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A numerical investigation of the flow structures and losses for turbulent flow in 90 degrees elbow bends

机译:90度弯头弯流的流动结构和湍流损失的数值研究

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摘要

Computational fluid dynamic modelling was carried out on a series of pipe bends having R/r values of 1.3, 5, and 20, with the purpose of determining the accuracy of numerical models in predicting pressure loss data from which to inform one-dimensional loss models. Four separate turbulence models were studied: the standard k-epsilon model, realizable k-epsilon model, k-omega model, and a Reynolds stress model (RSM). The results are presented for each bend in the form of upstream and downstream pressure profiles, pressure distributions along the inner and outer walls, detailed pressure and velocity fields as well as overall loss values. In each case, measured data were presented to evaluate the predictive ability of each model. The RSM was found to perform the best, producing accurate pressure loss data for bends with R/r values of 5 and 20. For the tightest bend with an R/r value of 1.3, however, predictions were significantly worse due to the presence of flow separation, stronger pressure gradients, and high streamline curvature.
机译:在R / r值分别为1.3、5和20的一系列弯管上进行了计算流体动力学建模,目的是确定数值模型在预测压力损失数据中的准确性,从而从中告知一维损失模型。研究了四个单独的湍流模型:标准kε模型,可实现的kε模型,kω模型和雷诺应力模型(RSM)。每个弯头的结果以上游和下游压力分布,沿内壁和外壁的压力分布,详细的压力和速度场以及总损耗值的形式呈现。在每种情况下,都会提供测量数据以评估每个模型的预测能力。发现RSM表现最佳,对于R / r值为5和20的弯头,可以产生准确的压力损失数据。对于R / r值为1.3的最弯曲的弯头,由于存在R / r,因此预测明显较差。流动分离,更强的压力梯度和高流线曲率。

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