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Performance of solid desiccant-based evaporative cooling system under the climatic zones of India

机译:印度气候带下基于固体干燥剂的蒸发冷却系统的性能

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For better use of evaporative cooling techniques in humid climate, a desiccant cooling system (DCS) can be an alternative option in place of a conventional cooling system. This paper presents a theoretical comparative study of the performance of a DCS for four different climatic conditions of India (i.e. hot and dry, warm and humid, moderate and composite climates). From the analysis, it was found that the performance of a DCS is suitable in warm and humid climate. The thermodynamic equations of intermediate states of the desiccant cooling cycle are also presented. Effects of some parameters such as outdoor specific humidity, RIP ratio (regeneration air flow/process air flow) and power required to regenerate the desiccant wheel have been studied. The theoretical minimum RIP ratio has been computed for the maximum coefficient of performance (COP) of a DCS and its value was found to be 0.55 in Mumbai (warm and humid climate) for the 80% effectiveness of ECW. This paper also presents the relationship between COP and regeneration power with the different values of RIP ratios.
机译:为了在潮湿的气候中更好地使用蒸发冷却技术,可以使用干燥剂冷却系统(DCS)代替常规冷却系统。本文对DCS在印度的四种不同气候条件下(即炎热干燥,温暖湿润,中度和复合气候)的性能进行了理论比较研究。通过分析,发现DCS的性能适合于温暖和潮湿的气候。还给出了干燥剂冷却循环中间状态的热力学方程。研究了一些参数的影响,例如室外比湿度,RIP比(再生空气流量/过程空气流量)和再生干燥剂轮所需的功率。已计算出DCS的最大性能系数(COP)的理论最小RIP比率,对于ECW的80%有效性,其值在孟买(温暖和潮湿的气候)为0.55。本文还介绍了不同RIP比率值下COP与再生功率之间的关系。

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