Subaqueous Sediment Characterization near Oyster Colonies by Means of Side-Scan Sonar Imaging and Portable Free-Fall Penetrometer
Author:
Publisher
American Society of Civil Engineers
Link
http://ascelibrary.org/doi/pdf/10.1061/9780784482810.074
Reference25 articles.
1. In Situ Geotechnical Early Site Assessment of a Proposed Wave Energy Converter Site in Yakutat, Alaska, Using a Portable Free-Fall Penetrometer
2. Albatal A. Stark N. and Castellanos B. (2019). “Estimating in-situ relative density and friction angles of nearshore sand from portable free fall penetrometer tests.” Can. Geotech. J. 1-40 doi: https://doi.org/10.1139/cgj-2018-0267.
3. High Resolution Mapping and Classification of Oyster Habitats in Nearshore Louisiana Using Sidescan Sonar;Allen Y.C.;Estuar. Coast. Shelf Sci.,2005
4. ASTM Standard D2487. (2017). Standard Practice for Classification of Soils for Engineering Purposes (Unified Soil Classification System). ASTM International West Conshohocken PA 2017 doi: https://doi.org/10.1520/D2487-17.
5. Bilici C. Stark N Hajra M. G. (2018). “In Situ Geotechnical Characteristics of Surficial Wetland Waterway Sediments.” J. Waterw. Port. Coast. ASCE 144(6) doi: https://doi.org/10.1061/(ASCE)WW.1943-5460.0000462.
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1. Initial observations of the impacts of infauna on portable free fall penetrometer measurements in sandy parts of Mobile Bay;Acta Geotechnica;2024-02-12
2. Relating side scan sonar backscatter data to geotechnical properties for the investigation of surficial seabed sediments;Geo-Marine Letters;2023-05-18
3. Effects of Shell Hash on Friction Angles of Surficial Seafloor Sediments near Oysters;Journal of Waterway, Port, Coastal, and Ocean Engineering;2022-09
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