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Experimental investigation of solar photovoltaic operated ice thermal storage air-conditioning system

机译:太阳能光伏操作冰热蓄能空调系统的实验研究

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Under the double pressure of energy shortage and environmental pollution, ice thermal storage air-conditioning and photovoltaic air-conditioning has been applied in refrigeration field. In order to improve application scope and reduce investment operation cost, the ice thermal storage adopted to store solar energy in ice thermal storage air-conditioning driven by distributed photovoltaic energy system was proposed in this paper. Two operation models had been tested by experiment. Research results revealed all of the solar energy accepted by PV array had been stored with ice or cold water. Moreover, the experimental results analysis showed that it is feasible to use ice thermal storage instead of battery bank to store solar energy in the field of distributed photovoltaic refrigeration. In operation mode 1, the average system energy utilization efficiency was 0.525 and the average refrigeration efficiencies (eta) over bar (r) and (eta) over bar (rs) were 0.7292 and 0.0690, respectively. When system operated in mode 2, the average system energy utilization efficiency was 0.3377 and the refrigerator performances parameters (eta) over bar (r) and (eta) over bar (rs) were 4.49 and 0.3875, which were 6.16 times and 5.62 times of the average (eta) over bar (r) and (eta) over bar (rs) under working model 1. (c) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:在能量短缺和环境污染的双压力下,制冷场中的冰热存储空调和光伏空调已应用。为了提高应用范围和降低投资运营成本,提出了采用分布式光伏能量系统驱动的冰热蓄能空调中采用的冰热存储器的冰热存储。通过实验测试了两个操作模型。研究结果揭示了PV阵列所接受的所有太阳能储存冰或冷水。此外,实验结果分析表明,使用冰热储存而不是电池组可以在分布式光伏制冷领域存储太阳能是可行的。在操作模式1中,平均系统能量利用效率为0.525,分别为杆(R)和(r)和(eta)的平均制冷效率(eta)分别为0.7292和0.0690。当系统在模式2中操作时,平均系统能量利用效率为0.3377,并且冰箱性能参数(r)和(eta)上方的酒吧(rs)为4.49和0.3875,为6.16倍和5.62倍在工作模型1.(c)2017年Elsevier Ltd和IIR下,平均(et)和(r)和(eta)上方的酒吧(rs)和(rs)。版权所有。

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