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Review of effective thermal conductivity models of rock-soil for geothermal menergy applications

机译:地热能应用中岩石有效导热系数模型的综述

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摘要

In recent years, the utilization of geothermal energy through ground buried heat exchanger to provide heat source for buildings has become extremely attractive within China and all over the world. The effective thermal conductivity of the ground, which may affect the heat transfer process between the buried pipes and the surrounding rock-soil significantly, is a key parameter that governs the prediction of the system performance. This article reviews recently proposed methods to determine the effective thermal conductivities of different rock-soil types containing various substances. The applicabilities of various basic methods to include the effects of porosity, water content, material construction and etc. are documented. According to the deficiencies of basic models, the improved models take into account the effects of the temperature, saturation degree, detailed structure of rock-soil and other parameters to improve the accuracy of predictions. For certain types of rock-soil, experimental measurements are needed to improve the accuracy or verify the results of the improved model in the appropriate ranges of porosity and saturation degree. However, these measurements tend to be expensive and time consuming.
机译:近年来,通过地埋式热交换器利用地热能为建筑物提供热源在中国乃至世界范围内都变得极具吸引力。地面的有效导热率可能会严重影响埋管与周围岩石土壤之间的传热过程,是控制系统性能预测的关键参数。本文回顾了最近提出的确定包含各种物质的不同岩石土壤类型的有效导热系数的方法。记录了各种基本方法的适用性,包括孔隙率,含水量,材料结构等的影响。根据基本模型的不足,改进模型考虑了温度,饱和度,岩土细化结构等参数的影响,提高了预测精度。对于某些类型的岩石土壤,需要进行实验测量以提高精度或在适当的孔隙度和饱和度范围内验证改进模型的结果。然而,这些测量往往是昂贵和费时的。

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