首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Effects of channel diameter on flow pattern and pressure drop for air-water flow in serpentine gas channels of PEM fuel cell-An Ex situ experiment
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Effects of channel diameter on flow pattern and pressure drop for air-water flow in serpentine gas channels of PEM fuel cell-An Ex situ experiment

机译:通道直径对PEM燃料电池蛇形气体通道空气流动流量和压降的影响 - EX原位实验

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摘要

Ex-situ experimental investigation of air-water two phase flow characteristics are carried out in rectangular serpentine mini and micro-channels. The test sections to be studied are made up of acrylic and are of three different hydraulic diameters of 1.65 mm, 1.00 mm and 0.65 mm with the corresponding length of 50 mm. Experiments are performed for different combinations of superficial velocities of air and water ranging between 0.0011 m/s and 0.33 m/s and 0.33 m/s to 16.66 m/s, respectively. The effect of channel orientation on various parameters is also studied. The visualisation of two phase is accomplished by high-speed camera. The flow pattern maps developed by closely scrutinizing each flow rate combinations are presented. Mal-distribution occurred in horizontal orientation of micro channel. However, vertical orientation of micro channel favoured draining of water, thereby encountered lesser pressure drop than mini channel. New correlation based on various dimensionless numbers has been proposed for modelling the pressure drop.
机译:在矩形蛇纹石迷你和微通道中进行空气水两相流动特性的前所实验研究。要研究的测试部分由丙烯酸组成,具有1.65mm,1.00 mm和0.65mm的三种不同的液压直径,相应的长度为50毫米。在0.0011m / s和0.33m / s和0.33m / s至16.66m / s之间的不同组合进行实验。还研究了信道取向对各种参数的影响。通过高速相机实现两相的可视化。提出了通过密切地仔细仔细仔细仔细仔细仔细仔细仔细仔细审查每个流量组合而开发的流动模式图。在微通道的水平方向上发生混乱。然而,微通道的垂直取向有利于水的排水,从而遇到比迷你通道较小的压降。已经提出了基于各种无量纲数的新相关性,用于建模压降。

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