The Naval Architect provides in-depth information on all aspects of vessel design, construction and engineering. Practical applications of latest technology and case studies are accompanied by analysis and foresights. Published every two months, the magazine covers everything from superyachts and short-hop ferries to tankers and heavy-lift vessels; from battery pack installations and sail-assisted solutions to LNG tank retrofits; and from offshore safety to warship resilience.
As maritime decarbonisation accelerates, questions are emerging over whether today’s Carbon Intensity Indicator can align with future well-to-wake emissions frameworks. Drawing on operational performance experience, this analysis explores regulatory redesign options, lifecycle assessment implications and the strategic trade-offs that could reshape compliance, fuel selection and efficiency in the years ahead.
Current carbon intensity measures can conflict with real-world operational needs, sometimes incentivising higher emissions rather than genuine reductions. By examining the gap between engineering assumptions and vessel operations, this analysis highlights critical flaws in existing metrics and makes the case for more holistic performance frameworks that better support decarbonisation goals.
Wind propulsion is emerging as a practical pathway to maritime decarbonisation, even for vessels operating on unpredictable routes. Analysis of wing sail performance shows fuel-saving estimates remain remarkably reliable over time, reducing uncertainty for shipowners and strengthening the business case for wider adoption of wind-assisted propulsion technologies.
Wind-Assisted Ship Propulsion can improve carbon intensity performance, but achieving predicted savings requires more than favourable wind conditions. Using holistic simulation and LNG carrier case studies, this research reveals how voyage planning, propulsion integration and wind management interact, providing practical strategies to optimise CII performance and maximise operational efficiency.
A credible carbon intensity framework depends as much on data quality as emissions performance. Survey and verifier insights expose weaknesses in voyage definitions, reporting transparency and validation processes, while highlighting support for alternative efficiency metrics. The findings point toward more trusted, actionable carbon measures that better incentivise operational change globally.
Kowa Marine’s collaboration with NAPA demonstrates how integrated digital and operational technologies can improve Carbon Intensity Indicator performance. Combining voyage optimisation, trim analytics and performance monitoring with Blue Visby arrival coordination, the approach delivers measurable fuel and emissions reductions while highlighting the strategic value of data-driven maritime decarbonisation initiatives today.
bound4blue’s eSAIL® technology demonstrates how wind-assisted propulsion can deliver measurable decarbonisation gains in existing fleets. Through advanced modelling of vessel dynamics and aerodynamic performance, the retrofit shows substantial fuel and CO₂ reductions, improved Carbon Intensity Indicator ratings and a practical pathway for meeting increasingly stringent environmental requirements.
Accurately measuring ship energy efficiency remains a major challenge as fuel consumption data often varies significantly between voyages. A new Energy Efficiency Navigational Index, combined with stochastic modelling and operational analytics, offers a more reliable evaluation framework, demonstrating measurable gains from weather routing and providing deeper insight into performance improvement opportunities.
Maritime Internet of Things technologies are enabling a new era of energy management through precise fuel monitoring, emissions measurement and real-time data acquisition. By integrating flow meters, continuous emissions monitoring and advanced reporting systems, operators can optimise performance, support regulatory compliance and unlock data-driven pathways to sustainability and operational efficiency.
Biofouling management is increasingly central to maritime decarbonisation, with hull condition directly influencing fuel consumption, emissions and Carbon Intensity Indicator performance. By evaluating antifouling technologies, in-water cleaning practices and environmental impacts, this research highlights the trade-offs between operational efficiency and ecosystem protection, guiding more balanced and sustainable vessel management strategies.
As autonomous vessels move toward larger platforms and international operations, traditional oversight models must evolve. Focusing on Port State Control, this analysis examines emerging inspection frameworks, guidance development and operational challenges spanning cybersecurity, remote operations and vessel access, highlighting the regulatory adaptations required to support safe, scalable maritime autonomy.
As autonomous vessels become more capable, human factors remain critical to safety and operational success. Examining defence applications, this research explores autonomy levels, function allocation and human-machine relationships. Findings highlight the cultural, organisational and engineering changes needed to build trust, resilience and effective oversight in highly autonomous maritime systems ahead.
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