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Numerical verification of a simplified model for vapor bubble lift-off from a hydrophilic heated flat-wall

机译:简化的模型从亲水加热平板上剥离汽泡的数值验证

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Three-dimensional interface tracking simulations were carried out to investigate the role of surface tension force in the process of vapor bubble lift-off from a hydrophilic heated surface in nucleate boiling. Since bubbles are frequently flattened along the heated surface in photographic experiments reported in literature, a bubble was assumed to be spheroidal in shape in the initial condition. The effect of phase change at the bubble interface was not taken into consideration for the sake of simplicity. In the present numerical simulations, the initially spheroidal bubble approached the spherical shape due to the surface tension force and was eventually lifted off the surface. The change in bubble shape induced local liquid flow directing toward the bubble base, that was the direct cause of the occurrence of the bubble lift-off. The dependence of the bubble migration velocity on several important parameters including the bubble size, surface tension coefficient and the density of surrounding liquid was also investigated. The change in bubble shape from flattened to more rounded causes the reduction of the surface energy, while the formation of local liquid flow leads to an increase in the kinetic energy. It was demonstrated that the bubble migration velocity after the lift-off can successfully be interpreted from the standpoint of energy conservation during the lift-off process.
机译:进行了三维界面跟踪模拟,以研究表面张力在成核沸腾过程中从亲水加热表面剥离汽泡过程中的作用。由于在文献中报道的摄影实验中气泡经常沿着加热的表面变平,所以在初始条件下假定气泡为球形。为了简单起见,未考虑气泡界面处的相变效应。在当前的数值模拟中,最初的球形气泡由于表面张力而接近球形,并最终被提离表面。气泡形状的变化引起局部液体流向气泡底部,这是气泡剥离发生的直接原因。还研究了气泡迁移速度对几个重要参数的依赖性,这些参数包括气泡尺寸,表面张力系数和周围液体的密度。气泡形状从变平到更圆角的变化导致表面能的减少,而局部液体流的形成导致动能的增加。结果表明,从提离过程中的能量节约的角度,可以成功地解释提离后的气泡迁移速度。

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