漂浮结构:拥抱结构工程的机遇和挑战

FLOATING STRUCTURES: EMBRACING THE OPPORTUNITIES AND CHALLENGES OF STRUCTURAL ENGINEERING

  • 摘要: 随着全球人口增长、土地资源匮乏以及气候变化引发的海平面上升,海洋空间的开发利用已成为应对社会重大挑战的战略选择。漂浮结构作为未来蓝色经济和韧性城市建设的核心支撑,正迎来前沿工程机遇。本文首先探讨了漂浮结构在提供海上生活空间、深远海可再生能源(如风能、光伏、波浪能)、资源开采及韧性基础设施等维度的机遇。随后,分析了该领域在结构工程方面所面临的八大挑战:极复杂的载荷耦合、可持续材料研发、新型模块化结构形式、精确高效施工、深海流固土耦合稳定性、多自由度动力学设计方法、海洋环境可持续性以及智能化监测维护。文章进一步回顾了全球漂浮结构的研究趋势,并介绍了中国、澳大利亚、荷兰、新加坡等国在漂浮结构领域的最新科研动向。

     

    Abstract: With global population growth, land scarcity, and sea-level rise caused by climate change, the development and utilization of marine space has become a strategic choice for addressing major societal challenges. Floating structures, as a core support for the future blue economy and resilient city construction, are ushering in cutting-edge engineering opportunities. This paper first explores the opportunities for floating structures in providing offshore living space, deep-sea renewable energy (such as wind, solar, and wave energy), resource extraction, and resilient infrastructure. Subsequently, it analyzes eight major challenges in structural engineering within this field: extremely complex load coupling, sustainable material development, novel modular structural forms, precise and efficient construction, deep-sea fluid-structure-sea bed interaction, multi-degree-of-freedom dynamic design methods, marine environmental sustainability, and intelligent monitoring and maintenance. The paper further reviews global research trends in floating structures and introduces the latest research developments in the field of floating structures from China, Australia, the Netherlands, and Singapore.

     

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