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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Flight Dynamics and Simulation of Laser Propelled Lightcraft
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Flight Dynamics and Simulation of Laser Propelled Lightcraft

机译:激光推进飞机的飞行动力学与仿真

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摘要

A seven degree-of-freedom (7DOF) dynamic model was developed to provide insight into the flight behavior of Type 200 and other related lightcraft, and to serve as a research tool for developing future engine-vehicle configurations for laser launching of nanosatellites (1-10 +kg). Accurate engine, beam, and aerodynamics models are included to improve the predictive capability of the 7DOF code. The aerodynamic forces of lift, drag, and aerodynamic pitching moment were derived from FLUENT? computational fluid dynamics predictions, and calibrated against limited existing wind tunnel data. To facilitate 7DOF model validation, simulation results are compared with video analysis of actual flights under comparable conditions. Despite current limitations of the 7DOF model, the results compared well with experimental flight trajectory data.
机译:开发了七自由度(7DOF)动力学模型,以深入了解200型和其他相关轻型飞机的飞行行为,并用作研究工具,以开发用于未来发射纳米卫星的发动机-车辆配置(1 -10 + kg)。包括准确的发动机,横梁和空气动力学模型,以提高7DOF代码的预测能力。升力,阻力和气动俯仰力矩的空气动力来自FLUENT?计算流体动力学预测,并根据有限的现有风洞数据进行了校准。为了便于7DOF模型验证,将模拟结果与可比条件下实际飞行的视频分析进行比较。尽管目前7DOF模型存在局限性,但该结果与实验飞行轨迹数据相比还是不错的。

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