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Droplet And Bubble Dynamics In Saturated Fc-72 Spray Cooling On A Smooth Surface

机译:光滑表面上的饱和Fc-72喷雾冷却中的液滴和气泡动力学

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Droplet and bubble dynamics and nucleate heat transfer in saturated FC-72 spray cooling were studied using a simulation model. The spray cooling system simulated consists of three droplet fluxes impinging on a smooth heater, where secondary nuclei outnumber the surface nuclei. Using the experimentally observed bubble growth rate on a smooth diamond heater, submodels were assumed based on physical reasoning for the number of secondary nuclei entrained by the impinging droplets, bubble puncturing by the impinging droplets, bubble merging, and the spatial distribution of secondary nuclei. The predicted nucleate heat transfer was in agreement with experimental findings. Dynamic aspects of the droplets and bubbles, which had been difficult to observe experimentally, and their ability in enhancing nucleate heat transfer were then discussed based on the results of the simulation. These aspects include bubble merging, bubble puncturing by impinging droplets, secondary nucleation, bubble size distribution, and bubble diameter at puncture. Simply increasing the number of secondary nuclei is not as effective in enhancing nucleate heat transfer as when it is also combined with increased bubble puncturing frequency by the impinging droplets. For heat transfer enhancement, it is desirable to have as many small bubbles and as high a bubble density as possible.
机译:使用模拟模型研究了饱和FC-72喷雾冷却中的液滴和气泡动力学以及核热传递。模拟的喷雾冷却系统由撞击在光滑加热器上的三个液滴通量组成,次级核的数量大于表面核的数量。使用在光滑的金刚石加热器上实验观察到的气泡生长速率,基于物理推理假设了以下子模型:碰撞液滴夹带的次级核的数量,碰撞液滴刺破的气泡,泡沫合并以及次级核的空间分布。预测的核热传递与实验结果一致。然后,基于仿真结果,讨论了液滴和气泡的动态特性,这些特性在实验上很难观察到,并且它们增强了形核传热的能力。这些方面包括气泡合并,通过撞击液滴的气泡刺穿,二次成核,气泡尺寸分布和刺穿时的气泡直径。简单地增加次核的数量并不能有效地增强核的热传递,而当它还与撞击液滴的增加的气泡穿刺频率相结合时,则不那么有效。为了增强热传递,希望具有尽可能多的小气泡和尽可能高的气泡密度。

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