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Study on aerodynamic heat response of multi-free curvilinear surface dome of hypersonic vehicle

机译:高超声速飞行器多自由曲面曲面穹顶气动热响应研究

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In the field of conventional precision guided weapon design, the aircraft dome is generally designed as part of a hemispherical dome or hemispherical dome. Hemispherical domes are easy to produce, detect and correct aberration, but hypersonic vehicles equipped with hemispherical domes generate huge air resistance and a large number of aerodynamic thermal effects during atmospheric flight, seriously affecting the working conditions of precision guided weapons. Therefore, the paper breaks through the traditional spherical dome shape design, establishes the conformal dome model of freeform surfaces such as von Karman curve, quadratic curve and sine curve, and analyzes and compares the aerodynamic thermal performance of the above-mentioned various surface domes with finite element method. The conclusion is drawn that the optimization of the dome surface based on different free curves can effectively improve the aerodynamic thermal performance of supersonic precision guided weapons and reduce the influence of aerodynamic heating on its working state.
机译:在常规的精确制导武器设计领域中,飞机圆顶通常被设计为半球形圆顶或半球形圆顶的一部分。半球形圆顶易于产生,检测和校正像差,但是配备有半球形圆顶的高超音速飞行器在大气飞行过程中会产生巨大的空气阻力和大量的空气动力学热效应,从而严重影响了精密制导武器的工作条件。因此,本文突破了传统的球形穹顶形状设计,建立了诸如von Karman曲线,二次曲线和正弦曲线之类的自由曲面的共形穹顶模型,并分析和比较了上述各种表面穹顶的空气动力热性能。有限元法。得出的结论是,基于不同的自由曲线对圆顶表面进行优化可以有效地提高超声速精确制导武器的气动热性能,减少气动热对其工作状态的影响。

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