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Design space exploration and optimization using modern ship design tools

机译:使用现代船舶设计工具设计空间探索和优化

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摘要

Modern Naval Architects use a variety of computer design tools to explore feasible options for clean sheet ship designs. Under the Naval Sea Systems Command (NAVSEA), the Naval Surface Warfare Center, Carderock Division (NSWCCD) has created computer tools for ship design and analysis purposes. This paper presents an overview of some of these tools, specifically the Advanced Ship and Submarine Evaluation Tool (ASSET) version 6.3 and the Integrated Hull Design Environment (IHDE). This paper provides a detailed explanation of a ship design using these advanced tools and presents methods for optimizing the performance of the hullform, the selection of engines for fuel efficiency, and the loading of engines for fuel efficiency. The detailed ship design explores the design space given a set of specific requirements for a cruiser-type naval vessel. The hullform optimization technique reduces a ships residual resistance by using both ASSET and IHDE in a Design of Experiments (DoE) approach to reaching an optimum solution. The paper will provide a detailed example resulting in a 12% reduction in total ship drag by implementing this technique on a previously designed hullform. The reduction of drag results in a proportional reduction in the amount of fuel used to push the ship through the water. The engine selection optimization technique uses MATLAB to calculate the ideal engines to use for fuel minimization. For a given speed-time or power-time profile, the code will evaluate hundreds of combinations of engines and provide the optimum engine combination and engine loading for minimizing the total fuel consumption. This optimization has the potential to reduce fuel consumption of current naval warships by upwards of 30%.
机译:现代海军建筑师使用各种计算机设计工具来探索无尘船设计的可行方案。在海军海洋系统司令部(NAVSEA)的领导下,卡德罗克海军水面作战中心(NSWCCD)创建了用于船舶设计和分析目的的计算机工具。本文概述了其中一些工具,特别是高级船舶和潜艇评估工具(ASSET)6.3版和集成船体设计环境(IHDE)。本文提供了使用这些先进工具进行船舶设计的详细说明,并提出了优化船体性能,选择燃油效率的发动机以及装载燃油效率的方法。鉴于巡洋舰型海军舰船的一系列特定要求,详细的舰船设计将探索设计空间。船体优化技术通过在实验设计(DoE)方法中同时使用ASSET和IHDE来降低船舶的残余阻力,从而获得最佳解决方案。本文将提供一个详细的示例,通过在先前设计的船体形式上实施此技术,可使总船阻力降低12%。阻力的减少导致用于推动船舶通过水的燃料量成比例地减少。发动机选择优化技术使用MATLAB来计算用于最小化燃料的理想发动机。对于给定的速度时间或功率时间曲线,该代码将评估数百种发动机组合,并提供最佳的发动机组合和发动机负载,以最大程度地减少总油耗。这种优化有可能将当前海军军舰的油耗降低多达30%。

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