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Evaluation of Visual Failure versus Aerodynamic Limit for a Snow Contaminated Anti-Iced Wing Section during Simulated Takeoff

机译:在模拟起飞期间评估视觉故障与雪污染的防冰翼部分的空气动力学限制

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Under contract to Airlines for America (A4A), APS Aviation Inc. (APS), in collaboration with the National Research Council of Canada (NRC), completed an aircraft ground icing exploratory research project at the NRC 3 m × 6 m Wind Tunnel in Ottawa in January 2019. The purpose of this project was to investigate the feasibility of using aerodynamic data to evaluate the performance of contaminated anti-icing fluid, rather than the traditional visual fluid failure indicators that are used to develop Holdover Times (HOTs). The aerodynamic performance of a supercritical airfoil model with anti-icing fluids and snow contamination was evaluated against the clean, dry performance of the airfoil in order to calculate the associated aerodynamic penalty. The visual failure of the fluid was also evaluated for each run, and the visual and aerodynamic results were compared against each other for each contamination exposure time. The results demonstrated that the visual failure of a fluid was not directly linked to the aerodynamic performance of the fluid, and the margin between the two was a function of the fluid used, the model configuration, and the test temperature. The results support the premise that in specific operational conditions, certain fluids may offer protection for a period of time after the visual failure. This margin of protection is likely dependent on the same variables as the current holdover times, including precipitation type and intensity, fluid type, and outdoor air temperature and aircraft configuration.
机译:根据美国的航空公司(A4A),APS Aviation Inc.(APS)合作,与加拿大国家研究委员会(NRC)合作,完成了NRC 3 M×6 M风洞的飞机地面结冰探索研究项目渥太华于2019年1月。该项目的目的是调查使用空气动力学数据评估污染的抗糖霜流体的性能的可行性,而不是用于开发封闭时间(热量)的传统视觉流体衰竭指标。通过抗结冰流体和雪污染的超临界翼型模型的空气动力学性能抵抗翼型的清洁,干燥性能,以计算相关的空气动力学罚分。每个运行还评估流体的视觉失败,并且针对每个污染暴露时间互相比较视觉和空​​气动力学结果。结果表明,流体的视觉失败与流体的空气动力学性能没有直接连接,并且两者之间的裕度是使用的流体,模型配置和测试温度的函数。结果支持在特定操作条件下,某些流体可以在视觉故障后一段时间提供保护。这种保护余量可能依赖于与电流保持时间相同的变量,包括降水式和强度,流体类型和室外空气温度和飞机配置。

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