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.
Wind-assisted propulsion could help tackle a lesser-known environmental challenge: underwater radiated noise. By combining renewable sail technologies with conventional propulsion, this analysis explores how vessel speed, cavitation, and noise emissions interact. The findings reveal opportunities to protect marine ecosystems while advancing decarbonisation, operational efficiency, and sustainable shipping worldwide today ahead.
Advanced CFD and machine learning are accelerating adoption of wind-assisted propulsion across commercial shipping. Through validated simulations, uncertainty analysis and AI-driven wing trim optimisation the work demonstrates how digital engineering can improve performance prediction, support EEXI and EEDI compliance, reduce emissions and de-risk investment in innovative vessel technologies today worldwide.
A major industry collaboration is advancing standards for wind-assisted shipping by improving the accuracy of performance and manoeuvring predictions. Building on the WiSP Joint Industry Project, researchers are developing methodologies that could influence future regulations and design practices, helping operators deploy wind propulsion technologies with greater confidence, safety, efficiency worldwide.
Evaluating wind-assisted propulsion systems requires a holistic view beyond headline aerodynamic performance figures. While fuel-saving claims often focus on lift and thrust generation, factors such as vessel stability, heeling limits, added weight, displacement penalties, and ballasting requirements can significantly influence real-world effectiveness. This analysis highlights how operational and regulatory considerations may alter the comparative ranking of wind propulsion technologies, offering a more practical framework for assessing suitability across different ship types and investment scenarios.
Wind propulsion systems promise major emissions reductions, but their influence extends beyond fuel savings. Using time-domain simulations, researchers evaluate manoeuvring, seakeeping, control-system behaviour, and crew interaction from early design onwards. The approach provides critical insight into vessel safety, operational performance, and training requirements, supporting more informed deployment decisions globally today.
As maritime wind propulsion technologies proliferate, the industry faces a growing need for consistent performance measures. This analysis examines emerging key performance indicators for assessing energy-saving potential across different systems, highlighting the challenges of fair comparison and transparent reporting. The proposed framework could support standardisation, accelerate investment decisions, and strengthen confidence in wind-assisted shipping solutions.
Wind propulsion reached a pivotal moment in 2022, gaining commercial momentum as shipowners pursued ambitious emissions targets. Beyond fuel savings, the sector is benefiting from advances in composite materials, drawing lessons from aerospace, automotive, and renewable energy industries. The convergence of regulatory pressure, operational efficiency, and material innovation is accelerating wind-assisted shipping’s transition from niche technology to mainstream maritime solution.
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