组合动力宽速域变体飞行器建模与轨迹特性分析
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作者单位:

1.西北工业大学;2.国防科技大学

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V271.9

基金项目:

国家自然科学基金资助项目(62173274);


Modelling and trajectory analysis of a combined-cycle engine powered wide-speed range morphing aircraft
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    摘要:

    组合动力宽速域飞行器能够在普通民用机场水平起飞,适合多种地形和应用场景,飞行速度可超过Ma=5。在组合动力飞行器中引入变体结构能够进一步拓宽速域和空域,使其在宽速域、大包线条件下具有更好的飞行性能。建立了一种后掠角可变的飞行器模型,包括外形结构、气动模型和动力模型,并分析了模型中的耦合特性;基于Gauss伪谱法分段优化了此飞行器的爬升轨迹,并与固定外形飞行器的轨迹进行了对比分析。仿真结果表明,所建立的飞行器模型能够反映出宽速域变体飞行器所具有的飞行-动力、飞行-变体双重耦合特性,变体结构的引入可以有效提升飞行器爬升段的爬升效率和节油性能。

    Abstract:

    The combined-cycle engine powered aircraft demonstrates horizontal takeoff capability from conventional civil airfields, exhibiting adaptability to diverse operational scenarios and work at speeds in excess of Ma=5. The integration of morphing aerodynamic configurations into this aircraft architecture significantly enhances its operational speed range and spatial coverage, thereby optimizing flight performance across extended speed regimes and expansive flight envelopes. An aircraft model with variable-sweep wing configuration was established including the shape structure, aerodynamic model and power model, and the coupling characteristics in the model were analysed. The trajectory in the take-off and climbing phase were segmentally optimised based on the Gaussian pseudo-spectral method. Comparative analysis between morphing-wing configurations and fixed-geometry counterparts revealed critical performance advantages. Simulation results demonstrate that the proposed wide-speed-range morphing aircraft model exhibits dual-coupling characteristics involving propulsion-flight interaction and morphodynamic coupling. It also proves that the sweep angle changing can effectively improve the climbing efficiency and fuel saving performance in the take-off and climbing phase.

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历史
  • 收稿日期:2025-02-12
  • 最后修改日期:2025-06-06
  • 录用日期:2025-06-09
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