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首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Steady and unsteady motion of one-component two-phase bubbly flow in 1-D Geometry
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Steady and unsteady motion of one-component two-phase bubbly flow in 1-D Geometry

机译:一维几何中单组分两相气泡流的稳态和非稳态运动

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摘要

The aim of this work is to present a mathematical model of the motion of a one-component two-phase bubbly flow in one-dimensional geometry. Bubbles are assumed to be spherical and far enough from each other in order to exclude reciprocal interactions. The mathematical model is derived by means of a phase average operation and assuming a suitable description of the velocity field in the liquid phase, in the neighbourhood of the bubbles. Two different sets of experimental conditions are then simulated: a steady motion in a convergent-divergent nozzle and two different unsteady flows: i.e. two water hammer transients. Both the experimental conditions considered are well reproduced, indicating the validity of the proposed model.
机译:这项工作的目的是提供一维几何中一组分两相气泡流运动的数学模型。气泡被认为是球形的,并且彼此之间距离足够远,以排除相互的相互作用。数学模型是通过相位平均运算并在气泡附近假设液相速度场的适当描述而得出的。然后模拟了两组不同的实验条件:在收敛-发散喷嘴中的稳定运动和两种不同的非稳态流动:即两个水锤瞬变。所考虑的两个实验条件都可以很好地重现,表明所提出模型的有效性。

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