Please use this identifier to cite or link to this item:
http://hdl.handle.net/10174/37489
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Title: | Obstructed Branching Networks: A Constructal Approach in Fluid Flow Investigation |
Authors: | Pepe, V. R. Miguel, A. F. Zinani, F. S. Rocha, L. A. O. |
Keywords: | tree networks branching systems occlusion constructal design |
Issue Date: | 2024 |
Citation: | V. R. Pepe, A. F. Miguel, F. S. Zinani, L.A. O. Rocha. Obstructed branching networks: a constructal approach in fluid flow investigation. Defect and Diffusion 435 (2024) 3-14 |
Abstract: | Tree flow networks are common in both natural and manufactured systems. The organization of the flow hierarchy passes through the dimensional evolution of the form that is linked to the function. Thus, the objective of comparing bifurcated tube networks obtained by the constructaldesign method, where part of the structure is obstructed, aims to understand the effects on fluid flow
and the prediction of evolutionary deviations in its function. This study compares designs of 3D tree networks with various homothety reduction factors for sizes, having tubes obstructed in some locals of the network. In this computational fluid dynamics study, the geometric constraint applied to these
networks is the equal total volume of tubes at each branch level. The evaluation is based on the flow resistance of the networks. This study shows, among other things, that the performance of tree designs is highly dependent on geometric characteristics and the branching level where the obstructions are applied. The effect of the number and position of tubes obstructed in the network, as well as the alignment of the tubes across the network branching levels, on the asymmetry of fluid flow through the network is also studied. It is recommended that the results presented be considered when designing networks for engineering systems. |
URI: | http://hdl.handle.net/10174/37489 |
Type: | article |
Appears in Collections: | ICT - Publicações - Artigos em Revistas Internacionais Com Arbitragem Científica
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