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

Transactions

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

Transactions

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

EVALUATING KEY RISK FACTORS AFFECTING CARGO DAMAGES ON EXPORT OPERATIONS FOR CONTAINER CARRIERS IN TAIWAN

Transactions

By WJ Tseng JF Ding YC Chen

Publication Date: 2018-10-01 Edition Issue: IJME Vol 160 A4.510 Publication Year: 2018 Publication Type: Paper

Reducing cargo damage remains a key priority for container shipping operators seeking to improve reliability and customer confidence. Risks associated with cargo declaration, packaging, securing arrangements and documentation continue to influence export operations, highlighting the importance of robust risk management practices and stronger coordination across the maritime logistics chain.

Detail Link: EVALUATING KEY RISK FACTORS AFFECTING CARGO DAMAGES ON EXPORT OPERATIONS FOR CONTAINER CARRIERS IN TAIWAN

ESTIMATION OF HYDRODYNAMIC COEFFICIENTS OF A NONLINEAR MANOEUVRING MATHEMATICAL MODEL WITH FREE-RUNNING SHIP MODEL TESTS

Transactions

By H Xu M A Hinostroza C Guedes Soares

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.448 Publication Year: 2018 Publication Type: Paper

Advanced modelling and system-identification techniques are improving the accuracy of ship manoeuvring predictions. By combining free-running model testing, global optimisation and data-driven parameter estimation, the approach enhances understanding of vessel dynamics, supporting more reliable guidance and control systems while enabling greater confidence in simulation-based ship design and operational analysis.

Detail Link: ESTIMATION OF HYDRODYNAMIC COEFFICIENTS OF A NONLINEAR MANOEUVRING MATHEMATICAL MODEL WITH FREE-RUNNING SHIP MODEL TESTS

THE ASSESSMENT OF MARITIME SAFETY IN THE TURKISH STRAITS BASED ON THE PERFORMANCE OF FLAG STATES IN PORT STATE CONTROL REGIMES

Transactions

By E G Emecen Kara

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.466 Publication Year: 2018 Publication Type: Paper

Maritime safety in the Turkish Straits remains a critical concern, shaped by intense vessel traffic, complex navigational conditions and the potential consequences of sub-standard shipping. Risk-based assessment of flag-state performance offers valuable insight into safety trends, supporting more informed oversight, environmental protection and risk mitigation in one of the world's busiest waterways.

Detail Link: THE ASSESSMENT OF MARITIME SAFETY IN THE TURKISH STRAITS BASED ON THE PERFORMANCE OF FLAG STATES IN PORT STATE CONTROL REGIMES

DANGERS ARISING FROM APPLICATION OF THE PROBABILISTIC METHOD (AS INCLUDED IN SOLAS 2009 Ch.II-1) TO MEASURING LEVEL OF SAFETY OF CARGO SHIPS

Transactions

By P S Szulczewski

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.469 Publication Year: 2018 Publication Type: Paper

Probabilistic approaches are increasingly used to assess ship safety, yet confidence in their outputs depends on the assumptions and methods employed. Questions surrounding risk modelling, damage survivability and safety indices highlight the importance of robust evaluation frameworks, ensuring that critical hazards are not overlooked and that safety decisions remain well informed.

Detail Link: DANGERS ARISING FROM APPLICATION OF THE PROBABILISTIC METHOD (AS INCLUDED IN SOLAS 2009 Ch.II-1) TO MEASURING LEVEL OF SAFETY OF CARGO SHIPS

PREDICTION OF HYDRODYNAMIC PERFORMANCE OF 3-D WIG BY IBEM

Transactions

By S Bal

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.475 Publication Year: 2018 Publication Type: Paper

Wing-in-ground-effect vehicles offer a promising combination of speed and efficiency by harnessing aerodynamic interactions close to the water surface. Advanced boundary-element modelling is improving understanding of lift, drag and vehicle geometry effects, supporting more effective design optimisation and helping unlock the potential of next-generation high-performance marine transportation systems.

Detail Link: PREDICTION OF HYDRODYNAMIC PERFORMANCE OF 3-D WIG BY IBEM

Technical Note: VIRTUAL HULL MONITORING: CONTINUOUS FATIGUE ASSESSMENT WITHOUT ADDITIONAL INSTRUMENTATION

Transactions

By I M Thompson

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.479TN Publication Year: 2018 Publication Type: Paper

Digital technologies are opening new possibilities for fleet-wide structural health monitoring without extensive onboard instrumentation. By combining vessel position data, wave information and stress-response models, virtual hull monitoring offers a scalable approach to tracking fatigue and structural loads, supporting proactive maintenance, improved asset management and enhanced operational reliability.

Detail Link: Technical Note: VIRTUAL HULL MONITORING: CONTINUOUS FATIGUE ASSESSMENT WITHOUT ADDITIONAL INSTRUMENTATION

REINFORCEMENT OF AGEING SHIP STRUCTURES

Transactions

By D Chichì Y Garbatov

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.482 Publication Year: 2018 Publication Type: Paper

Corrosion and structural openings can significantly reduce the load-carrying capacity of critical ship structures. Advanced finite-element modelling, reinforced with probabilistic corrosion simulation, highlights practical strengthening strategies that restore structural performance while balancing weight and cost considerations, supporting more effective maintenance planning and longer service life for ageing marine assets.

Detail Link: REINFORCEMENT OF AGEING SHIP STRUCTURES

COUPLED RANSE AND LIFTING LINE THEORY FOR ESTIMATION OF SHIP PROPULSION FACTORS

Transactions

By K Ramesh I S Makkar

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.485 Publication Year: 2018 Publication Type: Paper

Advances in CFD and coupled hydrodynamic modelling are enhancing the prediction of ship resistance and propulsion performance during the early design stages. Integrating RANSE simulations with lifting-line theory enables more informed propeller assessment and optimisation, supporting improved propulsive efficiency, reduced design uncertainty and more effective development of future vessel concepts.

Detail Link: COUPLED RANSE AND LIFTING LINE THEORY FOR ESTIMATION OF SHIP PROPULSION FACTORS

LIGHTSHIP WEIGHT ESTIMATION OF WIND FARM SUPPORT VESSELS AT THE INITIAL DESIGN STAGE

Transactions

By O V Bondarenko

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.486 Publication Year: 2018 Publication Type: Paper

Accurate lightship weight estimation is essential to the efficient design and performance of wind farm support vessels. Parametric modelling, 3D design techniques and statistical analysis are improving the prediction of structural and machinery weights, enabling more reliable early-stage design decisions and supporting the growing demands of the offshore renewable energy sector.

Detail Link: LIGHTSHIP WEIGHT ESTIMATION OF WIND FARM SUPPORT VESSELS AT THE INITIAL DESIGN STAGE

SHIP MANOEUVRING PREDICTION BASED ON NUMERICAL TOWING TANK TECHNIQUE

Transactions

By J Yao X Cheng Z Liu

Publication Date: 2018-07-01 Edition Issue: IJME Vol 160 A3.493 Publication Year: 2018 Publication Type: Paper

Improving the prediction of ship manoeuvrability is increasingly dependent on the integration of advanced simulation and hydrodynamic modelling techniques. Combining CFD-derived hydrodynamic coefficients with manoeuvring models enables more accurate assessment of vessel handling characteristics, supporting safer operations, reduced design risk and greater confidence in performance evaluation during the design process.

Detail Link: SHIP MANOEUVRING PREDICTION BASED ON NUMERICAL TOWING TANK TECHNIQUE

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