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Wing-body junction optimisation with CAD-based parametrisation including a moving intersection

机译:通过基于CAD的参数化(包括移动相交点)优化机翼-车身交界处

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Over the past decades significant progress has been made with adjoint computational fluid dynamics solvers, which are an essential part of efficient high-fidelity aerodynamic shape optimisation. Shape parametrisation is much less mature, in particular the field is lacking efficient and automatic CAD-based parametrisation methods. The paper proposes a novel CAD-based parametrisation with CAD in the design loop such that the CAD shape can ultimately serve as a datum surface in multi-disciplinary optimisation. Wing and fuselage are modelled with B-spline surfaces. The intersection line is calculated using an in-house implementation of a B-spline surface modeller and its derivative is efficiently calculated via finite differences. The proposed parametrisation method is applied to the redesign of the wing fuselage junction of the DLR-F6 model using an adjoint solver based on Reynolds-averaged Navier-Stokes equations. The moving intersection line capability enables the fuselage surface to be deformed and the resulting intersection line to move along the fixed wing during optimisation. The flow separation in the wing-body junction is substantially suppressed by an improved fuselage shape, at the cost of O(10) steady-state flow and adjoint solutions. The proposed parametrisation method represents an important step towards automated CAD-based optimisation for fully-featured aircraft characterised by complex intersecting surfaces. (C) 2017 Elsevier Masson SAS. All rights reserved.
机译:在过去的几十年中,伴随计算流体动力学求解器取得了重大进展,这是有效的高保真空气动力学形状优化的重要组成部分。形状参数化还不十分成熟,特别是在该领域缺乏高效且基于CAD的自动参数化方法。论文提出了一种新颖的基于CAD的参数化设计方法,在设计循环中使用CAD,以便CAD形状最终可以用作多学科优化中的基准面。机翼和机身均采用B样条曲面建模。使用B样条曲面建模器的内部实现来计算相交线,并通过有限差分有效地计算其导数。提出的参数化方法应用于基于雷诺平均Navier-Stokes方程的伴随求解器对DLR-F6模型的机翼机身交界处的重新设计。移动的相交线功能使机身表面变形,并在优化过程中使相交的线沿固定翼移动。机翼-机身接合处的流动分离被改进的机身形状所基本抑制,以O(10)稳态流动和伴随解决方案为代价。拟议的参数化方法代表了针对以复杂相交表面为特征的全功能飞机进行基于CAD的自动优化的重要一步。 (C)2017 Elsevier Masson SAS。版权所有。

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