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Analytical expression for velocity profiles and flow resistance in channels with a general class of noncircular cross sections

机译:一般类非圆形截面的通道中速度分布和流阻的解析表达式

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This article discusses how to derive a closed-form analytical solution describing the profile of unidirectional flow through a class of noncircular tubes. The cross sections of the conduits are a slightly distorted version of regular shapes, like triangles or trapeziums or rectangles, that are commonly seen in microfluidic or heat pipe applications. Hence, the study leads to approximate but useful expression for velocity profiles as well as resistivity for the aforementioned channels. Moreover, the paper shows how to extend the fundamental idea to other arbitrary geometries, providing simple expressions for flow fields that can be used subsequently in various hydrodynamic calculations. The analysis also gives an estimate of error in such a mathematical treatment that is found to be adequately accurate. Thus, the findings will be especially relevant in a number of fields, including microfluidic separation, heat pipe design, and capillary transport optimization.
机译:本文讨论了如何导出描述通过一类非圆形管道的单向流动剖面的封闭形式的解析解。导管的横截面是常规形状的略微变形,例如在微流体或热管应用中常见的三角形,梯形或矩形。因此,该研究导致了速度分布以及上述通道的电阻率的近似但有用的表达。此外,本文还展示了如何将基本思想扩展到其他任意几何形状,为流场提供简单的表达式,这些表达式随后可用于各种流体力学计算中。该分析还给出了这样的数学处理中的误差的估计,发现该数学处理足够准确。因此,这些发现将在许多领域中特别相关,包括微流体分离,热管设计和毛细管传输优化。

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