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Improving performance of AHU using exhaust air potential by applying exergy analysis

机译:通过应用DeSergy分析,提高AHU的性能

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摘要

In this study, the exergy analysis of an AHU equipped with a heat and exergy recovery unit was investigated. The equations obtained from energy and exergy balance were solved based on a program developed in engineering equation solver. Through the air-to-air heat exchanger, the energy is transferred from the fresh air to the exhaust one but the exergy is transferred from the exhaust air to the fresh one. Therefore, the cooling coil power consumption and irreversibility were reduced. The efficacy of installing an air-to-air heat exchanger is dependent on the temperature and relative humidity of the ambient. Based on the results, at the lowest ambient temperature and relative humidity, the power consumption is reduced by 10.8%, while in the highest ambient temperature and relative humidity, this figure was 33%. Under ambient conditions with low temperatures and high relative humidity, installation of heat recovery unit reduced the irreversibility by 5.18%, while in the highest temperature and lowest relative humidity this figure was 12.8%.
机译:在这项研究中,研究了配备热量和恢复单元的AHU的漏洞分析。基于工程方程求解器中开发的程序来解决了从能量和前进的余额获得的等式。通过空气到空气热交换器,能量从新鲜空气转移到排气,但是驱动器从排气到新鲜的空气转移到新鲜的空气中。因此,降低了冷却线圈功耗和不可逆性。安装空气 - 空气热交换器的功效取决于环境的温度和相对湿度。基于结果,在最低的环境温度和相对湿度下,功耗降低了10.8%,而在最高环境温度和相对湿度下,该数字为33%。在温度低的环境条件下,高温和高相对湿度,加热回收单元的安装将不可逆性降低5.18%,而在最高温度和最低相对湿度下,该图为12.8%。

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