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首页> 外文期刊>Advances in civil engineering >Numerical Modeling of Thermal-Dependent Creep Behavior of Soft Clays under One-Dimensional Condition
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Numerical Modeling of Thermal-Dependent Creep Behavior of Soft Clays under One-Dimensional Condition

机译:一维条件下软黏土热变蠕变行为的数值模拟

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摘要

Creep is a common phenomenon for soft clays. The paper focuses on investigating the influence of temperature on the time-dependent stress-strain evolution. For this purpose, the temperature-dependent creep behavior for the soft clay has been investigated based on experimental observations. A thermally related equation is proposed to bridge the thermal creep coefficient with temperature. By incorporating the equation to a selected one-dimensional (1D) elastic viscoplastic (EVP) model, a thermal creep-based EVP model was developed which takes into account the influence of temperature on creep. Simulations of oedometer tests on reconstituted clay are made through coupled consolidation analysis. The bonding effect of the soil structure on compressive behavior for intact clay is studied. By incorporating the influence of the soil structure, the thermal creep EVP model is extended for intact clay. Experimental predictions for thermal creep oedometer tests are simulated at different temperatures and compared to that obtained from reconstituted clay. The results show that the influence of temperature on the creep behavior for intact clay is significant, and the model, this paper proposed, can successfully reproduce the thermal creep behavior of the soft clay under the 1D loading condition.
机译:蠕变是软粘土的常见现象。本文重点研究温度对随时间变化的应力应变演化的影响。为此,已经基于实验观察研究了软土的温度相关蠕变行为。提出了一个热相关方程,将热蠕变系数与温度联系起来。通过将方程式合并到选定的一维(1D)弹性粘塑性(EVP)模型中,开发了基于热蠕变的EVP模型,该模型考虑了温度对蠕变的影响。通过耦合固结分析,对重整粘土上的里程表测试进行了模拟。研究了土壤结构对完整黏土压缩特性的粘结作用。通过综合考虑土壤结构的影响,对完整黏土扩展了热蠕变EVP模型。在不同温度下模拟热蠕变里程表测试的实验预测,并将其与从重构粘土中获得的结果进行比较。结果表明,温度对完整黏土蠕变行为的影响是显着的,本文提出的模型可以成功地再现一维加载条件下软黏土的热蠕变行为。

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