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Scenario-based hydrodynamic design optimization of high speed planing craft for coastal surveillance

机译:基于方案的海岸巡逻高速滑行艇水动力设计优化

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In this paper, an optimization framework for the design of hard chine planing craft is presented. The proposed framework consists of a surface information retrieval module, a geometry manipulation module and an optimization module backed by standard naval architectural performance estimation tools. Total resistance comprising calm water resistance and added resistance in waves is minimized subject to constraints on displacement and stability requirements. Infeasibility Driven Evolutionary Algorithm (IDEA) is incorporated in the optimization module. A scenario-based hydrodynamic optimization problem using an example of United States Coast Guard (USCG) WPB-110ft vessel is presented in this work. The concepts presented in this paper is an extension of the works of [15] [16] where instead of only performing total resistance minimization of high speed planing craft at a single operational speed, a set of collective speed spanning over a predefined lifetime is illustrated. The proposed framework is capable of generating the optimum hull form while at the same time enabling a provision for ship designers to evaluate the candidate designs' performance over various operating scenarios.
机译:本文提出了一种硬质刨刀工艺设计的优化框架。拟议的框架包括一个表面信息检索模块,一个几何处理模块和一个由标准海军建筑性能评估工具支持的优化模块。受制于位移和稳定性要求的约束,包括静水阻力和波浪附加阻力在内的总阻力被最小化。优化模块中包含了不可行驱动进化算法(IDEA)。在这项工作中,以美国海岸警卫队(USCG)WPB-110ft船为例,提出了基于方案的水动力优化问题。本文提出的概念是[15] [16]工作的扩展,其中说明了一组跨越预定义寿命的集体速度,而不是仅在单个操作速度下执行高速滑行飞机的总阻力最小化。 。所提出的框架能够生成最佳的船体形式,同时使船舶设计人员能够评估各种操作场景下候选设计的性能。

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