SPACE COOLING WITH GROUNDWATER PUMPED BY A SOLAR DRIVEN PUMP

Hakan Dumrul, S. Selimli, Sezayi Yilmaz, B. Korkmaz
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Abstract

In this study, it was experimentally investigated that the groundwater of a well is brought to the surface using solar energy, which is one of the renewable energy sources, and the cooling of a place with this water with low energy density. The study evaluated cooling performance on two different days (Exp. 1 and Exp. 2) and at two different cooling water flow rates. The efficiency of the PV system was found to be 8.33±0.44% in Exp. 1 and 8.3±0.44% in Exp. 2. The cooling loads of the cooled buildings differ in Exp. 1 and Exp. 2 due to ambient conditions. The cooling load in Exp. 1 was determined to be 572±22.8 W and in Exp. 2 about 828±33.1 W. The heat loads extracted from the building by the groundwater used as a cooling fluid are 410±16.4 W and 786±31.4 W for Exp. 1 and Exp. 2. The cooling performance evaluation criteria (CPEP) value was found to be 0.72 for Exp. 1 and 0.95 for Exp. 2. Although there was a significant difference between the cooling loads for Exp. 1 and Exp. 2, the cooling load coverage increased with the increase in cooling water flow rate according to the CPEP values. Although in both experiments the cooling load was not fully met and the temperature inside the structure rose slightly during the experiment, it was kept cool.
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用太阳能驱动的水泵抽取地下水进行空间冷却
在这项研究中,利用可再生能源之一的太阳能将水井的地下水引入地表,并用这种能量密度较低的水对一个地方进行冷却,这是一项实验性研究。研究评估了两个不同日期(Exp.1 和 Exp.2)和两种不同冷却水流量下的冷却性能。光伏系统的效率在 Exp.1 中为 8.33±0.44%,在 Exp.2 中为 8.3±0.44%。由于环境条件不同,Exp.1 和 Exp.2 中被冷却建筑物的冷却负荷也不同。实验 1 中的冷却负荷为 572±22.8 W,实验 2 中的冷却负荷约为 828±33.1 W。尽管实验 1 和实验 2 的冷却负荷存在显著差异,但根据 CPEP 值,冷却负荷覆盖率随冷却水流量的增加而增加。虽然在两次实验中都没有完全满足冷却负荷的要求,而且在实验过程中结构内部的温度略有上升,但仍能保持凉爽。
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