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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Dynamic Impacts of Water Droplets onto Icephobic Soft Surfaces at High Weber Numbers

机译:APS-000次会议,流体动力学的APS分工 - 事件 - 水滴在高韦伯号码中的冰冻软曲面上的动态冲击

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An experimental investigation was performed to examine the effects of the stiffness of icephobic soft PDMS materials on the impact dynamics of water drops at high weber numbers pertinent to aircraft icing phenomena. The experimental study was performed in the Icing Research Tunnel available at Iowa State University (ISU-IRT). During the experiments, both the shear modulus of the soft PDMS surface and the Weber numbers of the impinging water droplets are controlled for the comparative study. While the shear modulus of the soft PDMS surface was changed by tuning the recipes to make the PDMS materials, the Weber number of the impinging water droplets was altered by adjusting the airflow speed in the wind tunnel. A suite of advanced flow diagnostic techniques, which include high-speed photographic imaging, digital image projection (DIP), and infrared (IR) imaging thermometry, were used to quantify the transient behavior of water droplet impingement, unsteady heat transfer and dynamic ice accreting process over the icephobic soft airfoil surfaces. The findings derived from the icing physics studies can be used to improve current icing accretion models for more accurate prediction of ice formation and accretion on aircraft wings and to develop effective anti-/de-icing strategies for safer and more efficient operation of aircraft in cold weather.
机译:进行了实验研究,以检测冰冻软PDMS材料刚度对飞机糖化现象相关的高韦伯数量下水滴的冲击动力学的影响。在爱荷华州立大学(ISU-IRT)的糖化研究隧道中进行了实验研究。在实验期间,对比较研究控制软PDMS表面的剪切模量和撞击水滴的杂波数量。虽然通过调谐配方来改变软PDMS表面的剪切模量来使PDMS材料进行改变,但是通过调节风洞中的气流速度来改变撞击水滴的韦伯数。一套高级流动诊断技术,包括高速摄影成像,数字图像投影(DIP)和红外(IR)成像温度,用于量化水滴冲击,不稳定的传热和动态冰凸起的瞬态行为处理冰梭软翼型表面。从结冰物理学研究中的调查结果可用于改善电流糖霜模型,以便更准确地预测飞机翅膀上的冰形成和吸收,并在寒冷中开发更安全和更有效地运行飞机的有效抗糖浆策略天气。

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