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Numerical study on the heat transfer, extraction, and storage in a deep-buried pipe

机译:深埋管道传热,萃取​​和储热的数值研究

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摘要

Aiming at the thermal attenuation problem of ground temperature field in unidirectional heat extraction and supply in buildings of deep-buried geothermal energy, we propose supplementing heat to the ground using some heat source such as solar energy that is stored during the non-heating period, thus enabling long-term operation of a buried pipe system. With the study conducted on a buried U-bend pipe project with a depth of 2505 m, a three-dimensional (3D) full-scale model was established based on the numerical modeling method which obtained by the author's research team in the early stage. The heat extracted from the buried pipe or the heat storage capacity of ground for a constant inlet water temperature and given initial ground temperature field was analyzed and predicted. Meanwhile, the heat storage capacity after heat was taken from the buried pipe was calculated and analyzed. Finally, heat flux through the wall of the buried pipe was analyzed, and heat transfer to ground at different buried depths during the heat storage period was discussed. (c) 2020 Elsevier Ltd. All rights reserved.
机译:针对深层地热能建筑物单向取暖和供暖过程中地温场的热衰减问题,我们建议利用非供热期间存储的太阳能等热源向地面补充热量,因此可以长期运行地下管道系统。通过对深度为2505 m的埋入式U形弯管项目的研究,基于作者的研究团队在早期获得的数值建模方法,建立了三维(3D)满比例模型。分析并预测了在恒定的进水温度和给定的初始地面温度场的情况下,从地下管道中提​​取的热量或地面的储热能力。同时,对埋管吸热后的储热量进行了计算和分析。最后,分析了通过埋管壁的热通量,并讨论了在储热期间在不同埋深处对地面的热传递。 (c)2020 Elsevier Ltd.保留所有权利。

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