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The elastic and moisture transfer properties of polyethylene and polypropylene membranes for use in liquid-to-air energy exchangers

机译:用于液-气换热器的聚乙烯和聚丙烯膜的弹性和水分传递特性

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摘要

The elastic and moisture transfer properties of membrane materials are required when designing liquid-to-air energy exchangers composed of a series of pressurized membrane channels. Elastic properties are needed to ensure minimal deflections and moisture transfer properties are needed to ensure high moisture transfer rates between the liquid desiccant and air streams. In this research, two ASTM tension test standards (D 882 and D 4595) and circular and square bulge tests are used to determine the elastic moduli of two membranes; the dynamic moisture permeation cell is used to determine the water vapour resistance. The experimental data show the effects of membrane orientation, strain rate and relative humidity on the elastic properties and the effect of humidity on the water vapour resistance. Results show that the bulge test is best suited for the proposed application of a pressurized membrane channel since it includes biaxial effects and gives accurate data that are easy to measure and more closely represent a membrane channel under uniform pressure. The measured elastic moduli and water vapour resistances are applied to estimate the deflections of a pressurized membrane channel supported by a screen with square openings and the energy transfer effectiveness of an energy recovery system consisting of two liquid-to-air membrane energy exchangers.
机译:在设计由一系列加压膜通道组成的液-气换热器时,需要膜材料的弹性和水分传递特性。需要弹性特性以确保最小的挠度,并且需要水分传递特性以确保液体干燥剂与气流之间的高水分传递速率。在这项研究中,使用两个ASTM拉伸测试标准(D 882和D 4595)以及圆形和方形凸起测试来确定两个膜的弹性模量。动态透湿池用于确定耐水蒸气性。实验数据表明膜取向,应变率和相对湿度对弹性的影响以及湿度对耐水蒸气性的影响。结果表明,凸出测试最适合拟议的加压膜通道应用,因为它具有双轴效应,并提供易于测量的准确数据,并且更均匀地代表了均匀压力下的膜通道。应用测得的弹性模量和水蒸气阻力来估算由带有方形开口的筛网支撑的加压膜通道的挠度,以及由两个液-气膜能量交换器组成的能量回收系统的能量传递效率。

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