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首页> 外文期刊>Ocean Engineering >Effect of principal stress rotation on dynamic characteristics of a sandy seabed under a partially reflected standing wave
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Effect of principal stress rotation on dynamic characteristics of a sandy seabed under a partially reflected standing wave

机译:主应力旋转对部分反射驻波作用下沙质海床动力特性的影响

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摘要

Principal stress rotation (PSR) is one of the main stress conditions for a soil element subject to cyclic waves. It is one of the main causes behind generation of excess pore water pressure and cumulative plastic strain in soil deposits when drainage conditions are impeded, and thus compromises the stability of any supported marine structures. This paper aims to investigate the influence of PSR on the cyclic characteristics of soil under standing waves that are partially reflected, in which a generalized plasticity model considering the effect of PSR was adopted to model the soil behavior. Comparisons between the present model, previous hollow cylinder apparatus tests, and geotechnical centrifugal wave tests all show good agreement. Numerical results indicate that ignoring the PSR involved in the standing-wave-seabed interactions will significantly underestimate the build-up of pore water pressure, particularly at the standing wave nodes. Furthermore, the exclusion of the effect of PSR may lead to contradictory results in terms of susceptibility to liquefaction between the antinode and the node, when compared to the wave flume test and geotechnical centrifuge test. Numerical simulation results also demonstrate that while considering the impact of PSR, a sandy seabed exhibits higher liquefaction resistance when subjected to standing waves compared to the case when subjected to progressive waves with an equivalent wave height. Parametric studies show that the coefficient of wave reflection, wave characteristics (wave height, period, and water depth), and soil properties (permeability and saturation) significantly affect the liquefaction characteristics of soil under partially reflected standing waves.
机译:主应力旋转(PSR)是受循环波作用的土壤单元的主要应力条件之一。当排水条件受到限制时,这是在土壤沉积物中产生过高孔隙水压力和累积塑性应变的主要原因之一,从而损害了任何支撑的海洋结构的稳定性。本文旨在研究在部分反射的驻波下,PSR对土壤循环特性的影响,其中采用考虑了PSR影响的广义塑性模型对土壤行为进行建模。当前模型,以前的空心圆柱体设备测试和岩土离心波测试之间的比较均显示出良好的一致性。数值结果表明,忽略驻波-海床相互作用中涉及的PSR,将大大低估孔隙水压力的累积,尤其是在驻波节点处。此外,与波浪水槽试验和岩土离心试验相比,排除PSR的影响可能导致在波腹和波节之间的液化敏感性方面产生矛盾的结果。数值模拟结果还表明,考虑到PSR的影响,与经受等效波高的渐进波相比,沙质海床经受驻波时表现出更高的抗液化性。参数研究表明,波反射系数,波特征(波高,周期和水深)和土壤特性(渗透率和饱和度)显着影响部分反射驻波作用下土壤的液化特性。

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