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Evaluation of effective thermal conductivity of unsaturated granular materials using random network model

机译:利用随机网络模型评估不饱和粒状材料的有效导热系数

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摘要

The effective thermal conductivity of granular materials is widely used in numerous geothermal engineering applications, such as the ground source heat pump (GSHP) system. However, for unsaturated granular materials, it is difficult to predict the thermal conductivity because of the interaction between solid and fluid in media. In this study, the effective thermal conductivity of unsaturated granular materials was measured, reviewed and analysed using a macroscopic pore structure network Model with a randomly packed particles. The network model was verified by measured data (soil water characteristics curve, thermal conductivity and etc.) of three different glass beads and also Jumunjin sand (standard sand of South Korea). Upon the series of laboratory experiments, some modification to the existing network model were introduced, such as the use of soil water characteristic curve (SWCC) applied to modelling the thermal conductivity of granular materials. In addition, an empirical correlation between the fraction of the mean radius (chi) and the thermal conductivity at a given saturated condition was developed through comparison with the test results. In the range of lower degree of saturation (5%-20%), the modified network model shows relatively higher thermal conductivity than the laboratory measurements. However, for the higher degree of saturation (>40%), it shows a similar tendency to the laboratory measurements. (C) 2017 Elsevier Ltd. All rights reserved.
机译:粒状材料的有效导热系数已广泛用于许多地热工程应用中,例如地源热泵(GSHP)系统。但是,对于不饱和粒状材料,由于介质中固体和流体之间的相互作用,因此很难预测导热系数。在这项研究中,使用具有随机堆积颗粒的宏观孔结构网络模型测量,审查和分析了不饱和颗粒材料的有效导热系数。该网络模型通过三种不同玻璃珠以及Jumunjin砂(韩国的标准砂)的实测数据(土壤水分特性曲线,导热系数等)进行了验证。通过一系列的实验室实验,对现有的网络模型进行了一些修改,例如使用土壤水分特征曲线(SWCC)来对粒状材料的导热系数进行建模。此外,通过与测试结果进行比较,得出了在给定的饱和条件下,平均半径(chi)的分数与热导率之间的经验关系。在较低的饱和度(5%-20%)范围内,修改后的网络模型显示出比实验室测量值相对更高的导热率。但是,对于较高的饱和度(> 40%),它显示出与实验室测量值相似的趋势。 (C)2017 Elsevier Ltd.保留所有权利。

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