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Prediction of icing effects on the lateral/directional stability and control of light airplanes

机译:预测结冰对轻型飞机的横向/方向稳定性和控制的影响

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The accumulation of ice on an airplane in flight is one of the leading contributing factors to general aviation accidents, and to date only relatively sophisticated methods based on detailed empirical data and flight data exist for its analysis. This paper develops a methodology and simulation tool for a preliminary yet accurate evaluation of airplane dynamical response and stability and control characteristics due to icing. It uses only basic mass properties, configuration, and propulsion data, together with known icing data obtained for similar configurations. Existing icing data for a light airplane is suitably modified and applied to a non-real-time, six degree-of-freedom simulation model of a different but similar light airplane, developed from empirical data and Data Compendium methods. The component build-up method is used to implement icing effects on the wing alone, horizontal tail alone, and various unequal distributions of combined wing and horizontal tail icing as well as ice accretion on only one half of the wing. Results presented in the paper are limited to the roll axis and yaw axis maneuvers with various levels and distributions of ice accretion show that the methodology captures the basic detrimental effects of ice accretion on roll and yaw response and lateral stability, in addition to the sensitivity of pilot control response.
机译:在飞行中的飞机上积冰是导致通用航空事故的主要因素之一,迄今为止,只有基于详细经验数据和飞行数据的相对复杂的方法才能进行分析。本文开发了一种方法和仿真工具,用于对结冰引起的飞机动力响应以及稳定性和控制特性进行初步而准确的评估。它仅使用基本质量特性,配置和推进数据,以及为类似配置获得的已知结冰数据。适当修改了轻型飞机的现有结冰数据,并将其应用于根据经验数据和数据汇编方法开发的不同但相似的轻型飞机的非实时,六自由度仿真模型。组件建立方法用于对单独的机翼,单独的水平尾翼以及组合的机翼和水平尾翼的各种不均匀分布的结冰效果以及仅在机翼的一半上积冰。本文介绍的结果仅限于横摇轴和偏航轴操纵,并且积冰量和分布各不相同,这表明该方法除了具有高灵敏度之外,还捕获了积冰对横摇和横摆响应及横向稳定性的基本有害影响。飞行员控制响应。

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