弓形波下软管和代管系统的运动和动态特性研究

IF 2.1 3区 工程技术 Q2 ENGINEERING, AEROSPACE
Chunjie Zheng, Haitao Wang, Lanxiang Hu, Yuanli Cai
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引用次数: 0

摘要

为了研究软管-垂管系统在船首波下的运动,本文基于多体动力学理论和刚性球杆模型建立了软管-垂管系统的动力学模型。模拟中考虑了油轮飞机的尾流。模拟结果符合一般规律,验证了模型的准确性。通过对船首波和尾流的线性叠加,计算出了软管-垂管系统的平衡位置。模拟并分析了接收飞机相对于加油机匀速运动或加速运动时软管-垂管系统的运动情况。由于接收飞机在对接后不会立即停止,因此比较了有卷盘和无卷盘时软管上的拉力变化。这些结果对于提高空中加油的成功率和确保软管-垂降系统的安全性和稳定性至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on the Motion and Dynamic Characteristics of the Hose-and-Drogue System under Bow Wave
To study the hose-and-drogue system’s motion under bow waves, this paper established a dynamic model of the hose-and-drogue system based on the multibody dynamics theory and the rigid ball-and-rod model. The wake of a tanker aircraft was taken into account in the simulation. The simulation results conformed to the general laws and verified the model’s accuracy. The equilibrium positions of the hose-and-drogue system were computed by the linear superposition of the bow waves and wake. The motion of the hose-and-drogue system was simulated and analyzed when a receiver aircraft moved at a constant speed or accelerated relative to the tanker aircraft. Since the receiver aircraft would not immediately stop after docking, the pulling force changes on the hose with and without a reel were compared. The present results are essential for improving the success rate of aerial refueling and ensuring the safety and stability of the hose-and-drogue system.
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来源期刊
Aerospace
Aerospace ENGINEERING, AEROSPACE-
CiteScore
3.40
自引率
23.10%
发文量
661
审稿时长
6 weeks
期刊介绍: Aerospace is a multidisciplinary science inviting submissions on, but not limited to, the following subject areas: aerodynamics computational fluid dynamics fluid-structure interaction flight mechanics plasmas research instrumentation test facilities environment material science structural analysis thermophysics and heat transfer thermal-structure interaction aeroacoustics optics electromagnetism and radar propulsion power generation and conversion fuels and propellants combustion multidisciplinary design optimization software engineering data analysis signal and image processing artificial intelligence aerospace vehicles'' operation, control and maintenance risk and reliability human factors human-automation interaction airline operations and management air traffic management airport design meteorology space exploration multi-physics interaction.
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