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首页> 外文期刊>AIChE Journal >Modeling of Coupled Mass and Heat Transfer Through Venting Membranes for Automotive Applications
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Modeling of Coupled Mass and Heat Transfer Through Venting Membranes for Automotive Applications

机译:汽车应用中通气膜的传热耦合耦合模型

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摘要

Experimental and theoretical approaches based on a mathematical model,have been developed to study the evolution of environmental parameters(temperature,total pressure,relative humidity,and water vapor partial pressure)inside a housing of an electronic device with a window containing a macroporous membrane.The model was based on the coupling of mass and heat transfer taking into account the effects of polarization of concentration in boundary layers.Membranes have been characterized by mercury porosimetry,liquid entry pressure measurements,scanning electron microscopy,and gas permeation.Once the model was experimentally validated,it was applied to investigate the influence of membranes on heat and mass transfer and to study the impact of the boundary layers on the global mass transport.The results demonstrated the importance of the membrane choice and dimensions to get the best temperature regulation and avoid water condensation inside an automotive electronic control unit(ECU).
机译:已经开发了基于数学模型的实验和理论方法,以研究具有带大孔膜的窗口的电子设备的壳体内部的环境参数(温度,总压力,相对湿度和水蒸气分压)的演变。该模型基于质量与传热的耦合,并考虑了边界层中浓度极化的影响。通过汞孔隙率法,液体进入压力测量,扫描电子显微镜和气体渗透对膜进行了表征。经过实验验证,它被用于研究膜对传热和传质的影响,并研究边界层对整体传质的影响。结果表明,选择膜的尺寸和尺寸对于获得最佳温度调节和控制至关重要。避免在汽车电子控制单元(ECU)内结露水。

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