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SINGLE BUBBLE GROWTH AT DIFFERENT GRAVITY AND THE EFFECTS OF MICROGRAVITY ON MARANGONI CONVECTION

机译:不同引力下的单泡生长以及微重力对马兰戈尼对流的影响

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In this paper, based on the previous experiment and the VOF (Volume of Fluid) multiphase model, the growth characteristics of a single bubble was numerically investigated in a rectangular pool boiling channel (10 mm × 10 mm × 25 mm) under micro-gravity. The transportation of mass and energy during the phase change was established by adding source term to the mass and energy equations with User Defined Function (UDF). The results showed that under microgravity, the streamline and the temperature field distribution around the bubble were significantly changed compared with the normal gravity, and the flow field and the temperature are no longer a symmetrical distribution. The bubble between microgravity and normal gravity was different from the detachment, and it does not departure from the heating wall directly under the microgravity conditions because of surface tension. But the surface tension gradient caused Marangoni effects are more significant at the smaller microgravity. The bubble growth is more complicated under the conditions of microgravity, and it is connected with the degree of the microgravity: smaller microgravity will result higher bubble growth rate. Moreover, the bubble diameter was changed more fantasticality, under microgravity and the heat transfer coefficient fluctuated more heavily with the increasing of microgravity.
机译:本文基于先前的实验和VOF(流体体积)多相模型,在微重力作用下,对矩形池沸腾通道(10 mm×10 mm×25 mm)中单个气泡的生长特性进行了数值研究。 。通过将源项添加到具有用户定义函数(UDF)的质量和能量方程中,可以建立相变过程中的质量和能量传输。结果表明,在微重力作用下,气泡周围的流线和温度场分布与正重力相比发生了显着变化,流场和温度不再是对称分布。微重力和法向重力之间的气泡与剥离不同,并且在微重力条件下,由于表面张力,它不会直接从加热壁离开。但是在较小的微重力下,引起马兰戈尼效应的表面张力梯度更为显着。在微重力条件下,气泡的生长更为复杂,并且与微重力的程度有关:较小的微重力将导致较高的气泡生长速率。此外,在微重力作用下,气泡直径变化更大,并且随着微重力的增加,传热系数的波动也更大。

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