储能科学与技术 ›› 2025, Vol. 14 ›› Issue (10): 3875-3899.doi: 10.19799/j.cnki.2095-4239.2025.0394

• 储能系统与工程 • 上一篇    下一篇

海上作战用电能源技术应用分析

牛嘉1,2(), 张慧敏2, 张松通2, 王立华4, 姚佳欣1, 孟闻捷2, 王贵领1, 邱景义2, 方振华3, 明海2()   

  1. 1.哈尔滨工程大学材料科学与化学工程学院,超轻材料与表面技术教育部重点实验室,黑龙江 ;哈尔滨 150006
    2.军事科学院防化研究院,北京 100191
    3.轻工业化学电源研究所,江苏 苏州 215600
    4.国防大学联合勤务学院,北京 100091
  • 收稿日期:2025-04-23 修回日期:2025-05-19 出版日期:2025-10-28 发布日期:2025-10-20
  • 通讯作者: 明海 E-mail:niujia917@163.com;hai.mingenergy@hotmail.com
  • 作者简介:牛嘉(2001—),女,硕士研究生,主要研究方向为电池试验检测与评估,E-mail:niujia917@163.com
  • 基金资助:
    国家自然科学青年基金项目(21703285)

Application of electric energy technologies in naval combat operations

Jia NIU1,2(), Huimin ZHANG2, Songtong ZHANG2, Lihua WANG4, Jiaxin YAO1, Wenjie MENG2, Guiling WANG1, Jingyi QIU2, Zhenhua FANG3, Hai MING2()   

  1. 1.Key Laboratory of Superlight Materials and Surface Technology of Ministry of Education, College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin 150006, Heilongjiang, China
    2.Chemical Defence Institute, AMS, Beijing 100191, China
    3.Institute of Chemical Power Sources, Suzhou 215600, Jiangsu, China
    4.Joint Service College, National Defense University, Beijing 100091, China
  • Received:2025-04-23 Revised:2025-05-19 Online:2025-10-28 Published:2025-10-20
  • Contact: Hai MING E-mail:niujia917@163.com;hai.mingenergy@hotmail.com

摘要:

随着各国对海洋利益的重视以及深远海作业的需求,为了满足水面-水下各类有人/无人舰、船、艇、机器人、预置传感器等的续航时间、极端环境和复杂工况需求,尤其是高载荷快速机动、超长续航、超久预置等对战场电能源一体化保障的供电性能需求提升,亟待开发满足海上作战平台用电能源“获取-储存-传输-组网”的电能源区域一体化保障体系,实现水面-水下电能源的快速补充,或构建高效快速反应的伴随保障策略及配套供配电系统。目前应用于海上作战平台且受到广泛关注的电能源技术主要有平台动力用化学电源、长续航贮备电源、水下预置大规模储能、海洋环境机械能转化、海洋环境太阳能转化、海洋环境生物能转化、水下电能源保障区域组网等技术,随着近些年化学电源、无线传能、太阳能、波浪能、生物质能、核能等能源技术的快速发展,水面-水下区域一体化电能源保障体系的组建态势越来越明显。因此,为遴选性能更好、更匹配的能源获取、传输、储能和组网技术服务于海上作战电能源保障的迭代升级和应用创新,本文对现有海上作战电能源保障的技术最新研究进展进行了梳理,综述了各技术体系当前的发展水平、技术能力以及亟待突破的关键技术,并对未来构建水面-水下电能源区域一体化保障体系进行了分析研究。

关键词: 海上作战平台, 动力电源, 贮备电池, 海洋能, 电能源网

Abstract:

As nations increasingly emphasize maritime interests and the demand for deep-sea operations grows, it is necessary to address the endurance, extreme environments, and complex operational conditions of manned and unmanned ships, boats, submarines, robots, pre-positioned sensors, and other equipment operating both on the surface and underwater. In particular, the enhanced power supply requirements for battlefield energy integration-such as high-load rapid maneuvering, ultra-long endurance, and extended pre-positioning-necessitate the development of an integrated "acquisition-storage-transmission-networking" regional energy system tailored to maritime combat platforms. Such a system would enable rapid replenishment of surface and underwater energy resources or establish an efficient, rapid-response guarantee strategy supported by advanced power distribution networks. Currently, electro-energy technologies widely applied to maritime combat platforms include chemical batteries for platform power supply, long-range reserve power sources, large-scale pre-positioned underwater energy storage, mechanical energy conversion in marine environments, solar energy conversion in marine environments, bioenergy conversion in marine environments, and underwater electro-energy support networks. In recent years, with the rapid advancement of chemical batteries, wireless energy transmission, solar energy, wave energy, biomass energy, and nuclear energy, the trend toward integrated electro-energy networks for surface and underwater applications has become increasingly evident. Therefore, to identify advanced and better-suited energy acquisition, transmission, storage, and networking technologies that can effectively support the iterative upgrading and innovative application of maritime combat power energy security, this paper systematically reviews the latest developments in these fields. It summarizes current technological levels, capabilities, and critical challenges requiring breakthroughs, while also analyzing prospects for constructing an integrated surface-underwater maritime combat energy security system.

Key words: maritime combat platform, power supply, reserve battery, ocean energy, electro-energy network

中图分类号: