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Three-Dimensional Numerical Simulation of Geothermal Field of Buried Pipe Group Coupled with Heat and Permeable Groundwater

机译:埋藏管道地热场的三维数值模拟与热透水地下水相连

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摘要

The flow of groundwater and the interaction of buried pipe groups will affect the heat transfer efficiency and the distribution of the ground temperature field, thus affecting the design and operation of ground source heat pumps. Three-dimensional numerical simulation is an effective method to study the buried pipe heat exchanger and ground temperature distribution. According to the heat transfer control equation of non-isothermal pipe flow and porous media, combined with the influence of permeable groundwater and tube group, a heat-transfer coupled heat transfer model of the buried pipe group was established, and the accuracy of the model was verified by the sandbox test and on-site thermal response test. By processing the layout of the buried pipe in the borehole to reduce the number of meshes and improve the meshing quality, a three-dimensional numerical model of the buried pipe cluster at the site scale was established. Additionally, the ground temperature field under the thermal-osmotic coupling of the buried pipe group during groundwater flow was simulated and the influence of the head difference and hydraulic conductivity on the temperature field around the buried pipe group was calculated and analyzed. The results showed that the research on the influence of the tube group and permeable groundwater on the heat transfer and ground temperature field of a buried pipe simulated by COMSOL software is an advanced method.
机译:地下水的流动和埋地管组的相互作用将影响传热效率和地温场的分布,从而影响地源热泵的设计和操作。三维数值模拟是研究掩埋管道热交换器和地温分布的有效方法。根据非等温管道流动和多孔介质的传热控制方程,结合透水地下水和管组的影响,建立了埋地管组的传热耦合传热模型,以及模型的准确性通过沙箱测试和现场热响应试验验证。通过在钻孔中处理掩埋管的布局以减少网状物的数量并提高啮合质量,建立了站点规模的埋地管簇的三维数值模型。另外,模拟了地下水流动期间掩埋管组的热渗透耦合下的接地温度场,并计算并分析了对埋地管组周围的温度场上的头差和液压导电的影响。结果表明,对COMSOL软件模拟的埋藏管道热传热和接地温度场的电气传热和接地温度场的研究是一种先进的方法。

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