首页> 外文会议>ASME summer heat transfer conference;HT2009 >AN EXTENSION OF THE LARGE-CELL RADIATION MODEL FOR THE CASE OF SEMI-TRANSPARENT NONISOTHERMAL PARTICLES
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AN EXTENSION OF THE LARGE-CELL RADIATION MODEL FOR THE CASE OF SEMI-TRANSPARENT NONISOTHERMAL PARTICLES

机译:半透明正负电子热粒子情况下大细胞辐射模型的扩展

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The recently developed model for thermal radiation in multiphase flows typical of melt-coolant interactions is generalized to account for transient temperature profile in large semi-transparent particles of solidifying melt. A modification of the Large-Cell Radiation Model (LCRM) is based on approximate solution for coupled radiation and conduction in optically thick spherical particles of a refractive material. The simplicity of the suggested approximation enables one to implement the modified model in a multiphase CFD code. The LCRM extension makes possible the use of this approach not only for the core melt in nuclear fuel-coolant interactions (FCI's) but also for other melt substances which are widely used in the laboratory experiments. The numerical data demonstrate an effect of absorption coefficient of the particle substance on the rate of particle cooling and solidification.
机译:最近开发的熔体-冷却剂相互作用典型的多相流中的热辐射模型被普遍化,以考虑到凝固熔体的大半透明颗粒中的瞬态温度曲线。大细胞辐射模型(LCRM)的修改是基于折射材料的光学厚度球形颗粒中辐射和传导耦合的近似解。建议近似的简单性使人们可以在多相CFD代码中实现修改后的模型。 LCRM扩展使这种方法不仅可以用于核燃料-冷却剂相互作用(FCI)中的堆芯熔体,而且可以用于实验室实验中广泛使用的其他熔体物质。数值数据证明了颗粒物质的吸收系数对颗粒冷却和固化速率的影响。

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