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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Efficiency analysis of utilizing phase change materials as grout for a vertical U-tube heat exchanger coupled ground source heat pump system
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Efficiency analysis of utilizing phase change materials as grout for a vertical U-tube heat exchanger coupled ground source heat pump system

机译:利用相变材料作为垂直U形管式热交换器耦合地源热泵系统植物的效率分析

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摘要

To study the effects of using phase change materials (PCMs) as grout on the efficiency of a ground source heat pump (GSHP) system, a numerical GSHP system model was established in this study, considering both the site conditions and dynamically changing loads regulated by the heat pump. First, system efficiencies of using an ordinary grout and two other PCM grouts were investigated and compared. Second, the applicability of PCM grouts to different soil environments was investigated by analyzing the effects of subsurface characteristics on the heat exchanger efficiency. Finally, the appropriate operation mode for PCM-backfilled GSHP system was determined by comparing the effects of daily running modes with various intermittent ratios on the system performance. The results show that it is necessary to consider the effect of heat pump, especially for poor heat transfer conditions. PCM grouts with a low thermal conductivity will significantly reduce the system efficiency, whereas PCM grouts with a thermal conductivity comparable to that of an ordinary grout will improve the efficiency and operational stability of a GSHP system. A higher soil thermal conductivity and Darcy velocity improve the heat exchanger efficiency, and PCM grouts with a high thermal conductivity are more suitable for areas where the groundwater is not rich. Sufficient recovery time is necessary and important for a PCM-backfilled GSHP system to ensure operational stability and sustainability and the effectiveness of thermal radius reduction. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了研究使用相变材料(PCM)作为植物对地面源热泵(GSHP)系统效率的植物的影响,在本研究中建立了一个数值GSHP系统模型,考虑到站点条件和由此调节的动态变化负载热泵。首先,研究了使用普通灌浆和另外两种PCM灌浆的系统效率。其次,通过分析地下特性对热交换器效率的影响,研究了PCM灌浆对不同土壤环境的适用性。最后,通过在系统性能上比较日常运行模式的效果来确定PCM回填GSHP系统的适当操作模式。结果表明,需要考虑热泵的影响,尤其是对于差的传热条件。具有低导热性的PCM灌浆将显着降低系统效率,而具有与普通灌浆的导热率相当的PCM灌浆将提高GSHP系统的效率和操作稳定性。较高的土壤导热率和达西速度提高了热交换器效率,并且具有高导热率的PCM灌浆更适合地下水不富裕的区域。足够的恢复时间对于PCM回填的GSHP系统是必要的并且重要的,以确保操作稳定性和可持续性以及热半径减少的有效性。 (c)2017 Elsevier Ltd.保留所有权利。

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