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A multi-level optimization technique based on fuel consumption and energy index in early-stage ship design

机译:一种基于燃油消耗和能源指标在早期船舶设计中的多层次优化技术

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摘要

Reducing lifetime fuel consumption (LFC) and energy efficiency design index (EEDI) are two of the main concerns of shipping industry in recent years. This paper presents a multi-disciplinary and multi-level optimization scheme-based software (HPS-MOP2) to design a hull-propeller system simultaneously from the LFC and EEDI point of view in early-stage ship design. Calculations of the ship resistance and propeller performance are essential to optimize the ship hull-propeller system. Two numerical methods with variable fidelity, non-uniform rational basis spline (NURBS) geometry modelling technique and new version of multi-objective evolutionary algorithm based on decomposition (MOEA/D) are three main parts of the proposed methodology. A bulk carrier propelled by a well-known propeller is used as a base model in three different study cases based on specific fuel oil consumption (SFOC) curves provided by the engine manufacturers Wartsila, MAN and Caterpillar. The presented results illustrate that the employed approach may achieve cost- and energy-efficient designs.
机译:减少寿命燃料消耗(LFC)和能效设计指数(EEDI)是近年来航运业的主要问题。本文介绍了一种基于多学科和多级优化方案的软件(HPS-MOP2),可以从LFC和EEDI在早期船舶设计中同时设计船体推进器系统。船舶抵抗和螺旋桨性能的计算对于优化船舶螺旋桨系统至关重要。基于分解(MOEA / D)的两种具有可变保真度,非均匀合理基准花键(NURBS)几何模拟技术和新版本的多目标进化算法的数值方法是所提出的方法的三个主要部分。由众所周知的螺旋桨推进的散装载体用作基于发动机制造商Wartsila,Man和Caterpillar提供的特定燃料油消耗(SFOC)曲线的三种不同的研究病例中的基础模型。所提出的结果说明了采用的方法可以实现成本和节能的设计。

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