首页> 外文会议>International conference on nuclear engineering;ASME power conference >CFD SIMULATION OF DIRECT CONTACT CONDENSATION WITH ANSYS CFX USING LOCALLY DEFINED HEAT TRANSFER COEFFICIENTS
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CFD SIMULATION OF DIRECT CONTACT CONDENSATION WITH ANSYS CFX USING LOCALLY DEFINED HEAT TRANSFER COEFFICIENTS

机译:使用局部定义的传热系数用ANSYS CFX进行直接接触冷凝的CFD模拟

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The assessment of the performance of two Heat Transfer Coefficient (HTC) models, derived from the Surface Renewal Theory (SRT) has been carried out based on a two-step approach. First using measurement data of a quasi-steady state horizontal stratified flow, the LAOKOON experiment performed at the TU Munich, and second by simulating a more complex transient experiment carried out at the PMK-2 facility of the KFKI Atomic Energy Research Institute Budapest. Both experiments have been simulated with ANSYS CFX 12.1 together with the added HTC models. The Volume of Fluid (VOF) approach, an Interface Tracking Method, was chosen for the simulation of the two phase flow dynamics due to its advantage of explicitly solving the interface geometry; in comparison to a standard two fluid Eulerian model. The coupled system of VOF and SRT based HTC calculation demonstrated its potential to simulate transient two phase flows with heat and mass transfer.
机译:基于表面更新理论(SRT)得出的两个传热系数(HTC)模型的性能评估已基于两步法进行。首先使用准稳态水平分层流的测量数据,在慕尼黑工业大学进行LAOKOON实验,其次通过模拟在布达佩斯KFKI原子能研究所的PMK-2设施进行的更复杂的瞬态实验。这两个实验都已使用ANSYS CFX 12.1以及添加的HTC模型进行了仿真。选择流体体积(VOF)方法(一种界面跟踪方法)来模拟两相流动力学,因为它具有显着解决界面几何形状的优点;与标准的两种流体欧拉模型相比。基于VOF和SRT的HTC计算的耦合系统展示了其模拟瞬态两相传热和传质的潜力。

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