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首页> 外文期刊>International journal of geomechanics >Discrete Element Method Study on Effect of Shear-Induced Anisotropy on Thermal Conductivity of Granular Soils
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Discrete Element Method Study on Effect of Shear-Induced Anisotropy on Thermal Conductivity of Granular Soils

机译:剪切各向异性对粒状土壤导热系数影响的离散元方法研究

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摘要

In this study, a simple idealization of heat transfer by conduction at the interparticle contacts is utilized for the evaluation of thermal conductivity of granular soils when subjected to external loading conditions. Discrete element method simulations employing this idealization were performed to examine the impact of loading the soil in a consolidated drained triaxial test environment on soil thermal conductivity. Results of conducted simulations show that shear-induced anisotropy results in an anisotropic thermal conductivity tensor. The results also indicate that contact density affects the average thermal conductivity of granular materials. The larger the average number of contacts per particle, or the coordination number, the larger the thermal conductivity. During shearing, the coordination number tends to decrease, resulting in a reduction in soil thermal conductivity with dense soils, showing a larger decrease in thermal conductivity upon shearing.
机译:在这项研究中,利用颗粒间接触处的传导进行的热传递的简单理想化被用于评估外部载荷条件下粒状土壤的热导率。进行了采用这种理想化的离散元方法模拟,以研究在固结排水的三轴试验环境中加载土壤对土壤导热系数的影响。进行的仿真结果表明,剪切引起的各向异性导致各向异性的导热系数张量。结果还表明接触密度影响粒状材料的平均导热率。每个粒子的平均接触数或配位数越大,热导率越大。在剪切过程中,配位数趋于降低,导致稠密土壤的土壤导热系数降低,剪切时导热系数下降幅度更大。

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