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Numerical analysis of three direct cooling systems using underground energy storage: A case study of Jinghai County, Tianjin, China

机译:三种利用地下储能的直接冷却系统的数值分析:以天津市静海县为例

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摘要

Three kinds of ground source energy system used as heat sink directly for cooling the buildings in summer are presented, which are underground water system, ground heat exchange system and underground sink system, respectively. Correspondingly, three numerical models are established. Based on a rural housing in Jinghai County, Tianjin, the simulated operating results of three systems are analyzed and compared. The applied size parameters for direct cooling system (DCS) were coincident with traditional compres-sion refrigeration system. The results indicate that the outlet water temperature of the double-wells circulating system remains stable and the system operation effect is satisfied. Hence, it is recommended as a prior way for DCS to give long-term, safe and stable operation. However, the outlet water tempera-ture of the U-shaped tube system easily exceeds 23 C after 10 days of running, which is the maximum temperature limit for DCS due to heat transfer effect. This is not recommended. The feasibility of using an underground sink for DCS depends on reasonable analysis of the adaptability between the building cooling load and the cooling capability of the sink. Because of economical and ecological reasons, it is still recommended as an auxiliary cooling system.
机译:提出了三种直接用作建筑物夏季散热器的地源能源系统,分别是地下水系统,地热交换系统和地下水槽系统。相应地,建立了三个数值模型。基于天津市静海县的农村住房,对三种系统的模拟运行结果进行了分析和比较。直接冷却系统(DCS)的应用尺寸参数与传统的压缩制冷系统一致。结果表明,双井循环系统的出水温度保持稳定,满足系统运行效果。因此,建议将其作为DCS长期,安全和稳定运行的先决方法。但是,在运行10天后,U形管系统的出口水温很容易超过23 C,这是由于传热作用而导致DCS的最高温度极限。不建议这样做。将地下水槽用于DCS的可行性取决于对建筑物冷却负荷与水槽冷却能力之间的适应性的合理分析。由于经济和生态原因,仍建议将其作为辅助冷却系统。

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