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Track Ⅶ

Advancing Frontiers in Ocean Engineering   (Submission Deadline: May 30, 2026)
海洋工程前沿进展

 

Chair: Co-chair:

Muyu Duan
Guangzhou Maritime University, China

Shanran Tang

Guangzhou Maritime University, China

 

 

Keywords:

 

  • Coastal and Offshore Engineering (近岸与离岸工程)
  • Polar Engineering (极地工程)
  • Deep Sea Engineering (深海工程)
  • Marine Structures and Materials (海洋工程结构与材料)
  • Smart Technologies (智能技术)
  • Green Technologies (绿色技术)
 
Topics:
  • Smart Technologies and Digitalization in Ocean Engineering: Application of digital twin technology in the full lifecycle management of ocean engineering projects; intelligent monitoring and predictive maintenance for ocean engineering structures; Big data analytics and AI algorithms for marine environmental sensing and forecasting; Integration and optimization of IoT and communication technologies in ocean engineering applications (海洋工程智能化与数字化:数字孪生技术在海洋工程全生命周期管理中的应用;海洋工程智能监测与预测性维护;大数据分析与AI算法在海洋环境感知预测中的应用;物联网与通信技术在海洋工程中的集成与优化)
  • Green Technologies and Sustainable Development in Ocean Engineering: Development and technologies of ocean clean energies; Marine ranching and integrated development approaches; Carbon emission control and low-carbon technology implementation in ocean engineering; Environmental impact assessment and ecological protection strategies for sustainable marine development (海洋工程绿色转型与可持续发展:海上清洁能源开发;海洋牧场及其集成开发;海洋工程碳排放控制与低碳技术应用实践;海洋工程环境影响评估与生态保护策略)
  • Polar and Deep-Sea Engineering Innovations: Polar engineering equipment and ice-resistant technologies; Breakthroughs in autonomous underwater vehicle (AUV) technology; Material and structural innovations for deep-sea environments; Exploration and development technologies for deep-sea mineral resources (极地与深海工程技术创新:极地工程装备及其抗冰技术;自主水下航行器技术突破;深海环境下的材料与结构创新;深海矿产资源勘探与开发技术)
  • Structural Design and Operational Management of Ocean Engineering: Fluid-structure interaction analysis and optimization of marine engineering structures; Structural health monitoring and assessment technologies in marine environments; Lifecycle risk identification and management for ocean engineering projects; Development of industry standards and regulations for ocean engineering practices (海洋工程结构设计与运维管理:海洋工程结构的流固耦合分析与优化设计;海洋环境下的结构健康监测与评估技术;海洋工程全生命周期风险识别与管理;海洋工程行业标准与规范发展)
 
Summary:
Amidst the increasingly urgent context of global climate change and growing demands for marine resource development, Ocean engineering is undergoing a significant transformation towards intelligentization and greenization, rapidly expanding into polar and deep-sea regions. This session targets ocean engineering researchers, ship design engineers, maritime technical personnel, and environmental policy makers, focusing on cutting-edge technological breakthroughs in offshore, coastal, polar, and deep-sea engineering. By gathering international scholars and industry experts, participants will gain the latest insights into smart ocean technologies, green energy, and advanced materials, collectively exploring how to address engineering challenges in complex marine environments and promote sustainable development of marine resource exploitation.
 
在全球气候变化与海洋资源开发需求日益紧迫的背景下,海洋工程正经历智能化与绿色化的重大转型并快速向极地和深海拓展。本分会面向海洋工程研究人员、船舶设计工程师、海事技术人员及环保政策制定者,聚焦近岸、离岸、极地及深海工程的前沿技术突破。通过汇集国际资深学者与产业专家,参会者将获得关于智慧海洋技术、绿色能源及先进材料等领域的最新洞察,共同探讨如何应对复杂海洋环境的工程挑战并推动海洋资源开发的可持续发展。