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Waverider Vehicle Optimization with Volumetric Constraints for Sonic Boom

机译:Waverider车辆优化与Sonic Boom的体积限制

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An optimization process has been developed for the Osculating Flowfield waverider generation method that permits the design of wavcriders with physical characteristics matching desired area and volume distributions. Since a wide number of waverider classes, such as Caret, Conical, and Osculating Cones waveriders, are all subsets of the Osculating Flowfield approach, this new capability has broad applicability. This paper will present the development of the new process using two methods to generate a sonic boom footprint metric which drive the waveriders' physical characteristics to have a desirable streamwise distribution of the sum of local volume and integrated lift from the nose. Additionally, numerical optimizations has been performed to optimize waveriders designed to a specific Mach number while being constrained to the desired volumetric distributions for favorable sonic boom performance.
机译:已经开发了优化过程,用于允许具有匹配所需区域和体积分布的物理特性的波段设计的波动流场Waverider生成方法。由于诸如插入符号,圆锥和锥体波浪机之类的广泛的Waverider类,这是所有主控流场方法的亚组,这种新功能具有广泛的适用性。本文将使用两种方法呈现新进程的开发,以产生驱动Waveriders的物理特性的Sonic Boom占地面积,以具有所需的局部体积和从鼻子的集成升力的顺从。另外,已经执行了数值优化以优化设计成特定的马赫数的波浪机,同时限制于所需的体积分布,用于有利的声波动臂性能。

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