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首页> 外文期刊>International journal of hydrogen energy >Application of a two-phase flow model for natural convection in an electrochemical cell
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Application of a two-phase flow model for natural convection in an electrochemical cell

机译:两相流模型在电化学电池自然对流中的应用

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A two-phase mathematical model is applied to natural convection in an electrochemical cell. The model solves transport equations for both phases with an allowance of interphase mass and momentum exchange. The effect of current density and bubble size on the gas release rate, velocity field and void fraction distribution are investigated in a range of parameter. The flow in the system was generated due to the density difference between gas and liquid phases. It is found that both current density and bubble size significantly affect the gas release rate and velocity field. At an intermediate current density two circulation patterns form at the vicinity of the free surface. The circulations rotating opposite directions enhance lateral diffusion of gas phase. The gas evolution is enhanced with higher current density and lower bubble diameters.
机译:将两阶段数学模型应用于电化学电池中的自然对流。该模型在允许相间质量和动量交换的情况下求解了两个相的输运方程。在一定的参数范围内,研究了电流密度和气泡大小对气体释放速率,速度场和空隙率分布的影响。由于气相和液相之间的密度差异,产生了系统中的流量。发现电流密度和气泡尺寸均显着影响气体释放速率和速度场。在中等电流密度下,在自由表面附近形成两个循环模式。反向旋转的循环增强了气相的横向扩散。较高的电流密度和较小的气泡直径可增强气体的释放。

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