MOSP / 期刊 / 可持续工程技术研究 / 2024年·第2卷·第2期
论著 · Article

海上风电运维阶段的LCA(生命周期评价)模型优化

Optimization of the LCA (Life Cycle Assessment) Model in the Operation and Maintenance Stage of Offshore Wind Power

作者:周文涛*
 苏州科技大学 江苏 苏州
*通信作者:周文涛,单位:苏州科技大学 江苏 苏州
提交:2024-09-12修改:2024-10-22录用:2024-11-07出版:2024-12-30
可持续工程技术研究, 2024, 2(2), 14-16
课题资助:自筹经费,无利益冲突需要说明
摘 要:
摘要:随着海上风电产业的快速发展,运维阶段对整体生命周期环境影响的重要性日益凸显。本文针对海上风电运维阶段,构建并优化了生命周期评价(LCA)模型,旨在提高评估的准确性和实用性。采用数据驱动与过程模拟相结合的方法,综合考虑设备维护、零部件更换、物流运输及能源消耗等关键环节,完善了运维过程中资源消耗和排放的计算体系。案例分析表明,优化后的LCA模型能够更细【更多...】
关键词:海上风电;环境影响;绿色运维
关键词: 海上风电;环境影响;绿色运维

摘要

摘 要:
随着海上风电产业的快速发展,运维阶段对整体生命周期环境影响的重要性日益凸显。本文针对海上风电运维阶段,构建并优化了生命周期评价(LCA)模型,旨在提高评估的准确性和实用性。采用数据驱动与过程模拟相结合的方法,综合考虑设备维护、零部件更换、物流运输及能源消耗等关键环节,完善了运维过程中资源消耗和排放的计算体系。案例分析表明,优化后的LCA模型能够更细致地反映运维阶段的环境负荷,识别出节能减排潜力显著的环节。该研究为海上风电项目的环境管理提供科学依据,有助于推动绿色运维策略的制定与实施,促进海上风电产业可持续发展。
关键词:海上风电;环境影响;绿色运维
 
Abstract: 
With the rapid development of the offshore wind power industry, the importance of the operation and maintenance stage on the environmental impact of the overall life cycle has become increasingly prominent. This paper constructs and optimizes the Life Cycle Assessment (LCA) model for the operation and maintenance stage of offshore wind power, aiming to improve the accuracy and practicability of the assessment. By adopting the method combining data-driven and process simulation, and comprehensively considering key links such as equipment maintenance, component replacement, logistics transportation and energy consumption, the calculation system of resource consumption and emissions in the operation and maintenance process has been improved. The case analysis shows that the optimized LCA model can reflect the environmental load in the operation and maintenance stage more meticulously and identify the links with significant potential for energy conservation and emission reduction. This research provides a scientific basis for the environmental management of offshore wind power projects, which is conducive to promoting the formulation and implementation of green operation and maintenance strategies and facilitating the sustainable development of the offshore wind power industry.
Keywords: Offshore wind power; Environmental impact; Green operation and maintenance
 
--

正文

正文内容 / Content:
可下载并阅读全文PDF,请按照本文版权许可使用。
Download the full text PDF for viewing and using it according to the license of this paper.

参考文献


参考文献 / References: 
  1. 周聪颖.解析海上风电运维难点和优化措施[J].电子乐园,2021,(02):0395-0395.
      
  2. 华夏.移动应用与海上风电运维[J].中国电力企业管理,2021,(36):48-49.
  3. 励挺.海上风电运维现状及研究[J].信息周刊,2020,0(05):0438-0438.
  4. 张洪流,商明星,刘正亮,刘阳,杨宁.海上风电运维关键装备与技术[J].船舶工程,2021,43(S1):6-8.
  5. 杨新吉勒图,韩晓,韩炜宏.风电环境成本全生命周期评价研究[J].节能与环保,2022,(01):72-74.
  6. 高路,张永刚,郗林,顾小波.南通海上风电运维船舶全生命周期管理对策研究[J].中国水运,2023,(07):131-133.
  7. 郑则旺.海上风电运维管理系统的研究[J].中国科技期刊数据库 工业A,2023,(08):0126-0128.
  8. 张杰.浅析海上风电施工与运维装备[J].电力系统装备,2021,(13):114-115.
  9. 徐文娟.更加精确的生命周期评价方法———区域生命周期评价[J].能源研究与管理,2021,(01):42-49.
  10. 樊启祥,陈晓路,王鑫.海上风电项目全生命周期资产管理[J].项目管理评论,2022,(02):72-77.
  11. 《船舶工程》编辑部.《海上风电安装与运维》[J].船舶工程,2020,42(12):I0009-I0009.
  12. 徐华利.海上风电运维的策略研究[J].科技创新导报,2020,17(03):159-160.
  13. 杨余.海上风电生命周期各阶段船舶装备浅析[J].船舶物资与市场,2022,30(12):49-51.
  14. 朱俊峰.浅谈海上风电施工与运维装备[J].中国科技期刊数据库 工业A,2020,(11).
  15. 逯鹏.海上风电运维管理系统的研究与建议[J].安防科技,2021,(06):42-42.
CC BY 4.0
© 2024 作者版权所有。许可出版:澳门科学出版社(MOSP),中国澳门。本文为开放获取文章,依据知识共享署名(CC BY 4.0)许可协议的条款和条件分发。 © 2024 by the authors. Published by Macao Scientific Publishers (MOSP), Macao, China. This is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY 4.0) license.
免责声明: 本期刊所发表文章中的所有陈述、观点和数据均为作者和贡献者的个人观点,不代表澳门科学出版社及/或编辑的立场。澳门科学出版社及/或编辑不对文中提及的任何思想、方法、说明或产品所导致的人身或财产伤害承担责任。 Publisher's Note: The statements, opinions and data contained in this journal are solely those of the individual authors and contributors and not of MOSP and/or the editors. MOSP and/or the editors disclaim responsibility for any injury to persons or property resulting from any ideas, methods, instructions or products referred to in the content.
Submit Your Manuscript Now
0.098262s