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Take-off and landing using ground based power -landing simulations using multibody dynamics

机译:使用基于多体动力学的地面动力着陆模拟进行起降

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A novel take-off and landing system using ground based power is proposed in the EU-FP7 project GABRIEL. The proposed system has the potential benefit to reduce aircraft weight, emissions and noise. A preliminary investigation of the feasibility of the structural design of the connection mechanism between aircraft and ground system has been performed by simulating the landing procedure on a moving ground system. One of the key challenges is the landing on a moving ground system under high crosswind conditions. The main focus in the current research is the calculation of the impact loads on both aircraft and ground system for a wide range of landing conditions (sink rate, velocity differences between aircraft and ground system, etc.). For comparison, conventional landing procedures with a traditional landing gear have also been simulated. Two different aerodynamic models (empirical and vortex lattice method) have been used and compared in the simulations for verification and validation purposes. The results of this research study are a set of load cases and operational constraints that can be used for the structural design of the ground system and modifications to the aircraft. Detailed values are presented in the paper.
机译:在EU-FP7项目GABRIEL中提出了一种使用地面动力的新型起降系统。拟议的系统具有减少飞机重量,排放物和噪音的潜在好处。通过模拟移动地面系统上的着陆程序,对飞机与地面系统之间的连接机构进行结构设计的可行性进行了初步研究。关键挑战之一是在强侧风条件下降落在运动地面系统上。当前研究的主要重点是计算各种着陆条件(下沉率,飞机与地面系统之间的速度差等)对飞机和地面系统的冲击载荷。为了进行比较,还模拟了具有传统起落架的常规起降程序。为了验证和确认的目的,已经使用了两种不同的空气动力学模型(经验和涡流格子法),并在仿真中进行了比较。这项研究的结果是一套载荷工况和运行约束条件,可用于地面系统的结构设计和飞机的改装。本文提供了详细的值。

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