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漂浮式多能联合发电装置研究进展

马勇 谈秋桐 牛博 胡超 门雪松

中国舰船研究2024,Vol.19Issue(4):3-20,18.
中国舰船研究2024,Vol.19Issue(4):3-20,18.DOI:10.19693/j.issn.1673-3185.03999

漂浮式多能联合发电装置研究进展

Research progress of floating multi-energy combined power generation device

马勇 1谈秋桐 2牛博 3胡超 3门雪松2

作者信息

  • 1. 中山大学 海洋工程与技术学院,广东 珠海 519082||南方海洋科学与工程广东省实验室(珠海),广东 珠海 519082
  • 2. 中山大学 海洋工程与技术学院,广东 珠海 519082||招商局海洋装备研究院有限公司,广东 深圳 518067
  • 3. 中山大学 海洋工程与技术学院,广东 珠海 519082
  • 折叠

摘要

Abstract

Marine renewable energy has broad application prospects.Compared with the single energy utiliza-tion device,the floating multi-energy combined power generation device can better realize the optimal alloca-tion of resources and reduce the development cost of energy.In order to fully understand the development pro-spects of multi-energy combined power generation devices,this paper starts with the multi-energy combined power generation integration scheme,analyzes the differences between different types of combined power generation devices,and summarizes their technical characteristics.Next,the research progress of each module analysis method and multi-module coupling dynamics analysis method of the floating multi-energy combined power generation device is clarified and summarized in such aspects as theoretical research and simulation.Fi-nally,the applicable scenarios of the various methods are analyzed and the development trends,problems,and challenges of floating multi-energy combined power generation devices are discussed,aiming to provide refer-ences for the subsequent construction of economically feasible floating multi-energy combined power genera-tion devices.

关键词

海洋可再生能源/多能联合发电系统/浮式结构物/耦合计算/建模方法

Key words

marine renewable energy/multi-energy hybrid power generation system/floating structure/coupling calculation/modeling method

分类

交通工程

引用本文复制引用

马勇,谈秋桐,牛博,胡超,门雪松..漂浮式多能联合发电装置研究进展[J].中国舰船研究,2024,19(4):3-20,18.

基金项目

国家自然科学基金资助项目(52071348) (52071348)

广东省自然资源厅推动经济高质量发展项目(GDOE[2022]30) (GDOE[2022]30)

广东省南大洋科学与工程实验室(珠海)建设项目(311020013) (珠海)

广东省基础与应用基础研究基金资助项目(2023B1515250010) (2023B1515250010)

中国舰船研究

OA北大核心CSTPCD

1673-3185

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