A Numerical Analysis Research on Earlier Behavior of Molten Droplet Covered with Vapor Film at the Stage of Triggering and Propagation in Steam Explosion

Author:

Zhong Mingjun1ORCID,Li Yankai1,Lin Meng1ORCID,Yuan Minghao1,Yang Yanhua1

Affiliation:

1. School of Nuclear Science and Engineering, Shanghai Jiaotong University, No. 800 Dongchuan Road, Shanghai 200240, China

Abstract

When the molten fuel with high temperature falls into the cavity water, it will be dispersed into droplets which are covered with vapor films due to the rapid heat transfer with phase transition. This situation cannot be simply described by liquid-liquid or gas-liquid systems. And there are no sufficient experimental studies on the behavior of droplet covered with vapor film because of the rapid reaction and the difficulty in capture of the film configuration. In this paper, a multiphase code with the volume of fluid (VOF) method is used to simulate the earlier behavior of droplet when vapor film exits. The earlier behavior is defined as behavior of the droplet before its disintegration. Thermal effect and pure hydrodynamic effect are, respectively, considered. The simulation results indicate that the film thickness and material density have significant effect on the earlier behavior of droplet. The situation assumed in Ciccarelli and Frost’s model (1994) is observed in current simulation of earlier thermal droplet behavior. The effect of triggering pressure pulse on earlier hydrodynamic behavior is also discussed and it indicates that vapor film has little effect on the hydrodynamic droplet deformation when the intensity of the pressure pulse is very high.

Funder

National Science and Technology Major Project

Publisher

Hindawi Limited

Subject

Nuclear Energy and Engineering

Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Numerical modeling of high-temperature melt droplet interaction with water;Annals of Nuclear Energy;2023-06

2. A numerical analysis on molten droplet hydrodynamics in sodium pool;IOP Conference Series: Earth and Environmental Science;2021-03-01

3. Analysis of Steam Explosion under Conditions of Partially Flooded Cavity and Submerged Reactor Vessel;Science and Technology of Nuclear Installations;2018-07-05

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