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A numerical study of steady viscous flow past a fluid sphere

机译:流过流体球的稳定粘性流的数值研究

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This paper presents a computational study of the steady viscous flow of a fluid over a spherical drop or bubble of another immiscible fluid. Numerical solutions have been obtained for external Reynolds numbers up to 500. The range of viscosity ratio is from 0.01 to 100.0. The density ratio varies between the same limits. The finite difference method was employed to discretize the model equations. A nested DC algorithm solved the nonlinear algebraic systems. Flow separation, the effect of internal Re number on the flow pattern and the computations of the drag coefficients are analysed.
机译:本文介绍了在另一种不混溶流体的球形液滴或气泡上的流体稳定粘性流动的计算研究。对于高达500的外部雷诺数,已经获得了数值解。粘度比的范围是0.01到100.0。密度比在相同限制之间变化。采用有限差分法离散模型方程。嵌套直流算法解决了非线性代数系统。分析了流分离,内部Re数对流型的影响以及阻力系数的计算。

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