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Pressure Drop for Fully Developed Turbulent Flow in Circular and Noncircular Ducts

机译:在圆形和非圆形管道中充分发展的湍流的压降

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The objective of this paper is to furnish the engineer with a simple and convenient means of estimating frictional pressure drop in ducts and the original physical behavior can be clearly reflected. Fully developed turbulent flow frictional pressure drop in noncircular ducts is examined. Simple models are proposed to predict the frictional pressure drop in smooth and rough noncircular channels. Through the selection of a novel characteristic length scale, the square root of the cross-sectional area, the effect of duct shape has been minimized. The proposed models have an accuracy of 6percent for most common duct shapes of engineering practice and can be used to predict pressure drop of fully developed turbulent flow in noncircular ducts. It is found that the hydraulic diameter is not the appropriate length scale to use in defining the Reynolds number to ensure similarity between the circular and noncircular ducts. By using the Reynolds number based on the square root of the cross-sectional area, it is demonstrated that the circular tube relations may be applied to noncircular ducts eliminating large errors in estimation of pressure drop. The square root of the cross-sectional area is an appropriate characteristic dimension applicable to most duct geometries. The dimensionless mean wall shear stress is a desirable dimensionless parameter to describe fluid flow physical behavior so that fluid flow problems can be solved in the simple and direct manner. The dimensionless mean wall shear stress is presented graphically and appears more general and reasonable to reflect the fluid flow physical behavior than the traditional Moody diagram.
机译:本文的目的是为工程师提供一种简单方便的方法来估算管道中的摩擦压降,并且可以清楚地反映出原始的物理行为。检查了非圆形管道中充分发展的湍流摩擦压降。提出了简单的模型来预测光滑和粗糙的非圆形通道中的摩擦压降。通过选择一种新颖的特征长度标尺,即横截面积的平方根,将风管形状的影响降至最低。对于工程实践中最常见的风管形状,提出的模型的精度为6%,可用于预测非圆形风管中充分发展的湍流的压降。发现水力直径不是用于定义雷诺数以确保圆形和非圆形管道之间相似的合适长度标尺。通过使用基于横截面积平方根的雷诺数,证明了圆形管关系可以应用于非圆形管道,从而消除了压降估算中的大误差。横截面积的平方根是适用于大多数管道几何形状的适当特征尺寸。无量纲的平均壁面剪应力是描述流体流动物理行为的理想无因次参数,因此可以简单直接地解决流体流动问题。与传统的穆迪图相比,无量纲的平均壁面剪应力以图形方式显示,看起来更通用,更合理,可反映流体的物理行为。

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