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Ice Crystal Icing Physics Study using a NACA 0012 Airfoil at the National Research Council of Canada's Research Altitude Test Facility

机译:加拿大国家研究委员会研究高度测试设施使用NACA 0012机翼对冰晶结冰的物理研究

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This paper presents results from a study of the fundamental physics of ice-crystal ice accretion using a NACA 0012 airfoil at the National Research Council of Canada (NRC) Research Altitude Test Facility in August 2017. These tests were a continuation of work which began in 2010 as part of a joint collaboration between NASA and NRC. The research seeks to generate icing conditions representative of those that occur inside a jet engine when ingesting ice crystals. In this test, an airfoil was exposed to mixed-phase icing conditions and the resulting ice accretions were recorded and analyzed. This paper details the specific objectives, procedures, and measurements which included the aero-thermal and cloud measurements. The objectives were built upon observations and hypothesis generated from several previous test campaigns regarding mixed-phase ice-crystal icing. The specific objectives included (A) ice accretions under different wet-bulb temperatures, (B) investigations of steady-state ice shapes previously reported in the literature, (C) total water content variations in search of a threshold for accretion, and (D) probe characterization related to measuring melt fraction which is important to characterize the mixed-phase condition. The resulting ice accretions and conditions leading to such accretions are intended to help extend NASA's predictive ice-accretion codes to include conditions occurring in engine ice-crystal icing.
机译:本文介绍了2017年8月在加拿大国家研究委员会(NRC)研究海拔测试设施中使用NACA 0012翼型对冰晶冰积雪的基本物理学进行研究的结果。这些测试是自2000年开始的工作的延续作为NASA和NRC联合合作的一部分,2010年。这项研究试图产生一种结冰条件,该条件代表了摄入冰晶时喷气发动机内部发生的结冰条件。在该测试中,机翼暴露在混合相的结冰条件下,记录并分析了产生的冰块积聚。本文详细介绍了具体目标,程序和测量,包括空气热和云测量。这些目标是建立在先前的关于混合相冰晶结冰的几次试验活动的观察结果和假设基础之上的。具体目标包括(A)在不同的湿球温度下积冰,(B)先前文献中报道的稳态冰形研究,(C)总含水量变化以寻找积聚阈值和(D )与测量熔体分数有关的探针表征,这对于表征混合相条件很重要。最终的积冰和导致积冰的条件旨在帮助扩展NASA的预测性积冰代码,使其包括发动机冰晶结冰中发生的条件。

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