飞机滑行过程中粗糙度激励下的随机振动评价

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引用次数: 0

摘要

跑道平整度或粗糙度的评估与飞机滑行时的振动响应密切相关。在这项研究中,我们采用了基于随机振动分析的伪激励法(PEM),揭示了五种不同类型飞机的随机振动与跑道不平整度之间的关系。首先,我们建立了两个飞机滑行振动的三维(3D)模型,并得出了粗糙度激励下的响应输出。随后,我们使用 MATLAB 分析了飞机不同部位振动响应的功率谱特征。最后,我们研究了滑行速度、飞机类型、跑道粗糙度和升力对飞机振动的影响。我们的研究结果表明,振动功率谱密度(PSD)的分布呈现多个峰值,与飞机的自由度相关。我们还注意到,与响应峰值最接近的频率应该是调查的重点。高频激励对飞行员和机头起落架的影响比对乘客和主起落架的影响更大。在不考虑升力的情况下,滑行速度的增加会放大粗糙度激励对飞机滑行安全的影响。大型飞机对长波粗糙度更为敏感。考虑到升力因素,所有类型的飞机都表现出对振动的速度敏感性,这应该是跑道粗糙度评估的首要考虑因素。
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Evaluation of aircraft random vibration under roughness excitation during taxiing
The assessment of runway smoothness or roughness is intimately tied to the vibrational response of aircraft during taxiing. In this study, employing the pseudo excitation method (PEM) based on random vibration analysis, we unearthed the relationship between the random vibrations of five distinct aircraft types and runway irregularities. Initially, we established two three-dimensional (3D) models of aircraft taxiing vibration and derived the response output under roughness excitation. Subsequently, we employed MATLAB to analyze the power spectral characteristics of the vibrational response in different parts of the aircraft. Lastly, we examined the effects of taxiing speed, aircraft type, runway roughness, and lift on the aircraft's vibration. Our findings indicate that the distribution of vibration power spectral density (PSD) exhibits multiple peaks, correlating with the degrees of freedom of the aircraft. We further note that the frequency that aligns most closely with the response peak should be the focus of investigation. High-frequency excitation impacts the pilot and nose landing gear more significantly than the passenger and main landing gear. Absent the consideration of lift, increased taxiing speed amplifies the impact of roughness excitation on aircraft taxiing safety. Larger aircrafts are more sensitive to long-wave roughness. With lift in consideration, all aircraft types exhibit a speed sensitivity to vibration, which should be the primary concern in runway roughness evaluations.
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来源期刊
International Journal of Transportation Science and Technology
International Journal of Transportation Science and Technology Engineering-Civil and Structural Engineering
CiteScore
7.20
自引率
0.00%
发文量
105
审稿时长
88 days
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