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首页> 外文期刊>Journal of Applied Meteorology and Climatology >Characterization of Aircraft Icing Environments with Supercooled Large Drops for Application to Commercial Aircraft Certification
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Characterization of Aircraft Icing Environments with Supercooled Large Drops for Application to Commercial Aircraft Certification

机译:带有过冷大液滴的飞机结冰环境的表征,用于商业飞机认证

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Observations of aircraft icing environments that included supercooled large drops (SLD) greater than 100 tun in diameter have been analyzed. The observations were collected by instrumented research aircraft from 134 flights during six field programs in three different geographic regions of North America. The research aircraft were specifically instrumented to accurately measure the microphysics characteristics of SLD conditions. In total 2444 SLD icing environments were observed at 3-km resolution. Each observation had an average liquid water content (LWC) > 0.005 g m(-3), drops > 100 mu m in diameter, ice crystal concentrations <1 L-1, and an average static temperature <= 0 degrees C. SLD conditions were observed approximately 5% of the inflight time. The SLD observations were segregated into four subsets, which included conditions with maximum drop sizes <500 mu m and >500 mu m in diameter, each with median drop volume diameters <40 mu m and >40 mu m. For each SLD subset, the observations were used to develop envelopes of maximum LWC values as a function of horizontal extent and temperature. In addition, characteristic drop size distributions were developed for each SLD subset. The maximum LWC values physically represent either the 99% or 99.9% LWC values, as determined from an extreme value analysis of the data. The analysis is sufficient for simulation of SLD environments with either numerical icing accretion models or wind-tunnel icing simulations. The SLD envelopes are similar in structure and supplemental to existing aircraft icing envelopes, the difference being that the existing envelopes did not explicitly incorporate SLD conditions.
机译:分析了飞机结冰环境的观察结果,其中包括直径大于100 tun的过冷大液滴(SLD)。这些观测值是由仪器研究飞机在北美三个不同地理区域的六个野外计划中从134个航班收集的。该研究飞机专门用于精确测量SLD条件的微观物理特征。在3 km的分辨率下,总共观察到2444个SLD结冰环境。每个观测值的平均液态水含量(LWC)> 0.005 gm(-3),液滴直径> 100μm,冰晶浓度<1 L-1,平均静态温度<= 0摄氏度。SLD条件为观察到大约5%的飞行时间。 SLD观测分为四个子集,其中包括最大液滴尺寸<500微米和直径> 500微米的条件,每个条件的中值液滴体积直径<40微米和> 40微米。对于每个SLD子集,这些观测值用于产生最大LWC值的包络,该包络是水平范围和温度的函数。另外,为每个SLD子集开发了特征性的液滴尺寸分布。根据数据的极值分析确定,最大LWC值物理上表示99%或99.9%的LWC值。该分析足以通过数字结冰积聚模型或风洞结冰仿真来模拟SLD环境。 SLD信封的结构相似,是对现有飞机结冰信封的补充,不同之处在于现有信封没有明确纳入SLD条件。

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