Numerical study of gas-injection induced pool sloshing behavior using MPS method

Junru Lv , Xiaoxing Liu , Kai Wang , Songbai Cheng , Lili Tong
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引用次数: 2

Abstract

When a Core Disruptive Accident (CDA) occurs in a Sodium-cooled Fast Reactor (SFR), as the accident progresses, its core may form a pool of molten fuel. When the molten fuel pool expands, a certain amount of coolant may be entrained in it. Because of the Fuel-Coolant Interaction (FCI), the molten fuel pool will have centralized sloshing behavior, making the fuel distribution more dense, leading to the risk of re-criticality, therefore, the study of centralized sloshing behavior is of great significance for evaluating the impact of the CDA. Under various experimental conditions, the sloshing experiment of gas injection can effectively simulate the mechanism and characteristics of centralized sloshing behavior. In this study, numerical simulation of gas-injection induced sloshing behavior is performed based on the Moving Particle Semi-implicit (MPS) method. Simulation results are compared with the experimental results. The results show that the deformation of bubble shape and liquid level in the sloshing characteristics are in good agreement with the experimental results. Therefore, the numerical simulation method established in this study can be used to study the pool sloshing characteristics induced by gas injection.

注气诱导池晃动行为的MPS数值研究
当钠冷快堆发生堆芯破坏事故时,随着事故的进行,堆芯可能形成熔池。当熔融燃料池膨胀时,可能会夹带一定量的冷却剂。由于燃料-冷却剂相互作用(FCI),燃料熔池会发生集中晃动,使燃料分布更加密集,导致再临界风险,因此,集中晃动行为的研究对于评价CDA的影响具有重要意义。在各种实验条件下,注气晃动实验可以有效地模拟集中晃动行为的机理和特征。本文基于运动粒子半隐式(MPS)方法对喷射气体诱导的晃动行为进行了数值模拟。仿真结果与实验结果进行了比较。结果表明,气泡形状和液位在晃动特性中的变形与实验结果吻合较好。因此,本研究建立的数值模拟方法可用于研究注气引起的池晃动特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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