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首页> 外文期刊>Journal of nuclear science and technology >Two Phase Pressure Drop Multipliers and ICE Technique Applied in a Multibubble Slug Ejection Model
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Two Phase Pressure Drop Multipliers and ICE Technique Applied in a Multibubble Slug Ejection Model

机译:两相压降倍增器和ICE技术在多气泡弹射模型中的应用

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Two-phase flow of coolant is described in subassemblies of liquid metal fast breeder reactors by a one-dimensional two-phase multibubble slug ejection model. Vapor flow of sodium between the slugs is modeled as annular flow with a moving liquid film of variable thickness wetting structural surfaces. The two-phase pressure drop multiplier concept introduced by Lockhart-Martinelli is used in the frame of the slug ejection model with an algorithm that simultaneously computes interfacial friction coefficient and liquid film axial velocity distribution. The implicit continuous Eulerian (ICE) technique developed by Harlow and Amsden for computing pressure distribution in a continuum medium is applied in heterogeneous two-phase flow to the governing equations for the vapor phase. This solution method is more stable than the numerical solution by finite differences of the vapor momentum equation.
机译:通过一维两相多泡塞弹射流模型,在液态金属快中子增殖堆的子组件中描述了冷却剂的两相流。团块之间的钠蒸气流被建模为具有可变厚度润湿结构表面的移动液膜的环形流。由Lockhart-Martinelli提出的两相压降倍增器概念在弹头喷射模型的框架中使用,该算法可同时计算界面摩擦系数和液膜轴向速度分布。由Harlow和Amsden开发的用于计算连续介质中压力分布的隐式连续欧拉(ICE)技术应用于非均相两相流中的气相控制方程。通过蒸汽动量方程的有限差分,该求解方法比数值解更稳定。

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