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Interdigitated flow fields using optimally tapered channels promise to uniformize flow through porous electrodes for desalination using intercalative Faradaic deionization, energy storage using flow batteries, and other flow-based electrochemical processes. 3D Darcy-Brinkman simulations show here that optimally tapered embedded channels produce uniformly spaced streamlines through porous electrode material in comparison with straight and linearly tapered channels that respectively produce dead zones in the central and peripheral electrode material between channels, consistent with quasi-1D theory [Rahman, Loud, Do, Hamid, and Smith, Electrochim. Acta, 514, 145632 (2025)]. Quasi-1D theory and 3D simulations predict apparent permeability enhancements greater than a hundred-fold relative to porous electrode material alone, as determined by a dimensionless hydraulic-resistance parameter
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版权所有:内蒙古大学图书馆 技术提供:维普资讯• 智图
内蒙古自治区呼和浩特市赛罕区大学西街235号 邮编: 010021
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