首页> 外文会议>ASME International Conference on Energy Sustainability;ASME Heat Transfer Conference >NUMERICAL INVESTIGATION ON POOL BOILING OVER A VERTICAL TUBE COUPLED WITH IN-TUBE CONDENSATION
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NUMERICAL INVESTIGATION ON POOL BOILING OVER A VERTICAL TUBE COUPLED WITH IN-TUBE CONDENSATION

机译:管内冷凝耦合的垂直管池沸腾的数值研究

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Pool boiling and in-tube condensation phenomena have been investigated intensively during the past decades, due to the superior heat transfer capacity of the phase change process. In passive heat removal heat exchangers of nuclear power plants, the two phase-change phenomena usually occur simultaneously on both sides of the tube wall to achieve the maximum heat transfer efficiency. However, the studies on the effects of in-tube condensation on external pool boiling heat transfer are very limited, especially in numerical computation aspect. In the present study, the saturated pooling boiling over a vertical tube under the influences of in-tube steam condensation is investigated numerically. The Volume of Fluid (VOF) interface tracking method is employed based on the 2D axisymmetric Euler-Euler multiphase frame. The phase change model combining with a mathematical smoothing algorithm and a temporal relaxation procedure has been implemented into CFD platform by user defined functions (UDFs). The two-phase flow pattern and bubble behavior have been analyzed. The effects of inlet steam mass flow rate on boiling heat transfer are discussed.
机译:由于相变工艺的卓越传热能力,池沸腾和管道冷凝现象已经在过去几十年中进行了密集的。在核发生厂的被动散热热交换器中,两个相变现象通常在管壁的两侧同时发生,以实现最大的传热效率。然而,关于管内冷凝对外部池沸腾热传递的影响的研究非常有限,特别是在数值计算方面。在本研究中,在数值上研究了在管内蒸汽冷凝的影响下垂直管上的饱和合并沸腾。基于2D轴对称Euler-euler多相框架采用流体(VOF)接口跟踪方法的体积。通过用户定义的函数(UDFS)已经实现了与数学平滑算法的相变模型和时间松弛过程已经实现为CFD平台。已经分析了两相流动模式和气泡行为。讨论了入口蒸汽质量流量对沸腾热传递的影响。

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