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CFD analysis of flow boiling in the ITER first wall

机译:ITER第一壁沸腾流动的CFD分析

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This paper compares two Computational Fluid Dynamic (CFD) approaches for the analysis of flow boiling inside the first wall (FW) of the International Thermonuclear Experimental Reactor (ITER): (1) the Rohsenow model for nucleate boiling, seamlessly switching to the Volume of Fluid (VOF) approach for film boiling, as available in the commercial CFD code STAR-CCM+, (2) the Bergles-Rohsenow (BR) model, for which we developed a User Defined Function (UDF), implemented in the commercial code FLUENT. The physics of both models is described, and the results with different inlet conditions and heating levels are compared with experimental results obtained at the Efremov Institute, Russia. The performance of both models is compared in terms of accuracy and computational cost.
机译:本文比较了两种计算流体动力学(CFD)方法来分析国际热核实验反应器(ITER)第一壁(FW)内的流沸腾:(1)Rohsenow模型进行核沸腾,无缝切换至体积商业CFD代码STAR-CCM +中可用的流体(VOF)薄膜沸腾方法,(2)Bergles-Rohsenow(BR)模型,我们为此开发了用户定义功能(UDF),以商业代码FLUENT实现。描述了这两种模型的物理原理,并将不同入口条件和加热水平下的结果与俄罗斯Efremov研究所获得的实验结果进行了比较。根据准确性和计算成本比较了两个模型的性能。

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