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An improved analytical model for vertical borehole ground heat exchanger with multiple-layer substrates and groundwater flow

机译:具有多层基质和地下水流的立式井下地面换热器的改进分析模型

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摘要

An improved analytical model for vertical borehole ground heat exchanger (BHE) which takes into account effect of groundwater flow in multiple-layer geologies is applied to simulate and analyze the long-term temperature response of soil around BHE with the unbalanced seasonal dynamic load. The present model was validated by experiment for a single borehole with good agreement, and it can find that the average of temperature integral along the borehole wall depth is taken as the representative temperature of the borehole wall will be more reasonable. Moreover, the influence of groundwater flow velocity on soil temperature around the borehole was investigated, the results show that the deformation of plane temperature field caused by groundwater advection, as equivalent velocity reach a certain order of magnitude, groundwater flow can effectively alleviate the heat (cold) accumulation. Finally, the temperature change of soil around borehole at different operation time was simulated, results indicate that the higher the groundwater velocity is, the faster time make temperature field to achieve stability. This analytical model provides better flexibility and versatility to research further the effect of groundwater flow in layered geologies. (C) 2017 Elsevier Ltd. All rights reserved.
机译:考虑地面水在多层地质条件下的影响,提出了一种改进的垂直井下地面换热器分析模型,用于模拟和分析季节性不平衡动载荷下BHE周围土壤的长期温度响应。通过对单个井眼的实验验证了模型的一致性,可以发现沿井壁深度的温度积分平均值取为井壁的代表性温度将更为合理。此外,研究了地下水流速对井眼周围土壤温度的影响,结果表明,由于平流作用引起的平面温度场的变形,当等效速度达到一定数量级时,地下水流可以有效地缓解热量(冷)堆积。最后,模拟了不同作业时间井眼周围土壤的温度变化,结果表明,地下水流速越高,使温度场达到稳定的时间越短。该分析模型提供了更好的灵活性和多功能性,可以进一步研究分层地质中地下水流动的影响。 (C)2017 Elsevier Ltd.保留所有权利。

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