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MyrrhaFoam: A CFD model for the study of the thermal hydraulic behavior of MYRRHA

机译:MyrrhaFoam:用于研究MYRRHA的热水力行为的CFD模型

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Numerical analysis of the thermohydraulic behavior of the innovative flexible fast spectrum research reactor, MYRRHA, under design by the Belgian Nuclear Research center (SCK·CEN) is a very challenging task. The primary coolant of the reactor is Lead Bismuth Eutectic, LBE, which is an opaque heavy liquid metal with low Prandtl number. The simulation tool needs to involve many complex physical phenomena to be able to predict accurately the flow and thermal field in the pool type reactor. In the past few years, within the frame of a collaboration between SCK'CEN and the von Karman Institute, a new platform, MyrrhaFoam, was developed based on the open source simulation environment, OpenFOAM. The current tool can deal with incompressible buoyancy corrected steady/unsteady single phase flows. It takes into account conjugate heat transfer in the solid parts which is mandatory due to the expected high temperature gradients between the different parts of the reactor. The temperature dependent properties of LBE are also considered. MyrrhaFoam is supplemented with the most relevant thermal turbulence models for low Prandtl number liquids up to date.
机译:由比利时核研究中心(SCK·CEN)设计的新型柔性快速谱研究堆MYRRHA的热工水力行为的数值分析是一项非常艰巨的任务。反应堆的主要冷却剂是铋铋共晶,LBE,它是一种不透明的重金属液体,具有低的Prandtl数。该仿真工具需要涉及许多复杂的物理现象,以便能够准确预测池型反应器中的流场和热场。在过去的几年中,在SCK'CEN与von Karman研究所的合作框架内,基于开源仿真环境OpenFOAM开发了一个新的平台MyrrhaFoam。当前的工具可以处理不可压缩的浮力校正的稳态/非稳态单相流。它考虑了固体部分中的共轭传热,这是强制性的,这是由于反应器不同部分之间的预期高温梯度所致。还考虑了LBE的温度相关特性。 MyrrhaFoam补充了最新的最相关的热湍流模型,可用于低Prandtl数的液体。

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