ZUO Juan-li, TIAN Wen-xi, QIU Sui-zheng, CHEN Rong-hua, SU Guang-hui. Numerical Simulation on Single Bubble Rising Behavior in Liquid Metal Using Moving Particle Semi-implicit Method[J]. Atomic Energy Science and Technology, 2011, 45(12): 1449-1455. DOI: 10.7538/yzk.2011.45.12.1449
Citation: ZUO Juan-li, TIAN Wen-xi, QIU Sui-zheng, CHEN Rong-hua, SU Guang-hui. Numerical Simulation on Single Bubble Rising Behavior in Liquid Metal Using Moving Particle Semi-implicit Method[J]. Atomic Energy Science and Technology, 2011, 45(12): 1449-1455. DOI: 10.7538/yzk.2011.45.12.1449

Numerical Simulation on Single Bubble Rising Behavior in Liquid Metal Using Moving Particle Semi-implicit Method

  • The gas-lift pump in liquid metal cooling fast reactor (LMFR) is an innovational conceptual design to enhance the natural circulation ability of reactor core. The two-phase flow character of gas-liquid metal makes significant improvement of the natural circulation capacity and reactor safety. In present basic study, the rising behavior of a single nitrogen bubble in five kinds of liquid metals (lead bismuth alloy, liquid kalium, sodium, potassium sodium alloy and lithium lead alloy) was numerically simulated using moving particle semi-implicit (MPS) method. The whole growing process of single nitrogen bubble in liquid metal was captured. The bubble shape and rising speed of single nitrogen bubble in each liquid metal were compared. The comparison between simulation results using MPS method and Grace graphical correlation shows a good agreement.
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