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2D BEM modeling of a singular thermal diffusion free boundary problem with phase change

机译:相变奇异热扩散自由边界问题的2D BEM模型

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We report a 2D BEM modeling of the thermal diffusion-controlled growth of a vapor bubble attached to a heating surface during saturated pool boiling. The transient heat conduction problem is solved in a liquid that surrounds a bubble with a free boundary and in a semi-infinite solid heater. The heat generated homogeneously in the heater causes evaporation, i.e. the bubble growth. A singularity exists at the point of the triple (liquid-vapor-solid) contact. At high system pressure the bubble is assumed to grow slowly, its shape being defined by the surface tension and the vapor recoil force, a force coming from the liquid evaporating into the bubble. It is shown that at some typical time the dry spot under the bubble begins to grow rapidly under the action of the vapor recoil. Such a bubble can eventually spread into a vapor film that can separate the liquid from the heater, thus triggering the boiling crisis (Critical Heat Flux phenomenon).
机译:我们报告了在饱和池沸腾期间连接到加热表面的热扩散控制的热扩散控制生长的2D BEM模型。瞬态导热问题在含有自由边界和半无限固体加热器的液体中溶解在液体中。在加热器中均匀产生的热量导致蒸发,即气泡生长。在三相(液 - 蒸汽固体)接触点处存在奇点。在高系统压力下,假设气泡缓慢生长,其形状由表面张力和蒸汽反冲力限定,从液体蒸发到气泡中的力。结果表明,在一些典型的时间在气泡下的干燥点开始在蒸汽反冲的作用下快速生长。这种气泡最终可以扩散到可以将液体与加热器分离的蒸汽膜中,从而引发沸腾危机(临界热通量现象)。

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