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Heavy rain effects on aircraft longitudinal stability and control determined from numerical simulation data

机译:根据数值模拟数据确定大雨对飞机纵向稳定性和控制的影响

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摘要

In this study, the effects of heavy rain on the longitudinal stability and control performance of the DHC-6 Twin Otter aircraft are determined based on data from numerical simulation. A two-way momentum coupled Eulerian-Lagrangian approach for two-phase flows developed in the authors' previous work is adopted to obtain the basic aerodynamic coefficients in rain. Then the aerodynamic derivatives of the aircraft in rain are evaluated on the basis of the narrow-strip theory. Finally, the longitudinal stability and control performance of the aircraft in rain are analyzed. Our research results suggest that heavy rain can cause degradations in both of aerodynamic and flight mechanics performances to an aircraft. In practice, these short-duration rainfall encounters should be avoided as far as possible since rain mainly has significant adverse effects on the short-period mode characteristics.
机译:在这项研究中,基于数值模拟的数据确定了大雨对DHC-6双水獭飞机的纵向稳定性和控制性能的影响。作者在先前的工作中采用了一种针对两相流的双向动量耦合欧拉-拉格朗日方法,以获取雨中的基本空气动力学系数。然后根据窄带理论对飞机在雨中的气动导数进行了评估。最后,分析了飞机在雨中的纵向稳定性和控制性能。我们的研究结果表明,大雨会导致飞机的空气动力学和飞行力学性能下降。在实践中,应尽量避免遇到这些短期降雨,因为降雨主要对短期模式特征产生重大不利影响。

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