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.
Ship structural design depends heavily on accurately predicting the extreme loads vessels may experience throughout their service life. Ongoing debate around the application of extreme value theory highlights concerns that commonly used statistical approaches may overestimate the frequency of severe wave-induced loads, raising important questions about reliability assessment, safety margins, and the foundations of modern ship strength standards.
Reducing underwater radiated noise is emerging as an important environmental and operational challenge for commercial shipping. Industry discussion highlights growing evidence that a relatively small proportion of vessels contribute a disproportionate share of noise pollution, while advances in propeller design, cavitation control, and energy-saving technologies offer promising opportunities to improve both acoustic performance and propulsion efficiency.
Quantum technologies are poised to transform naval capability across communications, navigation, sensing, and targeting. Offering unprecedented precision, resilience, and decision-making advantages, these emerging systems could enhance combat effectiveness while reducing operational vulnerabilities. The technology’s potential spans entire fleets, presenting strategic opportunities and new design considerations for future warships worldwide tomorrow.
Digital twin creation for existing industrial assets is advancing through automated scanning and object recognition technologies. Integrated with established engineering platforms, the approach transforms physical facilities into usable digital models, improving visualization, assessment, and lifecycle management. Practical deployments demonstrate scalable implementation while highlighting future opportunities for smarter manufacturing and operations.
Industry 4.0 is redefining shipbuilding through integrated digital ecosystems that connect CAD, simulation, digital twins, artificial intelligence, extended reality, IoT, secure data sharing, and additive manufacturing. By linking design, production, operation, and decommissioning, the approach promises end-to-end lifecycle optimisation, greater collaboration, improved traceability, and smarter shipyard transformation worldwide today ahead.
Friction stir welding is advancing toward steel ship construction and repair, overcoming long-standing tool durability challenges at temperatures above 900°C. Proven in aluminium safety-critical structures and capable of underwater operation, the technology promises stronger, lower-distortion welds, improved fatigue performance, and new opportunities for efficient marine manufacturing and maintenance worldwide today.
Integrated experimental and CFD investigations are strengthening submarine hydrodynamic design. Examining hull-form parameters, surface resistance, towing methods, pressure distributions and wave formation, researchers compared model tests with numerical predictions and found strong correlation. The work improves confidence in powering assessments, performance evaluation, and efficient submarine development decisions going forward globally.
Floating shipyards could redefine maritime repair by taking drydock services directly to vessels. The self propelled F Yard concept combines mobile maintenance capabilities, voyage based repair opportunities, and diversified industrial applications. By transforming traditional shipyard economics and logistics, it offers a bold vision for flexible marine infrastructure globally and beyond.
Hazardous materials management is becoming central to responsible ship lifecycle governance. Regulations require identification, inventory tracking, controlled removal, and environmentally sound disposal of substances such as asbestos throughout a vessel’s service life and recycling phase. The framework strengthens worker safety, environmental protection, regulatory compliance, and sustainable ship recycling practices globally.
Next-generation CAD-PLM interoperability is advancing beyond simple integration toward seamless real-time collaboration across ship design and lifecycle management. By enabling intuitive bidirectional data exchange, the approach improves productivity, reduces errors, supports digitalisation, and ensures engineering information remains accessible and consistent throughout construction, operation, and future vessel evolution worldwide today ahead.
Drop testing remains a critical benchmark for validating high-speed craft structural integrity. Combining CFD-based hydrodynamic load prediction with finite-element optimisation, engineers assessed an 11m patrol RIB’s response to impact loads. Findings clarify relationships between rule-based requirements, real-world testing, and reinforcement strategies, enabling safer designs, improved certification confidence, reduced risk, overall.
Emerging technologies are transforming maritime search and rescue, from remotely piloted vehicles and intelligent alerting systems to automated communications and advanced target recognition. Through international collaboration, rescue organizations are leveraging innovation to improve response effectiveness, protect crews, reduce environmental impact, and ultimately help save more lives at sea worldwide today.
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