is a digital elevation dataset in ASCII coordinate positioning data (easting, northing, and elevation) useful in rendering a 3×3-foot point grid showing bed elevation and reservoir geomorphology. The underwater video mapping survey was conducted from RM 107.73 to 141.78 on the Snake River and RM 0 to 1.66 on the Clearwater River, along 61 U.S. Army Corps of Engineers established cross sections, and dredge material deposit transects. More than 900 videos and 90 bank photographs were used to characterize the sediment facies and ground-truth the multibeam echosounder data. Combined, the surveys were used to create a surficial sediment facies map that displays type of substrate, level of embeddedness, and presence of silt.

First posted May 4, 2012

For additional information contact:
Director, Idaho Water Science Center
U.S. Geological Survey
230 Collins Road
Boise, Idaho 83702
http://id.water.usgs.gov

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Suggested citation:

Williams, M.L., Fosness, R.L., and Weakland, R.J., 2012, Bathymetric and underwater video survey of Lower Granite Reservoir and vicinity, Washington and Idaho, 2009–10: U.S. Geological Survey Scientific Investigations Report 2012–5089, 22 p.



Contents

Abstract

Introduction

Multibeam Echosounder Hydrographic Survey

Underwater Video Map Survey

Future Application and Enhancements

Summary

Acknowledgments

References Cited

Appendix A. Multibeam Echosounder Data and Sediment Facies Map

Appendix B. Underwater Video Mapping Survey Transect Tables

Appendix C. Underwater Video Mapping Survey Videos

Appendix D. Bank Photographs


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