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A moving subgrid model for simulation of reflood heat transfer

机译:用于模拟再热传递的移动子网格模型

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In the quench front and froth region the thermal-hydraulic parameters experience a sharp axial variation. The heat transfer regime changes from single-phase liquid, to nucleate boiling, to transition boiling and finally to film boiling in a small axial distance. One of the major limitations of all the current best-estimate codes is that a relatively coarse mesh is used to solve the complex fluid flow and heat transfer problem in proximity of the quench front during reflood. The use of a fine axial mesh for the entire core becomes prohibitive because of the large computational costs involved. Moreover, as the mesh size decreases, the standard numerical methods based on a semi-implicit scheme, tend to become unstable. A subgrid model was developed to resolve the complex thermal-hydraulic problem at the quench front and froth region. This model is a Fine Hydraulic Moving Grid (FHMG) that overlies a coarse Eulerian mesh in the proximity of the quench front and froth region. The fine mesh moves in the core and follows the quench front as it advances in the core while the rods cool and quench. The FHMG software package was developed and implemented into the COBRA-TF computer code. This paper presents the model and discusses preliminary results obtained with the COBRA-TF/FHMG computer code.
机译:在急冷区和泡沫区,热工液压参数会出现急剧的轴向变化。传热方式从单相液体变化到成核沸腾,再到过渡沸腾,最后到轴向距离很小的薄膜沸腾。当前所有最佳估计代码的主要限制之一是,在驱油过程中,使用相对较粗的网格来解决急冷锋附近的复杂流体流动和传热问题。由于涉及大量的计算成本,因此对于整个芯部使用精细的轴向网格变得令人望而却步。此外,随着网格尺寸的减小,基于半隐式方案的标准数值方法趋于变得不稳定。开发了一个子网格模型来解决急冷区和泡沫区的复杂热工问题。该模型是精细液压运动网格(FHMG),它覆盖在急冷区和泡沫区域附近的粗糙欧拉网格上。细网在芯中移动,并随着淬火前沿在芯中前进,而棒冷却并淬火。 FHMG软件包已开发并实施到COBRA-TF计算机代码中。本文介绍了该模型,并讨论了使用COBRA-TF / FHMG计算机代码获得的初步结果。

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