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Optimal Branching Structure of Fluidic Networks with Permeable Walls

机译:渗透壁流体网络的最优分支结构

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摘要

Biological and engineering studies of Hess-Murray's law are focused on assemblies of tubes with impermeable walls. Blood vessels and airways have permeable walls to allow the exchange of fluid and other dissolved substances with tissues. Should Hess-Murray's law hold for bifurcating systems in which the walls of the vessels are permeable to fluid? This paper investigates the fluid flow in a porous-walled T-shaped assembly of vessels. Fluid flow in this branching flow structure is studied numerically to predict the configuration that provides greater access to the flow. Our findings indicate, among other results, that an asymmetric flow (i.e., breaking the symmetry of the flow distribution) may occur in this symmetrical dichotomous system. To derive expressions for the optimum branching sizes, the hydraulic resistance of the branched system is computed. Here we show the T-shaped assembly of vessels is only conforming to Hess-Murray's law optimum as long as they have impervious walls. Findings also indicate that the optimum relationship between the sizes of parent and daughter tubes depends on the wall permeability of the assembled tubes. Our results agree with analytical results obtained from a variety of sources and provide new insights into the dynamics within the assembly of vessels.
机译:Hess-Murray定律的生物学和工程学研究集中于具有不可渗透壁的管的组装。血管和气道具有可渗透的壁,以允许液体和其他溶解物质与组织交换。对于容器壁可渗透液体的分叉系统,赫斯-默里定律是否成立?本文研究了多孔壁T形容器中的流体流动。对这种分支流动结构中的流体流动进行了数值研究,以预测能提供更大流动通道的构型。我们的发现表明,除其他结果外,在这种对称的二分系统中可能会发生不对称流动(即破坏流动分布的对称性)。为了得出最佳支管尺寸的表达式,计算了支管系统的水力阻力。在这里,我们显示,只要容器的壁不透水,T形容器的装配就仅符合Hess-Murray最佳定律。研究结果还表明,母管和子管尺寸之间的最佳关系取决于组装管的壁渗透性。我们的结果与从各种来源获得的分析结果相吻合,并提供了有关船舶装配内部动力学的新见解。

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