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Numerical Simulation of a Single Bubble During Partial Nucleate Boiling on a Horizontal Surface

机译:水平表面上部分成核沸腾过程中单个泡沫的数值模拟

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In this study, complete numerical simulation of a growing and departing bubble on a horizontal surface was performed to clarify the physics of partial nucleate boiling and to predict the heat transfer coefficient. Finite difference scheme is used to solve the equations governing conservation of mass, momentum and energy in the vapor-liquid layers. The vapor-liquid interface is captured by a level set method which is modified to include the liquid-vapor phase change effect. The disjoining pressure effect is included in the numerical analysis to account for heat transfer through the liquid micro-layer. From the numerical simulation, the location where the vapor-liquid interface contacts the wall is observed to move outwards and then inwards as the bubble grows and departs. The bubble growth predicted from numerical analysis compares well with the experimental data reported in the literature.
机译:在该研究中,进行了在水平表面上生长和离去气泡的完整数值模拟,以阐明部分成核沸腾的物理学并预测传热系数。有限差分方案用于解决蒸汽液体层中质量,动量和能量守恒的方程。通过修改的水平设定方法捕获蒸汽液界面,该方法包括液相变化效果。分析中包括脱胶的压力效应以解释通过液体微层的热传递。根据数值模拟,观察到汽液界面接触壁的位置以向外移动,然后向内向内移动,然后随着气泡的生长和离开。从数值分析预测的泡沫生长比文献中报告的实验数据吻合得很好。

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