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Passive anti-frosting cables

机译:被动防霜电缆

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Buildup of ice and frost on overhead transmission lines compromises their integrity and also poses a danger to surrounding infrastructure and people. We present a passive anti-frosting cable design that keeps the majority of the surface free of condensation and frost, effectively preventing a continuous layer of ice from forming. The design consists of an array of rings, each containing a wicking micro-groove, that are evenly spaced across the aluminum cable. Water preferentially wets the grooves and freezes into ice rings at cold temperatures. As ice exhibits a depressed vapor pressure relative to liquid water, these ice rings act as overlapping humidity sinks. Two supersaturations were tested, an extreme supersaturation of 3 to best measure frost accumulation through video analysis and a supersaturation of 1.5 more reminiscent of real-life outdoor conditions. Regions between rings remained dry indefinitely beneath a critical ring spacing whose value depended primarily upon the supersaturation and secondarily upon the ring diameter. In contrast, continuous sheets of frost grew on aluminum cables that were smooth and initially dry, even when treated with a superhydrophobic coating. (C) 2019 Elsevier Ltd. All rights reserved.
机译:高架传输线上积聚的冰和霜会损害其完整性,并对周围的基础设施和人员构成危险。我们提出了一种被动式防霜电缆设计,该设计可使大部分表面没有凝结和霜冻,有效地防止形成连续的冰层。该设计由一系列环组成,每个环包含一个芯吸微槽,它们在铝电缆上均匀分布。水优先润湿凹槽并在低温下冻结成冰环。由于冰相对于液态水表现出较低的蒸气压,因此这些冰环起着重叠的湿陷的作用。测试了两个过饱和度,一个为3的极端过饱和度以通过视频分析来最佳地测量霜的积累,另一个为1.5的过饱和度使人联想到真实的户外条件。环之间的区域在临界环间距以下无限期保持干燥,该临界环间距的值主要取决于过饱和度,其次取决于环的直径。相反,即使在用超疏水涂层处理的情况下,光滑且连续干燥的铝电缆上也会出现连续的霜冻。 (C)2019 Elsevier Ltd.保留所有权利。

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