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Investigation on slug flow phenomenon in Alborz morning glory spillway and preventing its destructive effects

机译:阿尔博尔山早晨辉煌现象调查牵牛花溢洪道,防止其破坏性效应

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摘要

Slug flow is a flow pattern which occurs in conveyance systems containing a two phase-fluid flow. Large air bubbles entrapped along these systems interrupt the flow and conduct to undesirable pressures and their fluctuations. Most of the previous concerning studies on slug flow phenomenon were performed in micro-channels with small scales in which the expansion of the air bubbles was negligible. In contrast, we investigated the systems with large pressure drops which conduct to abrupt increases on the volume of air phase. In this research, the verification tests applying CFD techniques were performed in OpenFOAM software by interFoam solver. The performance of morning glory spillways is investigated under steady states. While during the occurrence of flood, by increasing the depth over the spillway crest, the discharge is augmented which conducts to entrap the air pockets with pressure and velocity fluctuations. These fluctuations influence on the life of structures and their performances. This study aimed on unsteady flow in a glory morning spillway and its consequences and proposing the measures for reducing the destructive effects of slug flow. The pressure and velocity fluctuation were considered as the indices for the performance of a hydraulic structure. Spatial and temporal variations of pressure and velocity along the spillway are evaluated. Also, the influences of spillway geometry on slug flow and the measures to attenuate its destructive effects are analyzed. The results showed that the better performances of morning glory spillway are coincided by the diameter of tunnel superior than the height of water above the crest.
机译:Slul流是一种流动模式,其发生在包含两个相流体流动的输送系统中。沿着这些系统捕获的大型气泡中断流量并进行不良压力及其波动。以前关于SLUP流动现象的大多数关于SLUP流动现象的研究是在微通道中进行的,小刻度,其中气泡的膨胀可忽略不计。相比之下,我们调查了具有大压降的系统,该系统导致突然增加空气相体积。在本研究中,应用CFD技术的验证测试是在OpenFoam Solver中进行的。在稳定状态下调查了早晨辉煌溢洪道的表现。虽然在发生洪水期间,通过增加溢洪道顶部的深度,因此增强了排出的排出,其导致具有压力和速度波动的空气口袋。这些波动对结构的寿命及其表演影响。这项研究旨在在辉煌的潮流道和后果中的不稳定流动,并提出降低粘液流量破坏性影响的措施。压力和速度波动被认为是用于液压结构性能的指标。评估了沿溢洪道的压力和速度的空间和时间变化。此外,分析了溢洪道几何形状对缺口流动的影响及其破坏性效应的措施。结果表明,早晨辉煌溢洪道的表现较好,隧道的直径优于顶部上方的水高。

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