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Published on: October 21, 2013
The growth of capillary networks by branching for maximum fluid access
Xuewei Zhang1, Sylvie Lorente2
1Mechanical Engineering Department, Villanova University, 800 Lancaster Ave., Villanova, PA, 19085, USA.
Abstract:
Here we document the deterministic evolution of capillary networks that morph by connecting more and more branches to water sources. The network grows with the objective of extracting in steady state higher and higher liquid flow rates. Growth happens through the generation of tree-shaped structures and the geometrical configuration of the dendritic network evolves as the number of connected sources increases. We present a novel methodology to generate capillary architectures and show how the evolution of the network leads to pump higher volumetric flow rates by capillary suction. The results suggest that networks generated within a plane lead to higher flow rates than networks generated within a three-dimensional domain, for the same volume of fluid.
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