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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MODELLING THE HEAVE OSCILLATIONS OF VERTICAL CYLINDERS WITH DAMPING PLATES

Transactions

By A Lavrov C Guedes Soares

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.365 Publication Year: 2016 Publication Type: Paper

Understanding how offshore structures respond to wave-induced motion remains central to efficient and reliable marine design. Advanced numerical modelling of oscillating cylinders with damping plates reveals how geometry influences hydrodynamic behaviour across operating conditions, demonstrating the growing role of high-fidelity simulation in optimising motion control and validating complex fluid interactions.

Detail Link: MODELLING THE HEAVE OSCILLATIONS OF VERTICAL CYLINDERS WITH DAMPING PLATES

EXPERIMENTAL INVESTIGATION INTO FACTORS AFFECTING THE TRANSIENT FLOW OF FLUID THROUGH AN ORIFICE IN REALISTIC CONDITIONS

Transactions

By C D Wood D A Hudson M Tan A J Sobey Y Wang

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.367 Publication Year: 2016 Publication Type: Paper

Flooding incidents remain a critical challenge for vessel safety, where rapid understanding of water ingress can determine the outcome of an emergency. New investigation into discharge behaviour reveals that commonly used assumptions may not adequately reflect real conditions, raising important questions for damage assessment, stability management, and environmental protection strategies.

Detail Link: EXPERIMENTAL INVESTIGATION INTO FACTORS AFFECTING THE TRANSIENT FLOW OF FLUID THROUGH AN ORIFICE IN REALISTIC CONDITIONS

SAFETY CRITICAL MARITIME INFRASTRUCTURE SYSTEMS RESILIENCE: A CRITICAL REVIEW

Transactions

By A John T C Nwaoha

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.369 Publication Year: 2016 Publication Type: Paper

As maritime infrastructure becomes increasingly interconnected, resilience is emerging as a strategic priority alongside safety and security. The growing complexity of stakeholder networks, operational dependencies, and evolving threat landscapes is exposing new vulnerabilities, reinforcing the need for more adaptive risk governance and resilience-focused approaches to safeguarding critical maritime operations.

Detail Link: SAFETY CRITICAL MARITIME INFRASTRUCTURE SYSTEMS RESILIENCE: A CRITICAL REVIEW

AN EVALUATION APPROACH FOR ELIMINATING THE FAILURE EFFECT IN GAS TURBINE USING FUZZY MULTIPLE CRITERIA

Transactions

By A Balin H Demirel F Alarçin

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.277 Publication Year: 2017 Publication Type: Paper

As gas turbines become increasingly important to marine propulsion and other critical industries, improving maintenance decision-making is essential for controlling cost and operational risk. Advanced fuzzy multi-criteria assessment techniques offer a more structured approach to uncertainty, highlighting the components most likely to influence reliability, performance, and long-term asset management strategies.

Detail Link: AN EVALUATION APPROACH FOR ELIMINATING THE FAILURE EFFECT IN GAS TURBINE USING FUZZY MULTIPLE CRITERIA

CONTINUOUS TUNING OF SHIP PROPULSION SYSTEM BY MEANS OF PNEUMATIC TUNER OF TORSIONAL OSCILLATION

Transactions

By J Homišin P Kaššay M Puškár R Grega J Krajňák M Urbanský M Moravič

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.378 Publication Year: 2016 Publication Type: Paper

Controlling vibration remains a persistent challenge in marine and industrial drivetrain systems, where torsional oscillations can affect reliability, efficiency, and equipment life. An emerging self-regulating pneumatic coupling concept offers a new approach to system tuning, highlighting the potential for adaptive mechanical solutions to manage dynamic loads and improve operational performance.

Detail Link: CONTINUOUS TUNING OF SHIP PROPULSION SYSTEM BY MEANS OF PNEUMATIC TUNER OF TORSIONAL OSCILLATION

INVESTIGATION OF WELDER SELECTION PARAMETERS BASED ON FUZZY ANALYTIC HIERARCHY PROCESS IN SHIPBUILDING

Transactions

By M Ozkok

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.384 Publication Year: 2016 Publication Type: Paper

In a highly competitive shipbuilding market, workforce capability is becoming a key source of competitive advantage. A structured approach to welder selection highlights the skills and attributes most valued by shipyards, underscoring how talent evaluation, workmanship quality, and targeted skills development can strengthen productivity, quality performance, and long-term industry competitiveness.

Detail Link: INVESTIGATION OF WELDER SELECTION PARAMETERS BASED ON FUZZY ANALYTIC HIERARCHY PROCESS IN SHIPBUILDING

BUCKLING AND POST-BUCKLING OF ISOTROPIC AND COMPOSITE STIFFENED PANELS: A REVIEW ON OPTIMISATION (2000-2015)

Transactions

By X-Y Ni B G Prusty A K Hellier

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.388 Publication Year: 2016 Publication Type: Paper

As lightweight, high-performance structures become increasingly important across maritime and aerospace sectors, optimisation is reshaping how engineers address strength and stability challenges. Advances in buckling and post-buckling design methods are revealing new opportunities to maximise structural efficiency, while highlighting the complex trade-offs that continue to define next-generation stiffened panel development.

Detail Link: BUCKLING AND POST-BUCKLING OF ISOTROPIC AND COMPOSITE STIFFENED PANELS: A REVIEW ON OPTIMISATION (2000-2015)

DECISION SUPPORT SYSTEM FOR POWER GENERATION MANAGEMENT FOR AN 110000+ GRT CRUISE SHIP

Transactions

By P Gualeni A Boveri F Silvestro A Margarita

Publication Date: 2016-07-01 Edition Issue: IJME Vol 158 A3.354 Publication Year: 2016 Publication Type: Paper

As cruise operators face mounting pressure to improve efficiency and reduce emissions, smarter power management is becoming a strategic priority. Combining electrical load modelling with operational data reveals opportunities to optimise diesel-generator performance, uncover hidden inefficiencies, and enhance energy utilisation, supporting more sustainable and cost-effective ship operations.

Detail Link: DECISION SUPPORT SYSTEM FOR POWER GENERATION MANAGEMENT FOR AN 110000+ GRT CRUISE SHIP

A COMPARISON OF EXPERIMENTAL AND NUMERICAL BEHAVIOUR CHARACTERISTICS OF A SHIP ENTERING A LOCK USING BENCHMARK TEST DATA

Transactions

By M Vantorre M Candries  G Delefortrie K Eloot J Verwilligen R Henn T Vergote O Lindberg A de Loor H-Z Wang Z-J Zou

Publication Date: 2016-04-01 Edition Issue: IJME Vol 158 A2.334 Publication Year: 2016 Publication Type: Paper

Managing ships in locks and confined waterways remains one of maritime engineering’s most demanding challenges. Comparative analysis of advanced numerical and experimental approaches shows steady progress in predicting complex hydrodynamic forces, while underscoring the continued value of physical testing. Together, these capabilities are shaping more reliable tools for navigation and infrastructure planning.

Detail Link: A COMPARISON OF EXPERIMENTAL AND NUMERICAL BEHAVIOUR CHARACTERISTICS OF A SHIP ENTERING A LOCK USING BENCHMARK TEST DATA

AN INHERENTLY SAFER LAYOUT DESIGN FOR THE LIQUEFACTION PROCESS OF AN FLNG PLANT

Transactions

By T Baalisampang F Khan V Garaniya S Chai R Abbassi

Publication Date: 2016-04-01 Edition Issue: IJME Vol 158 A2.345 Publication Year: 2016 Publication Type: Paper

As FLNG facilities grow in scale and complexity, safety is increasingly being designed into operations from the outset rather than added later. An innovative layout optimisation approach balances risk, space constraints, and economics, reducing potential domino-effect losses while providing a practical framework for safer, more resilient offshore energy infrastructure.

Detail Link: AN INHERENTLY SAFER LAYOUT DESIGN FOR THE LIQUEFACTION PROCESS OF AN FLNG PLANT

STRESS DISTRIBUTION IN THE HOLLOW STIFFENED HYBRID LAMINATED COMPOSITE PANELS IN SHIP STRUCTURES UNDER SINUSOIDAL LOADING

Transactions

By M Sit C Ray D Biswas B Mandal

Publication Date: 2016-04-01 Edition Issue: IJME Vol 158 A2.346 Publication Year: 2016 Publication Type: Paper

Advanced composite materials are creating new opportunities to reduce weight, cost, and structural risk in marine construction. By combining GFRP and CFRP laminates with sophisticated stress-modelling techniques, engineers gain deeper insight into structural performance, enabling more efficient stiffened panel designs while balancing strength, durability, and economic considerations.

Detail Link: STRESS DISTRIBUTION IN THE HOLLOW STIFFENED HYBRID LAMINATED COMPOSITE PANELS IN SHIP STRUCTURES UNDER SINUSOIDAL LOADING

LOADING RESPONSE OF STERN TAB MOTION CONTROLS IN SHALLOW WATER

Transactions

By J Bell J Lavroff

Publication Date: 2016-04-01 Edition Issue: IJME Vol 158 A2.352 Publication Year: 2016 Publication Type: Paper

Shallow-water operations may be influencing high-speed vessel performance far more than traditionally assumed. New findings reveal significant changes in active stern-tab lift behaviour as water depth decreases, with direct implications for ride control, trim optimisation, and manoeuvrability. The interaction between vessel control systems and confined-water hydrodynamics emerges as a critical design consideration.

Detail Link: LOADING RESPONSE OF STERN TAB MOTION CONTROLS IN SHALLOW WATER

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