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Mixed-Fidelity Approach for Design of Low-Boom Supersonic Aircraft

机译:低空超音速飞机设计的混合保真度方法

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摘要

This paper documents a mixed-fidelity approach for the design of low-boom supersonic aircraft with a focus on fuselage shaping.A low-boom configuration that is based on low-fidelity analysis is used as the baseline. The fuselage shape is modified iteratively to obtain a configuration with an equivalent-area distribution derived from computational fluid dynamics analysis that attempts to match a predetermined low-boom target area distribution and also yields a low-boom ground signature. The ground signature of the final configuration is calculated by using a state-of-the-art computational-fluid-dynamics-based boom analysis method that generates accurate midfield pressure distributions for propagation to the ground with ray tracing. The ground signature that is propagated from a midfield pressure distribution has a shaped ramp front, which is similar to the ground signature that is propagated from the computational fluid dynamics equivalent-area distribution. This result supports the validity of low-boom supersonic configuration design by matching a low-boom equivalent-area target, which is easier to accomplish than matching a low-boom midfield pressure target.
机译:本文介绍了一种以低保真度为基础的低震速超音速飞机设计的混合保真度方法。反复修改机身形状,以获得具有等效面积分布的配置,该等效面积分布是从计算流体动力学分析得出的,该分布试图匹配预定的低臂目标区域分布,并产生低臂地面特征。最终配置的地面特征通过使用基于最新的计算流体动力学的臂架分析方法来计算,该方法可生成准确的中场压力分布,以通过射线追踪传播到地面。从中场压力分布传播的地面特征具有成形的斜坡前缘,这类似于从计算流体动力学等效面积分布传播的地面特征。该结果通过匹配低臂等效面积目标来支持低臂超音速配置设计的有效性,这比匹配低臂中场压力目标更容易实现。

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