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Inverse Design of Low-Boom Supersonic Concepts Using Reversed Equivalent-Area Targets

机译:低空超音速概念的反向等效面积目标反设计

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摘要

A promising path for developing a low-boom configuration is a multifidelity approach that (1) starts from a low-fidelity low-boom design, (2) refines the low-fidelity design with computational fluid dynamics (CFD) equivalent-area (Ae) analysis, and (3) improves the design with sonic-boom analysis by using CFD off-body pressure distributions. The focus of this paper is on the third step of this approach, in which the design is improved with sonic-boom analysis through the use of CFD calculations. A new inverse design process for off-body pressure tailoring is formulated and demonstrated with a low-boom supersonic configuration that was developed by using the mixed-fidelity design method with CFD Ae analysis. The new inverse design process uses the reverse propagation of the pressure distribution (dp/p) from a mid-field location to a near-field location, converts the near-field dp/p into an equivalent-area distribution, generates a low-boom target for the reversed equivalent area (Ae,r) of the configuration, and modifies the configuration to minimize the differences between the configuration s Ae,r and the low-boom target. The new inverse design process is used to modify a supersonic demonstrator concept for a cruise Mach number of 1.6 and a cruise weight of 30,000 lb. The modified configuration has a fully shaped ground signature that has a perceived loudness (PLdB) value of 78.5, while the original configuration has a partially shaped aft signature with a PLdB of 82.3.
机译:开发低悬臂配置的一种有前途的途径是一种多保真方法,该方法(1)从低保真低悬臂设计开始,(2)通过计算流体力学(CFD)等效面积(Ae)改进低保真设计。 )分析,以及(3)通过使用CFD体外压力分布改进音爆分析。本文的重点是该方法的第三步,其中通过使用CFD计算通过声波臂分析来改进设计。制定了一种新的用于体外压力调节的逆设计过程,并采用了低动臂超音速配置进行了演示,该配置是通过使用CFD Ae分析的混合保真度设计方法开发的。新的逆设计过程使用压力分布(dp / p)从中场位置向近场位置的反向传播,将近场dp / p转换为等效面积分布,生成低构型的反向等效面积(Ae,r)的吊臂目标,并修改配置以最小化配置s Ae,r与低吊臂目标之间的差异。新的逆向设计过程用于修改巡航速度为1.6马赫,巡航重量为30,000磅的超音速演示器概念。修改后的配置具有完全成形的地面特征,其感知响度(PLdB)值为78.5,而原始配置具有部分形状的后签名,PLdB为82.3。

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    Rallabhand, Sriam; Li, Wu;

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  • 年度 2011
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