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Exergy analysis of two humidification process methods in air-conditioning systems

机译:空调系统中两种加湿工艺方法的火用分析

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Exergy analysis is a technique for systems and processes that can be used to evaluate the distribution of availability losses in a system, so that measures and priorities with improvement potential can be developed. This article investigates the difference between the amount of exergy consumption and exergy loss (irreversibility) in the two methods of humidification, namely Constant Enthalpy Humidification (CEH) and Constant Temperature Humidification (CTH) in a Heating Ventilation and Air Conditioning (HVAC) system. In this work a 15 x 9 x 3 m room with a 10000 cfm Air Handling Unit (AHU), and a 30 and 25 m of supply-and-return duct (30-25, respectively) are considered to investigate the exergy consumptions and irreversibilities of the components in the two humidification methods. The results show that the summation of irreversibilities in CEH is less than the CTH. In addition the power input of CEH in design condition is 12% less than the CTH, mostly due to large exergy consumption of the steam preparation in the humidification process. It can be concluded that CEH has superiority over the CTH due to less exergy consumption in the HVAC systems. (C) 2016 Elsevier B.V. All rights reserved.
机译:火用分析是一种用于系统和过程的技术,可用于评估系统中可用性损失的分布,从而可以开发具有改进潜力的措施和优先级。本文研究了两种加湿方法的热量消耗和热量损失量(不可逆性)之间的差异,这两种方法分别是加热通风和空调(HVAC)系统中的恒定焓加湿(CEH)和恒温加湿(CTH)。在这项工作中,一个15 x 9 x 3 m的房间,一个10000 cfm的空气处理单元(AHU)以及一个30 m和25 m的供气和回气管道(分别为30-25)被认为是用来调查火用能量消耗和两种加湿方法中各组分的不可逆性。结果表明,CEH中不可逆性的总和小于CTH。另外,在设计条件下,CEH的功率输入比CTH少12%,这主要是由于加湿过程中蒸汽制备的大量本能消耗所致。可以得出结论,由于HVAC系统中的火用较少,CEH优于CTH。 (C)2016 Elsevier B.V.保留所有权利。

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