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首页> 外文期刊>Journal of Hydraulic Engineering >Elemental T And Y Shapes Of Tree Networks Of Ducts With Various Cross-sectional Shapes
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Elemental T And Y Shapes Of Tree Networks Of Ducts With Various Cross-sectional Shapes

机译:具有各种横截面形状的风管树网络的基本T和Y形状

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摘要

This paper reports optimal bifurcation shapes (T and Y) in turbulent regime of tree-shaped flows. Unlike earlier studies of T and Y constructs, here the effect of pressure losses at the junction is taken into account, and the wall roughness and duct cross-sectional shapes are free to vary. The optimal ratio of duct cross-sectional areas (as a generalization of Murray's law), the optimal ratio of duct lengths, and the optimal angle between the branches of the Y are presented. These optimal geometrical features are reported as functions of the flow direction (splitting flow versus merging flow), wall roughness, duct cross-sectional shape, and svelteness. The svelteness, Sv, is a global property defined as the external length scale of the flow construct divided by the internal length scale. It is shown that the effect of junction pressure losses on the optimized architecture can be neglected when Sv~(3/2) is greater than approximately 104. Two dimension-less terms are introduced and shown to be useful for the optimization of flow networks.
机译:本文报告了在树状流的湍流状态下的最佳分叉形状(T和Y)。与早期对T和Y结构的研究不同,此处考虑了连接处压力损失的影响,并且壁面粗糙度和管道横截面形状可以自由变化。提出了管道横截面积的最佳比率(作为穆雷定律的推广),管道长度的最佳比率以及Y分支之间的最佳角度。这些最佳的几何特征被报告为流向(分流与合并流),壁面粗糙度,管道横截面形状和粗糙度的函数。纤度Sv是一个全局属性,定义为流动构造的外部长度比例除以内部长度比例。结果表明,当Sv〜(3/2)大于约104时,可以忽略接头压力损失对优化结构的影响。引入了两个无量纲项,对优化流动网络很有用。

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