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首页> 外文期刊>Chemical Engineering Science >Milli-channel with metal foams under an applied gas-liquid periodic flow: Flow patterns, residence time distribution and pulsing properties
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Milli-channel with metal foams under an applied gas-liquid periodic flow: Flow patterns, residence time distribution and pulsing properties

机译:在施加的气液周期性流动下带有金属泡沫的毫通道:流动模式,停留时间分布和脉冲特性

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摘要

This work investigates the hydrodynamics of a square milli-channel filled with metallic open-cell-foams (OCFs) under an applied G-L Taylor flow. The hydrodynamic properties of the Taylor flow are not maintained but induce pulsations in the foam bed. Thus, flow patterns in the foam can be represented by liquid plug pulses alternating with meandering digital gas paths into quasi-stagnant liquid zones. The pulse study revealed that the flow behaviour is quite similar to that encountered in more classical granular media of lower porosity. Predictive correlations for pulse frequency and velocity are proposed. Liquid residence time distribution (RTD) experiments were performed and revealed that fluid velocities, liquid viscosity and foam geometrical properties control the system. High liquid hold ups up to 90% are estimated and a predictive correlation is proposed. Interestingly, the impacts of the foam and liquid properties on this liquid hold up appear less pronounced in contrast with literature on other granular media. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项工作研究了在施加的G-L泰勒流作用下充满金属开孔泡沫(OCF)的方形毫通道的流体动力学。泰勒流的流体力学特性无法保持,但会在泡沫床中引起脉动。因此,泡沫中的流动模式可以由液体塞子脉冲表示,这些塞子脉冲与蜿蜒的数字气体路径交替进入准停滞的液体区域。脉冲研究表明,流动行为与孔隙率较低的更经典的颗粒介质中的流动行为非常相似。提出了脉冲频率和速度的预测相关性。进行了液体停留时间分布(RTD)实验,结果表明,流体速度,液体粘度和泡沫几何特性可控制系统。估计高达90%的高液体滞留率,并提出了预测相关性。有趣的是,与其他粒状介质上的文献相比,泡沫和液体性质对该液体滞留的影响似乎不太明显。 (C)2014 Elsevier Ltd.保留所有权利。

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