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Roughness-enhanced collection of condensed droplets

机译:粗糙度增强的凝块液滴集合

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摘要

Gravity shedding of droplets is limited by droplet pinning, a major limitation for low condensation processes and in particular passive dew harvesting in its use as an alternative source of water. We present experiments showing that, paradoxically, a simple surface treatment increasing roughness (sandblasting) favors droplet shedding compared to the original substrate, provided that sand-blasting does not increase too much the surface roughness. Sand-blasting ensures the high density of nucleation sites and enhances drops coalescence and growth at a sub-micron scale, thus lowering the lag-time to obtain drop sliding during condensation. Early nucleation indeed overcompensates the delay increase due to roughness. Edges of the substrate, where drops grow faster, also improve water collection, thanks to the early sliding of edge drops that behave as natural wipers. Combining the effects of sand-blasting and edges increases significantly the rate of collection of dew condensation on a substrate at a given time, gains of about 30% can be commonly obtained.
机译:液滴的重力脱落受液滴钉扎的限制,对低凝结过程的一个主要限制,特别是被用作替代水源的被动露珠收获。我们存在表现出矛盾的实验,矛盾的表面处理增加粗糙度(喷砂)的粗糙度(喷砂)与原始衬底相比,液滴脱落,只要喷砂不会增加表面粗糙度太大。砂喷砂确保了核切割位点的高密度,并增强了亚微米刻度下的滴加和生长,从而降低滞后时间以在冷凝期间获得下降滑动。早期成核确实超越了由于粗糙度导致的延迟增加。基板的边缘,液滴生长得更快,还要改善水收集,因为由于所示的边缘下降,所以表现为天然刮水器。结合砂喷砂和边缘的影响显着增加了在给定时间在基板上的露水凝结的收集速率,通常可以常用约30%的增益。

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    ESPCI Paris PSL Univ Sorbonne Univ Sorbonne Paris Cite Phys &

    Mecan Milieux Heterogenes CNRS F-75005 Paris France;

    ESPCI Paris PSL Univ Sorbonne Univ Sorbonne Paris Cite Phys &

    Mecan Milieux Heterogenes CNRS F-75005 Paris France;

    CNRS Lab Energies Demain Sorbonne Paris Cite UMR 8236 F-75013 Paris France;

    Univ Nice Sophia Antipolis Inst Phys Nice CNRS Parc Valrose F-06108 Nice France;

    ESPCI Paris PSL Univ Sorbonne Univ Sorbonne Paris Cite Phys &

    Mecan Milieux Heterogenes CNRS F-75005 Paris France;

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  • 正文语种 eng
  • 中图分类 物理学;
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