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Energy efficiency parametric design tool in the framework of holistic ship design optimization

机译:整体船舶设计优化框架中的能效参数设计工具

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摘要

Recent International Maritime Organization (IMO) decisions with respect to measures to reduce the emissions from maritime greenhouse gases (GHGs) suggest that the collaboration of all major stakeholders of shipbuilding and ship operations is required to address this complex techno-economical and highly political problem efficiently. This calls eventually for the development of proper design, operational knowledge, and assessment tools for the energy-efficient design and operation of ships, as suggested by the Second IMO GHG Study (2009). This type of coordination of the efforts of many maritime stakeholders, with often conflicting professional interests but ultimately commonly aiming at optimal ship design and operation solutions, has been addressed within a methodology developed in the EU-funded Logistics-Based (LOGBASED) Design Project (2004–2007). Based on the knowledge base developed within this project, a new parametric design software tool (PDT) has been developed by the National Technical University of Athens, Ship Design Laboratory (NTUA-SDL), for implementing an energy efficiency design and management procedure. The PDT is an integral part of an earlier developed holistic ship design optimization approach by NTUA-SDL that addresses the multi-objective ship design optimization problem. It provides Pareto-optimum solutions and a complete mapping of the design space in a comprehensive way for the final assessment and decision by all the involved stakeholders. The application of the tool to the design of a large oil tanker and alternatively to container ships is elaborated in the presented paper.
机译:国际海事组织(IMO)关于减少海洋温室气体(GHGs)排放的措施的最新决定表明,造船业和船舶运营的所有主要利益相关者必须进行合作,以有效解决这一复杂的技术经济和高度政治化的问题。最终,这需要根据IMO GHG第二项研究报告(2009)的建议,开发适当的设计,操作知识和评估工具,以实现船舶的节能设计和运行。在欧盟资助的基于物流的设计项目(LOGBASED)中开发的方法论中已解决了这种对许多海事利益相关者的努力进行协调的做法,这些利益冲突经常相互冲突,但最终通常以最佳船舶设计和运行解决方案为目标。 2004–2007)。基于该项目中开发的知识库,雅典国立技术大学船舶设计实验室(NTUA-SDL)开发了一种新的参数设计软件工具(PDT),用于实施能效设计和管理程序。 PDT是NTUA-SDL较早开发的整体船舶设计优化方法的组成部分,该方法解决了多目标船舶设计优化问题。它以全面的方式提供帕累托最优解决方案和设计空间的完整映射,以供所有相关利益相关方进行最终评估和决策。本文介绍了该工具在大型油轮设计中的应用,或者在集装箱船中的应用。

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