Holistic Ship Design for Green Shipping

Author:

Papanikolaou Apostolos1,Zaraphonitis George1,Jokinen Markus2,Aubert Adrien3,Harries Stephan4,Marzi Jochen5,Mermiris George6,Gunawan Rachmat3

Affiliation:

1. National Technical University of Athens

2. Elomatik Oy

3. Bureau Veritas

4. Friendship Systems AG

5. Hamburger Schiffbau-Versuchsanstalt GmbH

6. Tritec Marine Limited

Abstract

The pattern of seaborne trade and goods transportation is changing and ships need to adapt to changes of customer and market requirements, cargo volumes, and new legislation for the safety of ships and nowadays, even more, to the strict regulatory requirements for the protection of the environment. Responding to the urgent needs for substantial reduction of GHG (Green House gas) emissions from marine operations in line with the ambitious targets set by the International Maritime Organisation and the European Commission, a series of research and development works were initiated in the maritime sector for the ships designed and built today and be operating in the next decades to meet future environmental requirements. Responding to these needs, the recently completed Horizon 2020 European Research project – HOLISHIP – Holistic Optimisation of Ship Design and Operation for Life Cycle (2016-2020) has developed suitable tools and software platforms, as necessary for the creation of innovative design solutions meeting the set low emission strategic objectives. The present paper is presenting the HOLISHIP, multi-objective optimisation approach to green shipping and demonstrates a subset of its functionality by two green design RoPAX case studies.

Publisher

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Cited by 3 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Parallel multi-objective optimization for expensive and inexpensive objectives and constraints;Swarm and Evolutionary Computation;2024-04

2. On parametric modelling, digital siblings and ship design optimization;Ship Technology Research;2024-02-13

3. Holistic Approach to Ship Design;Journal of Marine Science and Engineering;2022-11-10

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