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Modeling of surface roughness effects on glaze ice accretion

机译:表面粗糙度对釉冰积聚影响的建模

摘要

A series of experimental investigations focused on studying the cause and effect of roughness on accreting glaze ice surfaces were conducted. Detailed microvideo observations were made of glaze ice accretions on 1 to 4 inch diameter cylinders in three icing wind tunnels (the Data Products of New England six inch test facility, the NASA Lewis Icing Research Tunnel, and the B. F. Goodrich Ice Protection Research Facility). Infrared thermal video recordings were made of accreting ice surfaces in the Goodrich facility. Distinct zones of surface water behavior were observed; a smooth wet zone in the stagnation region with a uniform water film; a rough zone where surface tension effects caused coalescence of surface water into stationary beads; a horn zone where roughness elements grow into horn shapes; a runback zone where surface water ran back as rivulets; and a dry zone where rime feathers formed. The location of the transition from the smooth to the rough zone was found to migrate with time towards the stagnation point. The behavior of the transition appeared to be controlled by boundary layer transition and bead formation mechanisms at the interface between the smooth and rough zones. Regions of wet ice growth and enhanced heat transfer were clearly visible in the infrared video recordings of glaze ice surfaces. A simple multi-zone modification to the current glaze ice accretion model was proposed to include spatial variability in surface roughness.
机译:进行了一系列实验研究,重点研究了粗糙度对结冰冰表面的起因和影响。在三个结冰风洞(新英格兰的数据产品六英寸测试设施,美国国家航空航天局刘易斯结冰研究隧道和B. F.古德里奇防冰研究设施)的1-4英寸直径的圆柱体上,对釉冰积垢进行了详细的微视频观察。红外热像录像是在Goodrich设施中积冰表面进行的。观察到了地表水行为的不同区域。停滞区域内的光滑湿区,水膜均匀;一个粗糙的区域,表面张力作用导致表面水聚集成固定的珠粒;角部区域,粗糙度元素生长为角部形状;地表水以小溪流回的偏流区;以及形成霜羽的干燥区域。发现从平滑区域到粗糙区域的过渡位置会随着时间的推移而向停滞点迁移。过渡的行为似乎受边界层过渡和在光滑和粗糙区域之间的界面处的珠子形成机制控制。在釉冰表面的红外视频记录中,清晰可见湿冰生长和传热增强的区域。提出了对当前釉冰积聚模型的简单多区域修改,以包括表面粗糙度的空间变异性。

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