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.
Rudder reliability remains a critical aspect of sailing yacht safety, with structural failure carrying the potential for serious consequences to vessel control and survivability. Growing scrutiny of rudder design practices is highlighting the importance of realistic load assessment, material selection, and safety margins, reinforcing the need for robust engineering approaches that accurately reflect the demands encountered during real-world operation.
The cyclical nature of container shipping continues to challenge operators, particularly during periods of prolonged overcapacity and weakened demand. Growing focus on fleet-management strategies is encouraging more structured approaches to capacity adjustment, with operational measures such as vessel lay-up, slow steaming, and fleet renewal playing an important role in restoring market balance and improving resilience during downturns.
Safety culture is increasingly recognised as a fundamental component of maritime safety, extending beyond technical compliance to encompass human performance, organisational practices, and workforce wellbeing. Growing awareness of the links between workload, fatigue, mental health, and operational outcomes is driving efforts to strengthen safety management frameworks, with greater emphasis on effective procedures, fatigue mitigation, and organisational support to enhance safety performance at sea.
Maintaining the condition of marine infrastructure is becoming increasingly important as ports seek to maximise asset life while ensuring safe and efficient operations. Growing use of practical condition-assessment methodologies and non-destructive testing techniques is improving the evaluation of reinforced concrete structures, supporting more effective maintenance planning and helping infrastructure owners prioritise repairs in demanding marine environments.
As autonomous high-speed craft become more capable and operate in increasingly demanding environments, maintaining seaworthiness and protecting onboard systems from excessive motions is a growing challenge. Advances in predictive control technologies that adapt vessel behaviour to anticipated sea conditions are enhancing operational safety, improving performance, and supporting more reliable deployment of autonomous marine platforms.
Wind-assisted propulsion technologies are attracting renewed interest as the shipping industry seeks practical and scalable pathways to reduce fuel consumption and greenhouse gas emissions. Growing operational experience with modern Flettner rotor systems is demonstrating their potential to enhance vessel efficiency, with full-scale performance data supporting wider adoption as part of the transition towards lower-emission maritime transport.
The increasing complexity, cost, and performance demands of offshore developments are driving the need for more rigorous approaches to concept selection during the earliest stages of project development. Greater emphasis on multidisciplinary optimisation and quantitative decision-making is encouraging the use of advanced design exploration techniques that can simultaneously consider technical performance, safety, and economic viability, supporting more informed selection of floating system concepts.
Digital transformation is reshaping shipbuilding and marine engineering, creating new opportunities to improve design efficiency, information management, and lifecycle integration. Emerging technologies such as digital twins, data-centric models, immersive visualisation, and intelligent human-machine interfaces are redefining how vessels are designed, constructed, and operated, supporting more connected, responsive, and efficient maritime processes.
This is the Whole Conference Proceedings for: Autonomous Ships, 31st March - 1st April 2022, National Maritime Museum, Greenwich, London, United Kingdom
Structural reliability is a fundamental consideration in the long-term safety and performance of marine structures, particularly as corrosion progressively reduces load-carrying capacity throughout a vessel’s service life. Increasing emphasis on reliability-based design and assessment methods is improving understanding of the combined effects of material degradation, uncertainties, and inspection practices, supporting more informed maintenance strategies and enhanced structural integrity management.
Safe and effective anchoring remains a fundamental aspect of small-vessel operation, with anchor cable loads strongly influenced by environmental conditions and anchoring configuration. Improved understanding of the relationship between scope ratio, water depth, and wind loading is supporting more informed anchoring practices, helping vessel operators optimise holding performance, reduce anchor loads, and enhance safety during stationary operations.
Offshore construction vessels play a critical role in modern subsea field development, bridging the gap between offshore installations and the infrastructure required to construct, maintain, and operate them. As offshore operations move into deeper waters and become increasingly complex, vessel designers are adopting integrated, multipurpose solutions that combine pipelay, diving support, construction, and dynamic positioning capabilities. Growing emphasis on operational flexibility, equipment standardisation, survivability, and lifecycle efficiency is driving the development of advanced offshore construction vessel families that can meet diverse project requirements while delivering improved performance, reliability, and economic value.
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