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Trawl-door shape optimization with 3D CFD models and local surrogates

机译:利用3D CFD模型和局部替代来优化拖网门形状

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Design and optimization of trawl-doors are key factors in minimizing the fuel consumption of fishing vessels. This paper discusses optimization of the trawl-door shapes using high-fidelity 3D computational fluid dynamic (CFD) models. The accurate 3D CFD models are computationally expensive and, therefore, the direct use of traditional optimization algorithms, which often require a large number of evaluations, may be prohibitive. The design approach presented here is a variation of sequential approximate optimization exploiting low-order local response surface models of the expensive 3D CFD simulations. The algorithm is applied to the design of modern and airfoil-shaped trawl-doors.
机译:拖网门的设计和优化是最小化渔船燃料消耗的关键因素。本文讨论了使用高保真3D计算流体动力学(CFD)模型对拖网门形状的优化。精确的3D CFD模型在计算上很昂贵,因此直接使用传统的优化算法(通常需要进行大量评估)可能会被禁止。这里介绍的设计方法是利用昂贵的3D CFD仿真的低阶局部响应曲面模型进行的顺序近似优化的一种变体。该算法被应用于现代翼型拖网的设计。

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