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The effect of structures on the wave-induced liquefaction potential of seabed sand deposits

机译:结构对海底砂沉积物波致液化势的影响

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摘要

One of the important design considerations for marine structures situated on sand deposits is the potential for instability caused by the development of excess pore pressure as a result of wave loading. A buildup of excess pore pressure may lead to initial liquefaction. The current practice of liquefaction analysis in marine deposits neglects the effects of structures over seabed deposits. However, analyses both in terrestrial and marine deposits have shown that the presence of a structure, depending on the nature of the structure and initial soil conditions, may decrease or increase the liquefaction potential of underlying deposits. In the present study, a wave-induced liquefaction analysis is carried out using mechanisms similar to earthquake-induced liquefaction. The liquefaction potential is first evaluated using wave-induced liquefaction analysis methods for a free field. Then by applying a structure force on the underlying sand deposits, the effect of the structure on the liquefaction potential is evaluated. Results showed that depending on the initial density of the sand deposits and different structures, water depths and wave characteristics, the presence of a structure may increase or decrease the liquefaction potential of the underlying sand deposits.
机译:对于位于沙沉积物上的海洋结构,重要的设计考虑因素之一是由于波浪载荷而产生的过大孔隙压力可能导致不稳定的可能性。多余的孔隙压力的积累可能导致初始液化。海洋沉积物液化分析的当前实践忽略了结构对海床沉积物的影响。然而,对陆地和海洋沉积物的分析均显示,根据结构的性质和初始土壤条件,结构的存在可能会降低或增加潜在沉积物的液化潜力。在本研究中,波诱发液化分析是使用类似于地震诱发液化的机制进行的。首先使用波诱导的液化分析方法对自由场评估液化潜力。然后,通过对下层的砂沉积物施加结构力,来评估结构对液化电位的影响。结果表明,取决于砂沉积物的初始密度和不同的结构,水深和波浪特征,结构的存在可能会增加或降低下层砂沉积物的液化潜力。

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