Ship Repair & Maintenance is a window into vessel lifecycle management, focusing on the latest technical advancements, regulatory requirements, and best practices in maintenance and repair operations.
Topics such as condition-based and predictive maintenance, hull integrity, corrosion control and propulsion system overhauls will be explored, in addition to the application of digital tools in maintenance diagnostics and planning. Ship Repair & Maintenance will also follow market trends and the distribution of work across the world.
Growing demand for offshore accommodation is driving the development of increasingly specialised floating hotel concepts, tailored to environments ranging from sheltered coastal locations to deep-water energy developments. Emerging designs are placing greater emphasis on operability, comfort, and cost efficiency, reflecting the expanding role of floating accommodation in offshore industry, infrastructure, and maritime development.
Understanding the stability of high-speed marine vehicles that rely on aerodynamic lift remains a critical challenge as designers explore alternative concepts for fast and efficient over-water transport. Improved insight into the interaction between vehicle geometry, operating conditions, and surface effects is helping to refine stability assessments, supporting the development of safer and more effective ground-effect and air-cushioned marine platforms.
Effective ballast water management is becoming increasingly important as regulators and operators seek to prevent the spread of invasive aquatic species through global shipping networks. Experience from land-based testing is highlighting the importance of consistent testing procedures and facility configurations, demonstrating how variations in test conditions can influence system performance assessments and regulatory compliance outcomes.
Understanding the slamming behaviour of high-speed catamarans remains essential as operators seek to balance performance, structural integrity, and passenger comfort in demanding sea conditions. Enhanced knowledge of the relationship between vessel motions, wave conditions, and impact loads is supporting more accurate prediction of slamming events, helping to improve design methods and operational guidance for large wave-piercing catamarans.
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