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首页> 外文期刊>Ocean Engineering >An early-stage approach to optimise a marine energy system for liquefied natural gas carriers: Part A - Developed approach
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An early-stage approach to optimise a marine energy system for liquefied natural gas carriers: Part A - Developed approach

机译:优化液化天然气船海洋能源系统的早期方法:A部分-已开发方法

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摘要

Developing design tools to make more information available sooner is desirable because decisions of the greatest impact are made in early stages of ship design. Moreover, there is still room for improvement in the optimisation of energy system selection considering an integrated approach. Therefore, the present work aims to provide a comprehensive early-stage approach to optimise the design, synthesis and operation of a marine energy system for liquified gas carriers, considering their economic and technical aspects, and also weather along the route. Constraints are used to avoid propellers that could present issues concerning strength, cavitation and vibration. Various propellers, engines and operational profiles can be assessed with this approach. A differential evolution optimisation algorithm that maximises the net present value is applied. This part of the study details the approach that we have developed, while the case study, results and discussion, and the main conclusions are given in Part B. Different parameters can be set up in each route-track, which enables various operational profiles and sea conditions to be considered to seek the highest net present value. The proposed approach is expected to be able to automatically search a broad range of possible alternatives and then make small refinements to achieve the optimal arrangement.
机译:希望开发设计工具以尽快获得更多信息,因为在船舶设计的早期阶段就做出影响最大的决定。此外,考虑到集成方法,在优化能源系统选择方面仍有改进的空间。因此,本工作旨在提供一种综合的早期方法,以优化液化气船的海洋能源系统的设计,合成和运行,同时考虑其经济和技术方面以及沿途的天气。使用约束条件可以避免螺旋桨出现强度,气穴和振动等问题。使用这种方法可以评估各种螺旋桨,发动机和运行状况。应用使净现值最大化的差分进化优化算法。本部分研究详细介绍了我们开发的方法,而案例研究,结果和讨论以及主要结论在B部分中给出。可以在每个路线中设置不同的参数,从而实现各种运行状况和寻求最高净现值的海况。预期所提出的方法将能够自动搜索广泛的可能替代方案,然后进行较小的改进以实现最佳布置。

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