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Evaluation of desiccant wheel and prime mover as combined cooling, heating, and power system

机译:评估干燥剂轮和主要动器作为组合冷却,加热和电力系统

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摘要

In this research heating, cooling and electrical demands of a residential tower are evaluated for Iran various weather conditions. For this purpose, several cities are selected as the representative of the specific weather conditions. To meet the cooling demand, desiccant cooling system plus alternative systems are applied. To analyze desiccant wheel, outlet humidity and temperature have been modeled. Also, the effect of rotational speed and regeneration temperature on entropy generation of the desiccant wheel has been studied based on the obtained results. It is deduced that the entropy generation may be increased by increasing the regeneration temperature and the rotational speed. To regenerate the desiccant wheel, to meet the electrical demand and also to provide heating load, prime mover in the form of internal combustion engine is selected. Since prime movers do not operate in the full load, their performance in the partial load has been evaluated. By taking into consideration the required regeneration heating, the number of required prime movers has been calculated based on the regeneration temperature and partial load for each city. The results show that the number of required prime movers is increased by increasing the regeneration temperature of the wheel.
机译:在本研究中,对伊朗各种天气条件评估住宅塔的加热,冷却和电气需求。为此目的,选择几个城市作为特定天气条件的代表。为了满足冷却需求,施加干燥剂冷却系统加上替代系统。分析干燥剂轮,出口湿度和温度已经建模。而且,基于所得的结果研究了旋转速度和再生温度对干燥剂轮的熵产生的影响。推导出通过增加再生温度和转速来增加熵产生。为了再生干燥剂轮,以满足电气需求以及提供加热载荷,选择了内燃机形式的主要动器。由于Prime Movers在完全负载中操作不操作,因此它们在部分负载中的性能已经评估。通过考虑所需的再生加热,已经基于每个城市的再生温度和部分负荷计算所需的素移动器的数量。结果表明,通过增加车轮的再生温度来增加所需素移动器的数量。

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