首页> 外文会议>2002 ASME International Mechanical Engineering Congress and Exposition , Nov 17-22, 2002, New Orleans, Louisiana >CHARACTERISTICS OF GAS-LIQUID TWO-PHASE FLOW PATTERNS IN MINIATURE CHANNEL HAVING A GAS PERMEABLE SIDEWALL
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CHARACTERISTICS OF GAS-LIQUID TWO-PHASE FLOW PATTERNS IN MINIATURE CHANNEL HAVING A GAS PERMEABLE SIDEWALL

机译:具有透气侧壁的微型通道中的气液两相流特征

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Characteristics of gas-liquid two-phase flow patterns in a miniature square cross-section channel having a gas permeable sidewall have been investigated visually using a high-speed motion analyzer. The problem under consideration is encountered in the design of Direct Feed Methanol Fuel Cells (DMFC). The test section was a horizontally oriented rectangular transparent (Lucite material) channel with its lower wall consisting of a porous plate. Liquid was fed into the test section from its entrance, while gas was injected uniformly into the test section along the lower porous sidewall. The visual study shows the typical flow patterns found in the test section include bubbly flow, plug flow, slug flow, and annular flow. However, unlike the conventional co-current two-phase flow in a channel with gas and liquid uniformly entering from one of its ends, for the flow configuration considered in this work, it was found that two or three of the above mentioned flow patterns appeared simultaneously at different locations of the channel. The length of each flow pattern varied with the flow rates of liquid and gas. A distinct feature of annular flow for the present flow configuration is that small bubbles were continuously generated from the porous plate, which grew by blowing up the liquid film, formed a semi-sphere shape, and then ruptured and released gas into the core flow.
机译:已经使用高速运动分析仪肉眼研究了具有透气侧壁的微型正方形横截面通道中的气液两相流型的特性。在直接进料甲醇燃料电池(DMFC)的设计中遇到正在考虑的问题。测试部分是水平定向的矩形透明(萤石材料)通道,其下壁由多孔板组成。液体从其入口进入测试部分,而气体则沿着下部多孔侧壁均匀地注入测试部分。可视化研究表明,在测试部分中发现的典型流态包括气泡流,活塞流,团状流和环形流。但是,与通道中的气体和液体从其一端均匀进入的常规并流两相流不同,对于这项工作中考虑的流态,发现出现了上述流态中的两种或三种同时在频道的不同位置每个流型的长度随液体和气体的流速而变化。对于当前的流动构造,环形流动的一个显着特征是连续不断地从多孔板上产生小气泡,这些气泡通过吹胀液膜而增长,形成半球形,然后破裂并释放出气体进入芯流。

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