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Simplified Model of Tractive-Force Distribution in Closed Conduits

机译:封闭管道中牵引力分布的简化模型

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摘要

A simplified model for the computation of boundary shear stress distributions acting on the flow perimeter of closed ducts is presented. The model assumes that the surplus energy within any control volume in a three-dimensional flow will be transferred towards the nearest boundary to be dissipated. Based on this model, the flow cross sectional area in the closed duct is divided into subflow regions corresponding to the side walls and bed, and the shear distributions over the wetted perimeter within each subflow area are assessed. Analytical equations, valid for all channel aspect ratios, for the prediction of local and mean shear stresses along the bed and side walls in smooth rectangular duct flow are derived. The formulae give good predictions of the shear stress distributions when compared with existing experimental data in the literature. The possible applications of the model to nonrectangular duct flows are also discussed.
机译:提出了一种简化的模型,用于计算作用在封闭管道的流动周长上的边界剪应力分布。该模型假设三维流中任何控制体积内的剩余能量将被转移到最接近的边界以进行消散。基于此模型,将封闭管道中的流动横截面区域划分为与侧壁和床层相对应的子流动区域,并评估每个子流动区域内的湿润周长上的剪切分布。得出了对所有通道长宽比均有效的分析方程式,用于预测矩形顺风道中沿床层和侧壁的局部和平均剪切应力。与文献中的现有实验数据相比,这些公式可以很好地预测剪切应力的分布。还讨论了该模型对非矩形管道流动的可能应用。

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