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首页> 外文期刊>Science and Technology for the Built Environment >Evaluation of governing heat and mass transfer resistance in membrane-based energy recovery ventilators with internal support structures
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Evaluation of governing heat and mass transfer resistance in membrane-based energy recovery ventilators with internal support structures

机译:基于膜的能量回收呼吸机的测定热和传质阻力评价内部支撑结构

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摘要

Energy recovery ventilators are an effective way to reduce energy consumption in buildings while satisfying ventilation standards. As membrane technology and manufacturing methods improve, membrane-based energy recovery ventilators are seeing increased market penetration. In the present study, the feasibility of membrane energy recovery ventilators designed to fit in a commercial building wall cavity is investigated. A heat and mass transfer resistance and pressure drop model is developed for a low aspect ratio (width/height) exchanger and is used to evaluate the sensible and latent effectiveness of a counter-flow energy recovery ventilator with internal support structures. The performance of strip-fin and pin-fin structures are compared and dominant heat and mass transfer resistances are investigated. It is shown that for all cases the sensible heat transfer is dominated by the convective resistance while the dominant mass transfer resistance shifted to the membrane at smaller hydraulic diameters. The results suggest that as membrane technology improves, enhancements to the airside heat and mass transfer coefficients will be required to continue to realize performance gains.
机译:能量恢复呼吸机是减少建筑物中能耗的有效方法,同时满足通风标准。作为膜技术和制造方法的改善,基于膜的能量回收呼吸机看到市场渗透率增加。在本研究中,研究了膜能量回收呼吸器的可行性,该膜能量回收呼吸器设计用于配合在商业建筑壁腔中。为低纵横比(宽度/高度)交换器开发了热量和传质电阻和压降模型,并且用于评估逆流能量回收呼吸机与内部支撑结构的显性和潜在的效率。比较条纹翅片和尖翅结构的性能,并研究了主要的热量和传质电阻。结果表明,对于所有情况,可明智的传热由对流电阻支配,而在较小的液压直径下主导传质电阻偏移到膜。结果表明,随着膜技术改善,将需要对空气侧热量和传质系数的增强来继续实现性能增益。

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