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Mesoscopic study of the effective thermal conductivity of dry and moist soil

机译:干湿土壤有效导热系数的介观研究

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摘要

The ground heat exchanger (GHE) is a key component in the ground coupled heat pump (GCHP) system. The design of GHE significantly depends on the effective thermal conductivity of the ambient soil, which is derived from thermal response tests in the field. However, the test results normally indicate large differences in value, even at the same location. Such variations might be caused by the mesoscopic structure of soil. In order to clarify the impacts of the mesoscopic structural parameters on the effective thermal conductivity of soil-like materials, this paper presents and analyzes the findings from thermal probe tests and a modified random fractal model. It is found that porosity and degree of saturation are still the dominant factors, while the impacts of fractal dimension and size ratio are minor. The randomness of the porous structure in the soil-like materials does have considerable impact on the effective thermal conductivity. (C) 2018 Elsevier Ltd and IIR. All rights reserved.
机译:地热交换器(GHE)是地面耦合热泵(GCHP)系统中的关键部件。 GHE的设计显着取决于环境土壤的有效导热率,其源自该领域的热响应试验。 然而,即使在同一位置,测试结果通常表明价值的大差异。 这种变化可能是由土壤的介观结构引起的。 为了阐明介绍结构参数对土壤状材料有效导热率的影响,本文介绍了热探测试验和改进的随机分形模型的研究结果。 发现孔隙度和饱和度仍然是主要因素,而分形尺寸和尺寸比的影响是轻微的。 土壤状材料中多孔结构的随机性对有效的导热率具有相当大的影响。 (c)2018年Elsevier Ltd和IIR。 版权所有。

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