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Comparison between Gradient-free and Adjoint Based Aerodynamic Optimization of a Flying Wing Transport Aircraft in the Preliminary Design

机译:初步设计中飞翼运输机的梯度自由兼兼容空气动力学优化的比较

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This paper describes investigations of planform and shape optimizations for a flying wing transport aircraft with an Euler continuous adjoint method. For a prescribed lift the cost function will be the drag, which has to be minimized and implies a maximization of L/D. The results presented for the gradient based method using an adjoint solver are compared to an optimization performed with a gradient free approach. The different workflows and procedures will demonstrate the advantages and disadvantages of each particular optimization approach. The optimization procedure uses a freeform deformation technique for the design parameterization of the shape as well as for the surface mesh deformation required to determine the gradients. This combination of both tasks into one tool is advantageous because performing finite differences for evaluating the mesh sensitivities can be carried out with a constant grid topology. An example design case is also shown for demonstration purposes.
机译:本文介绍了具有欧拉连续伴随方法的飞行翼运输飞机的平面变形和形状优化的研究。对于规定的提升,成本函数将是拖动,这必须最小化并意味着L / D的最大化。将使用伴随求解器的梯度基于梯度方法呈现的结果与以梯度的自由方法进行的优化进行比较。不同的工作流程和程序将展示每个特定优化方法的优缺点。优化过程使用FREEFORM变形技术来实现形状的设计参数化以及确定梯度所需的表面网格变形。这两个任务中的这种任务组合到一个工具是有利的,因为可以用恒定的网格拓扑执行用于评估网状敏感性的有限差异。还示出了示例性设计案例以用于演示目的。

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