DocumentCode :
35464
Title :
Strain-Rate Dependence of Strength of the Gulf of Mexico Soft Sediments
Author :
Abelev, Andrei ; Valent, P.
Author_Institution :
Naval Res. Lab., Washington, DC, USA
Volume :
38
Issue :
1
fYear :
2013
fDate :
Jan. 2013
Firstpage :
25
Lastpage :
31
Abstract :
Many marine civil engineering applications require knowledge and understanding of the behavior and strength properties of soft cohesive marine sediments under high strain-rate conditions, typically encountered during impact penetration events of sediment probes and other objects as a result of free fall through the water column. To investigate these effects, a series of variable rotational rate vane shear tests was performed on a sample of Gulf of Mexico marine mud, using a precision rheometer and spanning the rotational rate range of 0.25-1000 r/min. A wide range of water contents from 55% to 95% (liquidity index: 1.5-3.3) was examined as a primary influence on the response of a particular saturated silty clay material. Nonlinearities in the behavior of this soil were analyzed, and applicability and precision of various models were examined. A modified rate equation is suggested yielding good correlation with experimental data at all water contents and all rotational rates explored. A testing schedule for a complete material constant derivation procedure is outlined.
Keywords :
sediments; Gulf of Mexico; marine civil engineering applications; marine mud; modiήed rate equation; precision rheometer; rotational rate vane shear tests; saturated silty clay material; sediment probes; soft cohesive marine sediments; soft sediment strength; strain-rate conditions; water column; Blades; Materials; Mathematical model; Sediments; Soil; Testing; Torque; Angular velocity; civil engineering; materials testing; measurement techniques; offshore installations; seafloor; sediments; soil moisture; soil properties;
fLanguage :
English
Journal_Title :
Oceanic Engineering, IEEE Journal of
Publisher :
ieee
ISSN :
0364-9059
Type :
jour
DOI :
10.1109/JOE.2012.2208293
Filename :
6287027
Link To Document :
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