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作 者:SONG Yupeng SUN Yongfu WANG Zhenhao DU Xing SONG Binghui DONG Lifeng
机构地区:[1]First Institute of Oceanography,Ministry of Natural Resources,Qingdao 266061,China [2]Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266237,China
出 处:《Journal of Ocean University of China》2022年第5期1154-1160,共7页中国海洋大学学报(英文版)
基 金:sponsored by the National Special Project for Marine Public Welfare Industry(No.201005005);the National Natural Science Foundation of China(Nos.42107207,41876066);the Natural Science Foundation of Shandong Province(No.ZR2020QD067);the Post-doctoral Innovation Project of Shandong Province(No.202002042)。
摘 要:The in situ pore pressure response of silt under wave action is a complex process.However,this process has not been well studied because of limited field observation techniques.The dynamic response process is closely related to engineering geological hazards;thus,this process must be urgently explored.A long-term in situ observational study of the silt sediment pore water pressure response process under wave action was conducted in the subaqueous Yellow River Delta.The response characteristics of pore water pressure are affected by tidal level and wave height.Tidal level affects the overall trend of the pore water pressure response,while wave height influences the amplitude of the pore water pressure response.This study revealed a significant lag effect in the pore pressure response.The transient pore pressure in the seabed did not respond immediately to the wave-induced pressure stress on the seabed surface.This phenomenon may be attributed to the change in soil permeability.The maximum response depth was approximately 0.5 m with a 2 m wave height.A concept model of silt soil pore pressure response under different types of wave action was developed.The accumulation rate of the pore pressure is less than the dissipation rate;thus,the developed model highlights the oscillation pore pres-sure response mechanism.The highlighted response process is of considerable importance to transient liquefaction and the startup process of pore pressure response.
关 键 词:silt seabed pore pressure response in situ observation the subaqueous Yellow River Delta
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