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Study on the Application Framework of BIM in the Life Cycle Management of Offshore Wind Farms

机译:BIM在海上风电场生命周期管理中的应用框架研究

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With the rapid development of offshore wind industry, the growth of installed capacity and the complexity of offshore, deep-water environment requires more efficient, automated, and integrated digital technologies to maximize the return. Building Information Modeling (BIM) has made remarkable research progress in the architecture, engineering and construction (AEC) industry. We extend its application to offshore wind farms for their life cycle management to realize the structural optimization design, construction process simulation, operation and maintenance data monitoring and disassembly, etc. Our research begins with the review of the research situation of each stage in the life cycle of offshore wind farms to conclude the key technologies and obstacles. Then the successful application outcomes and potential value of BIM are synthesized to analyze its necessities, possibilities and feasibilities for the application in offshore wind farms. Finally, the application framework of BIM for offshore wind farms is established to facilitate the life cycle management, including the aspects of schedule, cost, quality and disaster risk assessment based on integrated data from digital models, databases, structures, marine environments and geographic information systems. This paper systematically analyzes the value of BIM technology in the life cycle management of offshore wind farms, which is of great significance to expand the application of BIM in the field of marine engineering and also behaves as the fundamental research for the next generation of digital and smart sustainable offshore wind farms.
机译:随着海上风能产业的飞速发展,装机容量的增长以及海上深水环境的复杂性要求更加高效,自动化和集成的数字技术,以实现最大的回报。建筑信息模型(BIM)在建筑,工程和建筑(AEC)行业中取得了令人瞩目的研究进展。我们将其应用扩展到海上风电场的生命周期管理,以实现结构优化设计,施工过程模拟,运维数据监控和拆卸等。我们的研究始于对生命各个阶段的研究情况的回顾。海上风电场的循环,总结出关键技术和障碍。然后综合了BIM的成功应用成果和潜在价值,以分析其在海上风电场中应用的必要性,可能性和可行性。最后,建立了用于海上风电场的BIM应用框架,以促进生命周期管理,包括基于数字模型,数据库,结构,海洋环境和地理信息的集成数据进行的进度,成本,质量和灾难风险评估等方面。系统。本文系统地分析了BIM技术在海上风电场生命周期管理中的价值,这对于扩大BIM在海洋工程领域的应用具有重要意义,并且也将作为下一代数字和数字基础技术的基础研究。智能可持续海上风电场。

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