TY - JOUR
T1 - Dynamic response analysis of submerged soil by thin layer element method
AU - Nogami, T.
AU - Kazama, M.
N1 - Funding Information:
This work is sponsored by the Minerals Management Service, the U.S. Department of Interior. Mr. Charles Smith of the Minerals Management Service managed the project. The authors express their appreciation to the Port and Harbor Research Institute, the Japan Ministry of Transport for allowing the second author to participate in this research at the University of California at San Diego.
PY - 1992
Y1 - 1992
N2 - A thin layer element method is formulated to compute the dynamic response of submerged soil. The formulation is based on Biot's equation describing the dynamic behavior of fluid-saturated elasto-porous medium. The dynamic response of submerged soil is computed for various cases by using the developed formulation. The effects of submerged conditions are examined for submerged soil deposits with a water level at and above the ground surface. It is found that both submerged conditions and water body above the ground surface can considerably affect the dynamic response of soil deposits.
AB - A thin layer element method is formulated to compute the dynamic response of submerged soil. The formulation is based on Biot's equation describing the dynamic behavior of fluid-saturated elasto-porous medium. The dynamic response of submerged soil is computed for various cases by using the developed formulation. The effects of submerged conditions are examined for submerged soil deposits with a water level at and above the ground surface. It is found that both submerged conditions and water body above the ground surface can considerably affect the dynamic response of soil deposits.
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U2 - 10.1016/0267-7261(92)90023-7
DO - 10.1016/0267-7261(92)90023-7
M3 - Article
AN - SCOPUS:0027009346
SN - 0267-7261
VL - 11
SP - 17
EP - 26
JO - Soil Dynamics and Earthquake Engineering
JF - Soil Dynamics and Earthquake Engineering
IS - 1
ER -