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首页> 外文期刊>Journal of Zhejiang University. Science, A >Numerical simulation of gas-liquid flow through a 90° duct bend with a gradual contraction pipe
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Numerical simulation of gas-liquid flow through a 90° duct bend with a gradual contraction pipe

机译:通过逐渐收缩管通过90°管道弯曲的气液流量的数值模拟

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The effect of a gradual contraction pipe (GCP) on gas-liquid flow in a circular-sectioned horizontal to vertical 90° duct bend was investigated by computational fluid dynamics (CFD) simulation. The hydrodynamics of gas-liquid flow in 90° duct bends with and without a GCP in the vertical section were compared using a 3D steady Eulerian-Eulerian approach. The predicted static pressure in the vertical section of the pipes and the pressure drop in the whole pipe were consistent with experimental data. Results of simulations showed that liquid could distribute more uniformly at the exit of the pipe with a GCP. The increased uniformity was accompanied by an increase in pressure drop by a factor of less than 10% compared to the pipe without a GCP. The position of minimum pressure in the bend was changed by the GCP. A GCP can alter the trajectories of the fluid and secondary flow. As a result, the fluid can quickly reach a steady state downstream from the bend.
机译:通过计算流体动力学(CFD)仿真研究了逐渐收缩管(GCP)对圆形剖面到垂直90°管道弯曲的圆形剖面的气流的影响。使用3D稳定的欧拉 - 欧拉方法进行比较90°管道在90°管道中的气液流动的流体动力学,在垂直部分中弯曲,没有GCP。管道垂直部分中的预测静压和整个管道中的压降与实验数据一致。仿真结果表明,液体可以在管道的出口中更均匀地分布,具有GCP。与没有GCP的管道相比,增加的均匀性伴随着压降的增加率小于10%。弯曲中的最小压力的位置由GCP改变。 GCP可以改变流体和二次流动的轨迹。结果,流体可以快速达到弯曲下游的稳定状态。

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