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Parameterization and optimization of broadband noise for high-lift devices

机译:高举设备的宽带噪声参数化和优化

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The multi-objective optimization of both aerodynamic and broadband noise characteristics of a high-lift device is studied. The optimization is based on combining a recently developed parameterized Navier-Stokes approach as a surrogate model for solution reconstructions to a genetic algorithm for Pareto front construction. The parameterized Navier-Stokes solver Turb'Opty is a high-order sensitivity method around a reference Reynolds-Averaged Navier-Stokes (RANS) flow field. The present implementation takes into account up to the second-order partial derivatives including cross-derivatives of the RANS solver with respect to the optimization parameters. Acoustic predictions are based on Amiet's airfoil models and their extensions for turbulence interaction noise and self-noise respectively. The needed temporal data are reconstructed from wall-resolved RANS simulations or estimate through the surrogate model. The use of the parameterized Navier-Stokes approach and the self-noise model are validated with both experimental and detailed simulation data on a NACA0012 configuration. The whole optimization process is then applied to the L1T2 high-lift device. The application of these noise models seems to qualitatively capture the broadband noise generated in gaps between the elements. The study of the Pareto front exhibits optimal solutions with the expected trends: for instance decreasing the Mach number and the camber reduces the noise and yields a lift reduction. Details of two optimal solutions are finally provided. (C) 2016 Elsevier Ltd. All rights reserved.
机译:研究了高升力设备的气动和宽带噪声特性的多目标优化。该优化是基于将最近开发的参数化Navier-Stokes方法作为替代模型进行求解的,该模型用于对Pareto前沿构造的遗传算法进行求解重建。参数化的Navier-Stokes求解器Turb'Opty是围绕参考雷诺平均Navier-Stokes(RANS)流场的高阶灵敏度方法。本实施方案考虑到最多二阶偏导数,包括相对于优化参数的RANS求解器的交叉导数。声学预测是基于Amiet的机翼模型及其对湍流相互作用噪声和自噪声的扩展。从墙解析的RANS模拟中重建所需的时间数据,或通过替代模型进行估算。参数化的Navier-Stokes方法和自噪声模型的使用已通过NACA0012配置上的实验数据和详细模拟数据进行了验证。然后将整个优化过程应用于L1T2高举设备。这些噪声模型的应用似乎定性地捕获了元素之间的间隙中产生的宽带噪声。对帕累托锋面的研究展示了具有预期趋势的最佳解决方案:例如,降低马赫数和外倾角会降低噪音并降低升力。最后提供了两个最佳解决方案的详细信息。 (C)2016 Elsevier Ltd.保留所有权利。

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