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. 

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Transactions

INTERNATIONAL DEVELOPMENT AND VALIDATION OF A DISTRIBUTED SIMULATION FOR NAVAL SHIP REPLENISHMENT AT SEA

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By K McTaggart D Tozzi G Henry F Valdenazzi N Stuntz

Publication Date: 2019-01-01 Edition Issue: IJME Vol 161 A1.514 Publication Year: 2019 Publication Type: Paper

How can allied navies accurately model one of maritime operations’ most demanding tasks? A multinational team built and validated a distributed HLA-based simulation capturing seaway conditions, ship interactions and payload transfer dynamics. Proven against experimental data, the platform delivers valuable insights for system integration, operational planning and future naval capability development.

Detail Link: INTERNATIONAL DEVELOPMENT AND VALIDATION OF A DISTRIBUTED SIMULATION FOR NAVAL SHIP REPLENISHMENT AT SEA

STATIC CONTROL OF DRAG-REDUCING AIR CAVITIES WITH VARIABLE CAVITATOR SHAPE

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By K I Matveev

Publication Date: 2019-01-01 Edition Issue: IJME Vol 161 A1.516 Publication Year: 2019 Publication Type: Paper

Air-cavity drag reduction is moving closer to practical deployment through research linking cavity performance to controllable hydrodynamic actuators and wedge-shaped cavitators. Using potential-flow modelling, new insights into optimal operating conditions reveal how flow speed and hull trim influence efficiency gains, supporting more energy-efficient ship designs.

Detail Link: STATIC CONTROL OF DRAG-REDUCING AIR CAVITIES WITH VARIABLE CAVITATOR SHAPE

THE RE-DESIGN OF A MARINE ENGINE ROOM SIMULATOR IN CONSIDERATION TO ERGONOMICS DESIGN PRINCIPLES

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By G Kocak

Publication Date: 2019-01-01 Edition Issue: IJME Vol 161 A1.517 Publication Year: 2019 Publication Type: Paper

How can simulator design influence engineering competence? By applying ergonomic principles to a full-mission engine room simulator, a redesigned mimic panel improved realism, usability and training effectiveness. The experience highlights how human-centred design can enhance operational learning environments and strengthen the quality of marine engineering education and professional preparedness.

Detail Link: THE RE-DESIGN OF A MARINE ENGINE ROOM SIMULATOR IN CONSIDERATION TO ERGONOMICS DESIGN PRINCIPLES

THE SOPHISTICATION OF EARLY STAGE DESIGN FOR COMPLEX VESSELS

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By D Andrews

Publication Date: 2018-12-01 Edition Issue: IJME Special Edition Publication Year: 2018 Publication Type: Paper

Early-stage design decisions continue to shape the cost, capability and long-term success of complex naval and specialist vessels. As digital tools enable the rapid generation of design alternatives, greater emphasis is being placed on more holistic concept exploration, helping manage risk, address emerging requirements and improve outcomes across the ship design lifecycle.

Detail Link: THE SOPHISTICATION OF EARLY STAGE DESIGN FOR COMPLEX VESSELS

Discussion: THE SOPHISTICATION OF EARLY STAGE DESIGN FOR COMPLEX VESSELS

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By C Betts

Publication Date: 2018-12-01 Edition Issue: IJME Special Edition Publication Year: 2018 Publication Type: Paper

Early-stage ship design remains central to the successful development of complex naval and specialist vessels. Ongoing debate around requirements definition, design complexity, systems engineering and concept exploration highlights the value of holistic, collaborative design approaches that balance capability, risk and affordability while shaping more effective and adaptable solutions for future maritime operations.

Detail Link: Discussion: THE SOPHISTICATION OF EARLY STAGE DESIGN FOR COMPLEX VESSELS

EFFECTS OF MARINE CONDITION ON THE SPEED AND FUEL CONSUMPTION OF A FULLY - LOADED VLCC

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By H Hakimzadeh M A Badri M Torabi Azad F Azarsina M Ezam

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.489 Publication Year: 2018 Publication Type: Paper

Fuel consumption remains a critical focus for ship operators seeking greater efficiency in varying sea conditions. Analysis of operational voyage data reveals how wind, waves and vessel heading influence speed loss and performance, providing a practical foundation for improved fuel-use forecasting, voyage planning and more cost-effective fleet management.

Detail Link: EFFECTS OF MARINE CONDITION ON THE SPEED AND FUEL CONSUMPTION OF A FULLY - LOADED VLCC

RISK ASSESSMENT MODEL OF COASTAL SEA POLLUTION BY BLACK (SEWAGE) WATERS FROM VESSELS

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By Ž Koboević Ž Kurtela N Koboević

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.496 Publication Year: 2018 Publication Type: Paper

Environmental protection in coastal waters requires risk assessments that capture the complexity of vessel operations and local sensitivities. Pollution threats from ship discharges are shaped by vessel characteristics, treatment capabilities and location-specific factors, making robust risk evaluation increasingly important for safeguarding marine ecosystems, public health and coastal economic activities.

Detail Link: RISK ASSESSMENT MODEL OF COASTAL SEA POLLUTION BY BLACK (SEWAGE) WATERS FROM VESSELS

PERFORMANCE PREDICTION OF A 112M WAVE-PIERCING CATAMARAN

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By E Kay J Lavroff M R Davis

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.498 Publication Year: 2018 Publication Type: Paper

Accurately predicting the power requirements of high-speed catamarans remains a critical challenge for designers seeking performance, efficiency and operational certainty. Strong correlation between model-scale testing and full-scale vessel performance reinforces the strategic value of proven extrapolation methods, supporting more reliable design decisions and greater confidence in powering assessments for advanced fast-ferry concepts.

Detail Link: PERFORMANCE PREDICTION OF A 112M WAVE-PIERCING CATAMARAN

DRY-DOCKING TIME AND LABOUR

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By A K Dev M Saha

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.499 Publication Year: 2018 Publication Type: Paper

Dry-docking efficiency remains a critical commercial consideration for both shipowners and shipyards. Better understanding of how vessel size, age and type influence maintenance time and labour requirements can support more accurate planning, reduce operational costs and improve resource utilisation, helping organisations maximise availability while minimising time spent out of service.

Detail Link: DRY-DOCKING TIME AND LABOUR

AN APPLICATION OF MACHINE LEARNING TO SHIPPING EMISSION INVENTORY

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By T Fletcher V Garaniya S Chai R Abbassi H Yu T C Van R J Brown F Khan

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.500 Publication Year: 2018 Publication Type: Paper

Maritime decarbonisation and air-quality management increasingly depend on accurate emission measurement and forecasting. Machine learning is emerging as a powerful tool for enhancing shipping emission inventories, improving the estimation of vessel-generated pollutants across different operating conditions and supporting more informed environmental reporting, regulatory compliance and emissions-reduction strategies.

Detail Link: AN APPLICATION OF MACHINE LEARNING TO SHIPPING EMISSION INVENTORY

FULL-SCALE MEASUREMENTS OF WELDING-INDUCED INITIAL DEFLECTIONS AND RESIDUAL STRESSES IN STEEL-STIFFENED PLATE STRUCTURES

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By M S Yi C M Hyun J K Paik

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.504 Publication Year: 2018 Publication Type: Paper

Structural integrity in ships and offshore assets is heavily influenced by welding-induced distortions and residual stresses that can affect long-term strength and stability. Expanding full-scale measurement data and validation capabilities is becoming increasingly important for improving predictive models, reducing design uncertainty and supporting more reliable assessment of welded marine structures.

Detail Link: FULL-SCALE MEASUREMENTS OF WELDING-INDUCED INITIAL DEFLECTIONS AND RESIDUAL STRESSES IN STEEL-STIFFENED PLATE STRUCTURES

AN OPTIMIZED ENERGY-EFFICIENT PATH FOLLOWING ALGORITHM FOR UNDERACTUATED MARINE SURFACE SHIP MODEL

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By H Xu C Guedes Soares

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.505 Publication Year: 2018 Publication Type: Paper

Energy-efficient navigation is becoming an increasingly important objective as ship operators seek to reduce fuel consumption without compromising performance. Combining advanced guidance algorithms, predictive vessel modelling and optimisation techniques enables more efficient path-following behaviour, supporting lower energy use, improved operational efficiency and smarter decision-making for future autonomous and conventionally operated vessels.

Detail Link: AN OPTIMIZED ENERGY-EFFICIENT PATH FOLLOWING ALGORITHM FOR UNDERACTUATED MARINE SURFACE SHIP MODEL

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