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浮式风电制氢装置设计研究
引用本文:刘富斌,桂薇,刘国军,田利君,兰建华. 浮式风电制氢装置设计研究[J]. 能源研究与信息, 2022, 38(3): 144-149
作者姓名:刘富斌  桂薇  刘国军  田利君  兰建华
作者单位:惠生(南通)重工有限公司,江苏 南通 226009;上海惠生海洋工程有限公司,上海 201210
摘    要:对浮式风电制氢装置工程化进行了研究,并基于8~10 MW的浮式风电平台,设计了3MW独立式风电制氢装置,制定了利用风机发电提供的能源,提取海水进行纯化和电解水制氢的技术路线,提出了关键设备的技术要求,并进行了系统的布置及初步的安全性和经济性分析。结果表明,由于经济性差,海工应用还不成熟,目前海上浮式制氢的工程化还需要一个过程,进行工程试验是大规模工程化的前提。

关 键 词:浮式风电  电解水  制氢
收稿时间:2021-08-02

Design of floating wind turbine with hydrogen production
LIU Fubin,GUI Wei,LIU Guojun,TIAN Lijun,LAN Jianhua. Design of floating wind turbine with hydrogen production[J]. Energy Research and Information, 2022, 38(3): 144-149
Authors:LIU Fubin  GUI Wei  LIU Guojun  TIAN Lijun  LAN Jianhua
Affiliation:Wison (Nantong) Heavy Industry Co., Ltd., Nantong 226009, China;Shanghai Wison Offshore & Marine Co., Ltd., Shanghai 201210, China
Abstract:Hydrogen production engineering by floating wind turbine was studied in this paper. Based on 8~10 MW floating wind turbine platform, a 3 MW apparatus of wind power to hydrogen by water electrolysis was designed, which contained power supply by wind turbine, seawater desalination and purification, and water electrolysis. Specifications of some key equipment were proposed. Results show that the application of floating wind power to hydrogen to marine engineering was still immature owing to lower economy. There is a long way to go for hydrogen production engineering by floating wind turbine. Engineering tests are required for its large-scale utilization.
Keywords:floating wind power  water electrolysis  hydrogen production
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