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Small-Sized Parabolic Trough Collector System for Solar Dehumidification Application: Design, Development, and Potential Assessment

机译:用于太阳能除湿应用的小型抛物线槽收集系统:设计,开发和潜在评估

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The current study presents a numerical and real-time performance analysis of a parabolic trough collector (PTC) system designed for solar air-conditioning applications. Initially, a thermodynamic model of PTC is developed using engineering equation solver (EES) having a capacity of around 3 kW. Then, an experimental PTC system setup is established with a concentration ratio of 9.93 using evacuated tube receivers. The experimental study is conducted under the climate of Taxila, Pakistan in accordance with ASHRAE 93-1986 standard. Furthermore, PTC system is integrated with a solid desiccant dehumidifier (SDD) to study the effect of various operating parameters such as direct solar radiation and inlet fluid temperature and its impact on dehumidification share. The experimental maximum temperature gain is around 5.2 degrees C, with the peak efficiency of 62% on a sunny day. Similarly, maximum thermal energy gain on sunny and cloudy days is 3.07kW and 2.33 kW, respectively. Afterwards, same comprehensive EES model of PTC with some modifications is used for annual transient analysis in TRNSYS for five different climates of Pakistan. Quetta revealed peak solar insolation of 656 W/m(2) and peak thermal energy 1139 MJ with 46% efficiency. The comparison shows good agreement between simulated and experimental results with root mean square error of around 9%.
机译:目前的研究介绍了设计用于太阳能空调应用的抛物线槽收集器(PTC)系统的数值和实时性能分析。最初,使用容量约为3 kW的工程方程求解器(EES)开发了PTC的热力学模型。然后,使用抽空管接收器以9.93的浓度比建立实验PTC系统设置。实验研究是根据Ashrae 93-1986标准的Taxila,巴基斯坦的气候开展。此外,PTC系统与固体干燥剂除湿器(SDD)集成,以研究各种操作参数,例如直接太阳辐射和入口流体温度及其对除湿份额的影响。实验最大温度增益约为5.2摄氏度,晴天峰值效率为62%。同样,阳光明媚和阴天的最大热能增益分别为3.07kW和2.33千瓦。之后,具有一些修改的PTC的相同综合EES模型用于三个不同气候的Trnsys的年瞬态分析。 Quetta透露峰值太阳能呈现656 W / m(2),峰值热能1139 MJ,效率为46%。比较显示模拟和实验结果之间的良好一致性,具有大约9%的根均线误差。

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