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.
As ports face growing economic and competitive pressures, resilience is becoming a strategic concern rather than an operational afterthought. A structured decision-making framework highlights how policy reform, market adaptability, and targeted incentives can strengthen long-term performance, underscoring the increasingly important link between governance, competitiveness, and port sustainability.
Despite decades of safety improvements, marine accidents continue to expose the complexity of risk across modern shipping operations. Advanced decision-analysis techniques are enabling a more proactive understanding of accident causation, helping to untangle complex cause-and-effect relationships and supporting more informed strategies for preventing collisions and strengthening maritime safety performance.
As autonomous vessel control becomes more sophisticated, ensuring robust performance under real-world operating conditions remains a persistent challenge. A new approach to parameter selection combines manoeuvring knowledge with closed-loop design principles, narrowing uncertainty and strengthening stability, with results pointing to more reliable and resilient ship steering systems.
Navigating confined and shallow waterways remains as much an operational challenge as a scientific one. Diverging views on how vessels respond to reduced water depth and nearby banks continue to shape industry practice, highlighting persistent uncertainty around manoeuvrability, steering behaviour, and hydrodynamic effects with significant implications for navigation safety and simulation fidelity.
Understanding how offshore structures respond to wave-induced motion remains central to efficient and reliable marine design. Advanced numerical modelling of oscillating cylinders with damping plates reveals how geometry influences hydrodynamic behaviour across operating conditions, demonstrating the growing role of high-fidelity simulation in optimising motion control and validating complex fluid interactions.
Flooding incidents remain a critical challenge for vessel safety, where rapid understanding of water ingress can determine the outcome of an emergency. New investigation into discharge behaviour reveals that commonly used assumptions may not adequately reflect real conditions, raising important questions for damage assessment, stability management, and environmental protection strategies.
As maritime infrastructure becomes increasingly interconnected, resilience is emerging as a strategic priority alongside safety and security. The growing complexity of stakeholder networks, operational dependencies, and evolving threat landscapes is exposing new vulnerabilities, reinforcing the need for more adaptive risk governance and resilience-focused approaches to safeguarding critical maritime operations.
As gas turbines become increasingly important to marine propulsion and other critical industries, improving maintenance decision-making is essential for controlling cost and operational risk. Advanced fuzzy multi-criteria assessment techniques offer a more structured approach to uncertainty, highlighting the components most likely to influence reliability, performance, and long-term asset management strategies.
Controlling vibration remains a persistent challenge in marine and industrial drivetrain systems, where torsional oscillations can affect reliability, efficiency, and equipment life. An emerging self-regulating pneumatic coupling concept offers a new approach to system tuning, highlighting the potential for adaptive mechanical solutions to manage dynamic loads and improve operational performance.
In a highly competitive shipbuilding market, workforce capability is becoming a key source of competitive advantage. A structured approach to welder selection highlights the skills and attributes most valued by shipyards, underscoring how talent evaluation, workmanship quality, and targeted skills development can strengthen productivity, quality performance, and long-term industry competitiveness.
As lightweight, high-performance structures become increasingly important across maritime and aerospace sectors, optimisation is reshaping how engineers address strength and stability challenges. Advances in buckling and post-buckling design methods are revealing new opportunities to maximise structural efficiency, while highlighting the complex trade-offs that continue to define next-generation stiffened panel development.
As cruise operators face mounting pressure to improve efficiency and reduce emissions, smarter power management is becoming a strategic priority. Combining electrical load modelling with operational data reveals opportunities to optimise diesel-generator performance, uncover hidden inefficiencies, and enhance energy utilisation, supporting more sustainable and cost-effective ship operations.
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