首页> 外文OA文献 >Aerodynamic Shape Optimization of Complex Aircraft Configurations via an Adjoint Formulation
【2h】

Aerodynamic Shape Optimization of Complex Aircraft Configurations via an Adjoint Formulation

机译:通过伴随公式优化复杂飞机构型的空气动力学形状

摘要

This work describes the implementation of optimization techniques based on control theory for complex aircraft configurations. Here control theory is employed to derive the adjoint differential equations, the solution of which allows for a drastic reduction in computational costs over previous design methods (13, 12, 43, 38). In our earlier studies (19, 20, 22, 23, 39, 25, 40, 41, 42) it was shown that this method could be used to devise effective optimization procedures for airfoils, wings and wing-bodies subject to either analytic or arbitrary meshes. Design formulations for both potential flows and flows governed by the Euler equations have been demonstrated, showing that such methods can be devised for various governing equations (39, 25). In our most recent works (40, 42) the method was extended to treat wing-body configurations with a large number of mesh points, verifying that significant computational savings can be gained for practical design problems. In this paper the method is extended for the Euler equations to treat complete aircraft configurations via a new multiblock implementation. New elements include a multiblock-multigrid flow solver, a multiblock-multigrid adjoint solver, and a multiblock mesh perturbation scheme. Two design examples are presented in which the new method is used for the wing redesign of a transonic business jet.
机译:这项工作描述了基于控制理论的复杂飞机配置优化技术的实现。在这里,控制理论被用来推导伴随的微分方程,其解使得与以前的设计方法相比,可以大大降低计算成本(13、12、43、38)。在我们较早的研究中(19、20、22、23、39、25、40、41、42),表明该方法可用于设计有效的优化程序,以对机翼,机翼和机翼进行分析或分析。任意网格。已经证明了针对潜在流量和由Euler方程控制的流量的设计公式,表明可以针对各种控制方程设计此类方法(39,25)。在我们最近的工作中(40,42),该方法已扩展为处理具有大量网格点的机翼构型,从而验证了针对实际设计问题可以节省大量计算量。在本文中,该方法扩展为适用于欧拉方程,以通过新的多模块实现来处理完整的飞机配置。新元素包括多块多网格流求解器,多块多网格伴随求解器和多块网格摄动方案。提出了两个设计实例,其中将新方法用于跨音速公务机的机翼重新设计。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号