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Adaptive Aft Signature Shaping of a Low-Boom Supersonic Aircraft Using Off-Body Pressures

机译:低俯冲超音速飞机采用机体压力的自适应后签名成形

摘要

The design and optimization of a low-boom supersonic aircraft using the state-of-the- art o -body aerodynamics and sonic boom analysis has long been a challenging problem. The focus of this paper is to demonstrate an e ective geometry parameterization scheme and a numerical optimization approach for the aft shaping of a low-boom supersonic aircraft using o -body pressure calculations. A gradient-based numerical optimization algorithm that models the objective and constraints as response surface equations is used to drive the aft ground signature toward a ramp shape. The design objective is the minimization of the variation between the ground signature and the target signature subject to several geometric and signature constraints. The target signature is computed by using a least-squares regression of the aft portion of the ground signature. The parameterization and the deformation of the geometry is performed with a NASA in- house shaping tool. The optimization algorithm uses the shaping tool to drive the geometric deformation of a horizontal tail with a parameterization scheme that consists of seven camber design variables and an additional design variable that describes the spanwise location of the midspan section. The demonstration cases show that numerical optimization using the state-of-the-art o -body aerodynamic calculations is not only feasible and repeatable but also allows the exploration of complex design spaces for which a knowledge-based design method becomes less effective.
机译:长期以来,使用最新的人体空气动力学和声波分析技术来设计和优化低空超音速飞机一直是一个难题。本文的重点是演示一种有效的几何参数化方案,以及一种采用o体压力计算的低吊舱超音速飞机后部成形的数值优化方法。一种基于梯度的数值优化算法,该模型将目标和约束建模为响应面方程,用于将后部地面信号推向斜坡形状。设计目标是在几个几何和签名约束下,使地面签名和目标签名之间的变化最小。目标签名通过使用地面签名后部的最小二乘回归来计算。几何形状的参数化和变形是通过NASA内部成型工具执行的。优化算法使用成形工具通过参数化方案来驱动水平尾部的几何变形,该参数化方案由七个弯度设计变量和一个描述中跨段的翼展方向位置的附加设计变量组成。演示案例表明,使用最新的车身空气动力学计算进行数值优化不仅可行且可重复,而且允许探索复杂的设计空间,而基于知识的设计方法对其无效。

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  • 作者

    Ordaz Irian; Li Wu;

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  • 年度 2012
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