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The Effect of Particle Size on Thermal Conduction in Granular Mixtures

机译:粒度对颗粒混合物热传导的影响

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摘要

Shredded rubber tire is a geomaterial that is potentially useful in environmental and engineering projects. Here, we study the effect of particle size ratio on the thermal conductivity of granular mixtures containing rubber tire particles. Glass beads were mixed at various volume fractions with rubber particles of varying size. The 3D network model analysis using synthetic packed assemblies was used to determine the dominant factors influencing the thermal conduction of the mixtures. Results present that mixtures with varying size ratios exhibit different nonlinear evolutions of thermal conductivity values with mixture fractions. In particular, mixtures with large insulating materials (e.g., rubber particles) have higher thermal conduction that those with small ones. This is because the larger insulating particles allow better interconnectivity among the conductive particles, thereby avoiding the interruption of the thermal conduction of the conductive particles. Similar tests conducted with natural sand corroborate the significant effect of the relative size of the insulating particles. The 3D network model identifies the heterogeneity of local and effective thermal conductivity and the influence of connectivity among conductive particles. A supplementary examination of electrical conductivity highlights the significance of local and long-range connectivity on conduction paths in granular mixtures.
机译:碎橡胶轮胎是一种在环境和工程项目中可能有用的土工材料。在这里,我们研究了粒径比对含有橡胶轮胎颗粒的粒状混合物的热导率的影响。将玻璃珠以各种体积分数与大小不同的橡胶颗粒混合。使用合成填充组件进行的3D网络模型分析用于确定影响混合物导热的主要因素。结果表明,具有不同尺寸比的混合物表现出不同的热导率值随混合物分数的非线性变化。特别地,具有较大绝缘材料(例如,橡胶颗粒)的混合物具有比具有较小绝缘材料的混合物更高的导热性。这是因为较大的绝缘颗粒允许导电颗粒之间更好的互连性,从而避免了导电颗粒的热传导的中断。用天然沙子进行的类似测试证实了绝缘颗粒相对尺寸的显着影响。 3D网络模型可识别局部导热系数和有效导热系数的异质性,以及导电颗粒之间连通性的影响。电导率的补充检查突出了颗粒混合物中传导路径上局部和远程连接的重要性。

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