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Annual performance analysis between selected evaporative air coolers

机译:选定的蒸发式空气冷却器之间的年度性能分析

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The aim of this study is to determine which of the heat exchangers is characterized by the highest efficiency in different applications.Various types of evaporative air coolers were compared: a typical counter-flow unit, the same unit operating as a heat recovery exchanger, a regenerative unit and a novel, modified regenerative exchanger.The analysis includes comparing the work of evaporative heat exchangers during summer and winter season.The analysis is based on the original mathematical models.The numerical models are based on the modified ε-NTU method.It was established that selected arrangements of the presented exchangers are characterized by the different efficiency in different air-conditioning applications.The analysis faces the main construction aspects of those evaporative coolers and also compares two above-mentioned devices with modified regenerative air cooler, which can partly operate on cooled outdoor airflow and on the exhaust air from conditioned spaces.This solution can be applied in any climate and it is less dependent on the outdoor conditions.The second part of the study focuses on winter season and the potential of recovering heat with the same exchangers, but with dry working air channels.This allows establishing their total potential of generating energy savings during the annual operation.
机译:这项研究的目的是确定哪种换热器在不同应用中效率最高。比较了各种类型的蒸发式空气冷却器:典型的逆流单元,与换热器相同的单元,分析包括比较夏季和冬季的蒸发式热交换器的工作情况,该分析基于原始数学模型进行分析,数值模型基于改进的ε-NTU方法进行。我们确定了所介绍的换热器的选定布置在不同的空调应用中具有不同的效率。分析面对这些蒸发式冷却器的主要结构方面,并且还比较了上述两种带有改进的蓄热式空气冷却器的设备。该解决方案可在冷却的室外气流和空调空间的废气中运行。可以在任何气候下使用,并且对室外条件的依赖性较小。研究的第二部分关注冬季以及使用相同的热交换器但使用干燥的工作空气通道回收热量的潜力,这可以确定它们的总潜力。年度运营中节省能源的成本。

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