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NUCLEATE POOL BOILING INVESTIGATION ON A SILICON TEST SECTION WITH MICRO-FABRICATED CAVITIES

机译:用微型制造空腔的硅试验部分核解核心池沸腾调查

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The basic mechanisms of nucleate boiling are still not completely understood, in spite of the many numerical and experimental studies dedicated to the topic. The use of a hybrid code allows reasonable computational times for simulations of a solid plate with a large population of artificial micro-cavities with fixed distribution. This paper analyses the guidelines for the design, through numerical simulations, of the location and sizes of micro-fabricated cavities on a new silicon test section immersed in FC-72 at the saturation temperature for different pressures with an imposed heat flux applied at the back of the plate. Particular focus is on variations of wall temperature around nucleation sites.
机译:尽管致力于该主题的许多数值和实验研究,但仍然没有完全理解核心沸腾的基本机制。混合码的使用允许合理的计算时间来模拟具有大量具有固定分布的人造微空腔的固体板的模拟。本文分析了通过数值模拟的设计指导,通过数值模拟在饱和度温度下浸入FC-72的新硅测试部分,在饱和温度下施加在后面的施加热通量的不同压力板块。特别重点是核心围绕成核位点的壁温的变化。

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