Numerical Simulation of Microparticles Motion in Two-Phase Bubbly Flow

H. Yoshida, Shin-ichiro Uesawa
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Abstract

The radioactive aerosol removal equipment is used as one of the safety systems of nuclear reactors. In this equipment, microparticles of aerosol are removed through gas-liquid interfaces of two-phase flow. The mechanism related to the removal of microparticles through the gas-liquid interface is not precise; a numerical evaluation method of performance of aerosol removal equipment is not realized. Then, we have started to construct a numerical simulation method to simulate the removal of microparticles through gas-liquid interfaces. In this simulation method, a detailed two-phase flow simulation code TPFIT is used as the basis of this method. TPFIT adopts an advanced interface tracking method and can simulate interface movement and deformation directly. Also, to simulate the movement of particles, the Lagrangian particle tracking method is incorporated. By combining the interface tracking method, and the Lagrangian particle tracking method, the interaction between interfaces and microparticles can be simulated in detail. To solve the Lagrangian equations of particles, fluid properties and fluid velocity surrounding aerosol particles are evaluated by considering the relative position of particles and gas-liquid interface, to simulate particle movement near the interface. In this paper, we show an outline and preliminary results of this simulation method.
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两相气泡流中微粒运动的数值模拟
放射性气溶胶清除设备是核反应堆安全系统之一。在该设备中,气溶胶微粒通过两相流的气液界面去除。通过气液界面去除微粒的机理尚不明确;没有实现气溶胶去除设备性能的数值评价方法。然后,我们开始构建一种数值模拟方法来模拟通过气液界面的微粒去除。该方法采用了详细的两相流模拟程序TPFIT作为基础。TPFIT采用先进的界面跟踪方法,可以直接模拟界面的运动和变形。为了模拟粒子的运动,引入了拉格朗日粒子跟踪方法。将界面跟踪方法与拉格朗日粒子跟踪方法相结合,可以详细地模拟界面与微粒之间的相互作用。为了求解粒子的拉格朗日方程,考虑粒子与气液界面的相对位置,评估气溶胶粒子周围的流体性质和流体速度,模拟粒子在界面附近的运动。在本文中,我们给出了该仿真方法的概要和初步结果。
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