马勇, 谈秋桐, 牛博, 等. 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. DOI: 10.19693/j.issn.1673-3185.03999
引用本文: 马勇, 谈秋桐, 牛博, 等. 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. DOI: 10.19693/j.issn.1673-3185.03999
MA Y, TAN Q T, NIU B, et al. Research progress of floating multi-energy combined power generation device[J]. Chinese Journal of Ship Research, 2024, 19(4): 3–20 (in Chinese). DOI: 10.19693/j.issn.1673-3185.03999
Citation: MA Y, TAN Q T, NIU B, et al. Research progress of floating multi-energy combined power generation device[J]. Chinese Journal of Ship Research, 2024, 19(4): 3–20 (in Chinese). 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

  • 摘要: 海洋可再生能源具有广阔的利用前景。相较于单一能源利用装置,漂浮式多能联合发电装置可以更好地实现资源优化配置,降低能源开发成本。为全面了解多能联合发电装置开发前景,从多能联合发电集成方案入手,分析不同类型联合发电装置的区别,并总结其技术特点。其中,在理论研究和仿真模拟等方面,对漂浮式多能联合发电装置各模块的研究方法和整体装置耦合动力学分析方法的研究进展予以梳理和归纳,分析各类方法的适用场景,探讨漂浮式多能联合发电装置的发展趋势及其所面临的问题和挑战,以便为后续经济可行的漂浮式多能联合发电装置研发提供参考。

     

    Abstract: Marine renewable energy has broad application prospects. Compared with the single energy utilization device, the floating multi-energy combined power generation device can better realize the optimal allocation of resources and reduce the development cost of energy. In order to fully understand the development prospects 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. Finally, 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 references for the subsequent construction of economically feasible floating multi-energy combined power generation devices.

     

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