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首页> 外文期刊>MATEC Web of Conferences >The Effect of Supply and Outdoor Air Temperature on The Enthalpy and Temperature Exchange Efficiency of a Paper Heat Exchanger
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The Effect of Supply and Outdoor Air Temperature on The Enthalpy and Temperature Exchange Efficiency of a Paper Heat Exchanger

机译:供应和室外空气温度对纸换热器焓和温度交换效率的影响

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Heat Recovery Ventilator (VHR) is widely used nowadays as it is capable to maintain high Indoor Air Quality (IAQ) while minimizing the energy loss of indoor air through air-to-air heat exchanger principle. The main component that enables VHR to perform air-to-air heat exchange is known as Paper Heat Exchanger (PP-HEX). Hence, the objective of this research is to study and analyse the performance of a PP-HEX under different return and outdoor air temperatures as well as their effect on both enthalpy and temperature exchange efficiency. Moreover, some numerical models of VHR have been developed to optimize some complex cases and the numerical models are meant to reduce the physical experiments to analyze or improve complex cases in the future. To the best of the authors knowledge, there is no experimental data available from any sources to validate the numerical models. To address this issue, two different supplies of PP-HEX are tested with an actual VHR, and both PP-HEXs will be referred to as PP-HEX-A and PP-HEX-B due to confidentiality. Furthermore, the testing is conducted in a temperature-controlled testing laboratory and the testing conditions are set according to the ISO standard. The preliminary testing results show that the temperature exchange efficiency and enthalpy exchange efficiency of the PP-HEXs have the same trends while the outdoor air temperature is fixed and varying the temperature of indoor air. In contrary, the temperature exchange efficiency and enthalpy exchange efficiency of the PP-HEXs have the same trends while the indoor air temperature is fixed and varying the temperature of outdoor air as well. With the default voltage supplies (240V) to VHR and the setup conditions (according to the ISO Standard) of return air to be 27°C and outdoor air to be 35°C, the testing results show that PP-HEX-A has a temperature exchange efficiency and enthalpy exchange efficiency with a range of (37.97 – 40.28) % and (30.77 – 57.81) % respectively. While PP-HEX-B has a temperature exchange efficiency and enthalpy exchange efficiency with a range of (35.29 – 42.5) % and (39.6 – 55.93) % respectively.
机译:如今,热回收呼吸机(VHR)现在广泛地使用,因为它能够保持高室内空气质量(IAQ),同时通过空气到空气热交换器原理最小化室内空气的能量损失。使VHR能够执行空气到空气热交换的主要成分称为纸热交换器(PP-HEX)。因此,本研究的目的是研究和分析不同返回和室外空气温度下PP-HEX的性能,以及对焓和温度交换效率的影响。此外,已经开发了一些VHR的数值模型以优化一些复杂的病例,并且数值模型是为了减少分析或改善未来复杂案件的物理实验。据作者所知,任何源都没有可用的实验数据来验证数值模型。为了解决这个问题,通过实际VHR测试了两种不同的PP-HEX电源,并且由于机密性,PP-HEXS将被称为PP-HEX-A和PP-HEX-B。此外,测试在温控测试实验室中进行,并根据ISO标准设定测试条件。初步测试结果表明,PP-HEX的温度交换效率和焓交换效率具有相同的趋势,而室外空气温度是固定的并改变室内空气的温度。相反,PP-HEX的温度交换效率和焓交换效率具有相同的趋势,而室内空气温度也固定并改变室外空气的温度。默认电压电源(240V)到VHR和返回空气的设置条件(根据ISO标准)为27°C和室外空气,为35°C,测试结果表明PP-Hex-A有一个温度交换效率和焓交换效率,范围(37.97-40.28)%和(30.77-57.81)%。虽然PP-HEX-B具有温度交换效率和焓交换效率,分别为(35.29-22.5)%和(39.6-55.93)%。

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