Power & Sustainability explores the future of sustainable energy within the maritime sector, providing our members with insights and discussion on emerging technologies, practical solutions and policy developments.
You can expect topics such as renewable energy innovations, energy efficiency strategies and alternative fuels.
Understanding how people maintain balance at sea is proving more complex than traditional safety assumptions suggest. Controlled motion-platform testing reveals that stepping is a common and proactive response to vessel movement rather than a last resort, highlighting important implications for human-performance modelling, workplace safety, and the design of maritime operating environments.
As emissions regulations tighten and pressure grows to improve air quality from shipping, alternative approaches to engine emissions control are gaining attention. Advanced modelling of direct ammonia injection demonstrates significant potential for NOx reduction, highlighting both the promise and operational complexity of emerging in-cylinder emissions technologies for future marine propulsion systems.
Structural efficiency remains a central challenge in marine engineering, where grillage systems must withstand complex combinations of bending and compression loads. A new analytical approach simplifies the prediction of structural behaviour and buckling response, achieving strong agreement with finite-element analysis while offering a practical framework for assessing strength, stability, and load transfer in reinforced structures.
As vessels operate closer to critical speed regimes, understanding wave generation becomes increasingly important for efficiency, performance, and environmental impact. Revisiting classic wave-pattern theory with modern numerical techniques provides fresh insight into how deep- and shallow-water wave fields evolve, revealing the distinctive behaviours that emerge near critical operating conditions and their influence on wake characteristics.
Human factors have long been recognised as a major contributor to maritime accidents, yet translating that understanding into ship design remains an ongoing challenge. Analysis of regulations, standards, and design guidance reveals widespread recognition of human-centred design principles, while highlighting gaps in consistency and enforcement that continue to limit their practical adoption across the industry.
As shipbuilding moves toward greater automation and precision, digital approaches are transforming traditional plate-forming processes. By combining thermo-mechanical simulation with experimental validation, advanced line-heating models can accurately predict deformation and residual stresses, supporting automated manufacturing, improved forming accuracy, and more consistent production outcomes in modern shipyards.
As shipbuilding and offshore fabrication projects grow in scale and complexity, success increasingly depends on managing coordination across diverse stakeholders, disciplines, and project phases. By examining lessons from manufacturing and major engineering programmes, this work highlights the value of more integrated, systems-level approaches to improve communication, adaptability, and overall project performance.
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