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首页> 外文期刊>Journal of Nuclear Science and Technology >PHYSICAL MODELING AND NUMERICAL SIMULATION OF SUBCOOLED BOILING IN ONE- AND THREE-DIMENSIONAL REPRESENTATIONS OF BUNDLE GEOMETRY
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PHYSICAL MODELING AND NUMERICAL SIMULATION OF SUBCOOLED BOILING IN ONE- AND THREE-DIMENSIONAL REPRESENTATIONS OF BUNDLE GEOMETRY

机译:一维和三维几何表示中过冷沸腾的物理建模和数值模拟

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摘要

Numerical simulation of subcooled boiling in one-dimensional geometry with the Homogeneous Equilibrium Model (HEM) may yield difficulties related to the very low sonic velocity associated with the HEM. These difficulties do not arise with subcritical flow. Possible solutions of the problem include introducing a relaxation of the vapor production rate. Three-dimensional simulations of subcooled boiling in bundle geometry typical of fast reactors can be performed by using two systems of conservation equations, one far the HEM and the other for a Separated Phases Model (SPM), with a smooth transition between the two models. The suitability of this approach for modeling subcooled boiling in three dimensional geometry has been proved by simulating numerically two selected experiments in 7- and 37-pin electrically heated bundles typical of fast reactor subassemblies. [References: 20]
机译:使用均质平衡模型(HEM)对一维几何形状的过冷沸腾进行数值模拟可能会产生与与HEM相关的非常低的声速有关的困难。亚临界流不会产生这些困难。该问题的可能解决方案包括引入蒸气产生速率的松弛。快速反应堆典型几何形状中过冷沸腾的三维模拟可以通过使用两个守恒方程组进行,一个方程组距离HEM远,另一个方程组用于分离相模型(SPM),两个模型之间可以平滑过渡。通过数值模拟快速反应器子组件典型的7针和37针电加热管束中的两个选定实验,已经证明了这种方法在三维几何形状中模拟过冷沸腾的适用性。 [参考:20]

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