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首页> 外文期刊>Defence Science Journal >A Modular and Integrated Optimisation Model for Underwater Vehicles
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A Modular and Integrated Optimisation Model for Underwater Vehicles

机译:水下航行器的模块化集成优化模型

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摘要

A modular and integrated optimisation model for the design of underwater vehicles is presented. In the proposed optimisation model two modules (i.e. low fidelity and high fidelity) are incorporated and the basic geometric definition of computer aided design ( CAD) is integrated with computational fluid dynamic (CFD) analysis. The hydrodynamic drag is considered as single objective with constraints on the geometric parameters of dimension, space and volume. The CAD model is implemented in MATLAB*(TM) and CFD model is implemented in Shipflow**(TM). A real-world design example of an existing underwater vehicle is presented. The applicability of proposed optimisation model is shown. The presented results show that within given set or sets of constraints the application of optimisation model in design results into an efficient hull form.
机译:提出了用于水下航行器设计的模块化和集成优化模型。在所提出的优化模型中,结合了两个模块(即低保真度和高保真度),并且将计算机辅助设计(CAD)的基本几何定义与计算流体动力学(CFD)分析集成在一起。流体动力阻力被认为是单一目标,其尺寸,空间和体积的几何参数受到限制。 CAD模型在MATLAB *™中实现,而CFD模型在Shipflow **™中实现。给出了现有水下航行器的真实设计示例。显示了所提出的优化模型的适用性。给出的结果表明,在给定的一组约束条件下,优化模型在设计结果中的应用成为有效的船体形式。

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