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Optimal shape design of multi-element trawl-doors using local surrogate models

机译:基于局部代理模型的多拖网结构优化设计

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Trawl-doors have a large influence on the fuel consumption of fishing vessels. Design and optimization of trawl-doors using computational models are a key factor in minimizing the fuel consumption. This paper presents an optimization algorithm for the shape design of trawl-door shapes using computational fluid dynamic (CFD) models. Accurate CFD models are computationally expensive. Therefore, the direct use of traditional optimization algorithms, which often require a large number of evaluations, may be prohibitive. The proposed approach is iterative and uses low-order local response surface approximation models of the expensive CFD model, constructed in each iteration, to reduce the number of evaluations. The algorithm is applied to the design of a multi-element trawl-doors, involving up to four design variables controlling the angle of attack and the slat and flap position and orientation. The results show that a satisfactory design can be obtained at the cost of a few iterations of the algorithm. (C) 2015 Elsevier B.V. All rights reserved.
机译:拖网门对渔船的油耗影响很大。使用计算模型设计和优化拖网门是使燃油消耗最小化的关键因素。本文提出了一种使用计算流体动力学(CFD)模型对拖网门形状进行形状设计的优化算法。准确的CFD模型的计算量很大。因此,直接使用通常需要大量评估的传统优化算法可能会被禁止。所提出的方法是迭代的,并使用每次迭代中构造的昂贵CFD模型的低阶局部响应面近似模型来减少评估次数。该算法应用于多元素拖网门的设计,涉及多达四个设计变量,这些变量控制攻角以及板条和襟翼的位置和方向。结果表明,可以以算法的几次迭代为代价获得满意的设计。 (C)2015 Elsevier B.V.保留所有权利。

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