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Numerical Simulation and Experimental Validation of the Dynamics of Multiple Bubble Merger During Pool Boiling Under Microgravity Conditions

机译:微重力条件下池沸腾过程中多重气泡合并动力学的数值模拟和实验验证

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Numerical simulation and experimental validation of the growth and departure of multiple merging bubbles and associated heat transfer on a horizontal heated surface during pool boiling under variable gravity conditions have been performed. A finite difference scheme is used to solve the equations governing mass, momentum, and energy in the vapor liquid phases. The vapor-liquid interface is captured by a level set method that is modified to include the influence of phase change at the liquid-vapor interface. Water is used as test liquid. The effects of reduced gravity condition and orientation of the bubbles on the bubble diameter, interfacial structure, bubble merger time, and departure time, as well as local heat fluxes, are studied. In the experiments, multiple vapor bubbles are produced on artificial cavities in the 2-10 micrometer diameter range, microfabricated on the polished silicon wafer with given spacing. The wafer was heated electrically from the back with miniature strain gage type heating elements in order to control the nucleation superheat. The experiments conducted in normal Earth gravity and in the low gravity environment of KC-135 aircraft are used to validate the numerical simulations.
机译:数值模拟和实验验证了在可变重力条件下在池沸腾过程中多个合并气泡的生长和离开以及相关加热在水平加热表面上的传热。使用有限差分方案求解控制液相中质量,动量和能量的方程。汽-液界面通过液位设定方法捕获,该方法被修改为包括液-液界面处的相变影响。水用作测试液体。研究了减小的重力条件和气泡取向对气泡直径,界面结构,气泡合并时间和离开时间以及局部热通量的影响。在实验中,在2-10微米直径范围内的人造腔上会产生多个气泡,并以给定的间距将其微细加工在抛光的硅片上。为了控制成核过热,用微型应变计型加热元件从背面对晶片进行了电加热。在正常地球重力和低重力环境下的KC-135飞机上进行的实验用于验证数值模拟。

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