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首页> 外文期刊>International journal of geomechanics >Hysteresis Model for Soft Cohesive Soils under Combinations of Static and Cyclic Shear Loads
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Hysteresis Model for Soft Cohesive Soils under Combinations of Static and Cyclic Shear Loads

机译:静态剪切载荷组合下软粘性土壤滞后模型

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摘要

The application of large-amplitude cyclic shear loads on soft soils results in large strains after a certain number of cycles. These strains are highly dependent on static shear load and cause stress-strain relationships with various characteristics that are difficult to model. Moreover, the characterization of suitable cyclic behavior in soft soils should include the effects of soil degradation, load history, and excess pore pressure. This article presents a model that is based on the mathematical theory of hysteresis. This model considers the response of soft cohesive soils under combinations of static and cyclic shear loads with large strains. In addition, the resulting model reproduces the shapes and values of the stress-strain laws that were obtained from simple shear tests on cohesive soil samples.
机译:大幅度循环剪切载荷对软土壤的应用导致一定数量的循环后大的菌株。这些菌株高度依赖于静态剪切载荷,并导致难以模型的各种特性的应力 - 应变关系。此外,软土中合适的循环行为的表征应包括土壤降解,负荷历史和过量孔隙压力的影响。本文提出了一种基于滞后数学理论的模型。该模型考虑了软粘性土壤在具有大菌株的静态和循环剪切载荷的组合下的响应。此外,所得模型再现从简单的剪切试验中获得的压力菌株定律的形状和值。

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