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Simulation-driven design of low-speed wind tunnel contraction

机译:低速风洞收缩的仿真驱动设计

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A low-speed wind tunnel is developed for conducting research on the flow past micro air vehicles. The tunnel is of open suction type and is composed of a square inlet with a honeycomb and turbulence screens, settling chamber, contraction, experimental section housing, diffuser, and axial fan. In this paper, we describe the details of the design optimization procedure of the contraction, which is key to getting a high quality flow in the experimental section. A high-fidelity computational fluid dynamic (CFD) flow solver is used to capture the nonlinear flow physics. Due to the high computational expense of the CFD simulations, surrogate-based optimization (SBO) is used to accelerate the design process. The SBO approach replaces direct optimization of the high-fidelity (accurate but computationally expensive) model by iterative optimization of a properly corrected low-fidelity model. Here, we exploit variable-fidelity CFD simulations, as well as a simple multiplicative response correction technique to construct the surrogate model of the wind tunnel contraction, allowing us to optimize its shape at a low computational cost. To our knowledge, it is the first application of variable-fidelity surrogate modeling to wind tunnel contraction design. The optimum nozzle design is verified using a high-fidelity CEO simulation, as well as by experimental measurements of the fabricated wind tunnel. Experimental validation confirms the correctness of the numerical optimization procedures utilized to design the contraction. (C) 2015 Elsevier B.V. All rights reserved.
机译:开发了一种低速风洞,用于对通过微型飞机的气流进行研究。隧道是开放式吸风型,由带蜂窝和湍流滤网的方形进气口,沉降室,收缩腔,实验段外壳,扩散器和轴流风扇组成。在本文中,我们描述了收缩设计优化过程的细节,这是在实验部分获得高质量流的关键。高保真计算流体动力学(CFD)流动求解器用于捕获非线性流动物理学。由于CFD仿真的计算量很大,因此使用基于代理的优化(SBO)来加速设计过程。 SBO方法通过对正确校正的低保真度模型进行迭代优化来代替对高保真度(准确但计算量大)模型的直接优化。在这里,我们利用可变保真度CFD仿真以及简单的乘性响应校正技术来构建风洞收缩的替代模型,从而使我们能够以较低的计算成本来优化其形状。据我们所知,这是可变保真度替代模型在风洞收缩设计中的首次应用。最佳喷嘴设计通过高保真CEO模拟以及人造风洞的实验测量得到验证。实验验证证实了用于设计收缩的数值优化程序的正确性。 (C)2015 Elsevier B.V.保留所有权利。

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