WARSHIP TECHNOLOGY

Warship Technology delivers in-depth analysis of advanced naval systems, platforms, and integration strategies shaping modern maritime defence capabilities.

Look out for topics such as combat management systems, radar and sensor integration, propulsion advancements, survivability and stealth technologies, and the growing role of autonomy and artificial intelligence in naval operations.

Gain insight into the technologies underpinning next-generation warships, along with the practicalities of design, integration, and lifecycle support within complex naval environments.

THE CHALLENGES OF MAJOR TANK COATING REFURBISHMENT PROJECTS FOR ON-STATION FLOATING ASSETS

Transactions

By A Westwell

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.564 Publication Year: 2020 Publication Type: Paper

Maintaining the integrity of ageing FPSOs and FSUs increasingly depends on effective coating management, particularly as operators seek to extend asset life while avoiding costly dry-docking and steel renewal programmes. Growing emphasis on lifecycle maintenance, safety, and operational continuity is driving more sophisticated approaches to coating refurbishment, enabling critical preservation work to be undertaken while assets remain in service.

Detail Link: THE CHALLENGES OF MAJOR TANK COATING REFURBISHMENT PROJECTS FOR ON-STATION FLOATING ASSETS

THE POTENTIAL OF METHANOL AS AN ALTERNATIVE MARINE FUEL FOR INDONESIAN DOMESTIC SHIPPING

Transactions

By E M Priyanto A I Ölçer D Dalaklis F Ballini

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.590 Publication Year: 2020 Publication Type: Paper

Growing interest in alternative marine fuels is prompting closer evaluation of both their environmental benefits and their commercial viability within national shipping markets. As the maritime sector pursues lower-emission operations, methanol is emerging as a promising option, with successful adoption likely to depend on fuel economics, operational profiles, infrastructure readiness, and supportive policy frameworks.

Detail Link: THE POTENTIAL OF METHANOL AS AN ALTERNATIVE MARINE FUEL FOR INDONESIAN DOMESTIC SHIPPING

NON-UNIFORM RATIONAL B-SPLINE BASED ISO-GEOMETRIC ANALYSIS FOR A CLASS OF HYDRODYNAMIC PROBLEMS

Transactions

By M Goel S K Bhattacharyya T W Kim

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.591 Publication Year: 2020 Publication Type: Paper

Advances in computational hydrodynamics are enabling more efficient and accurate analysis of complex marine flow problems, supporting faster assessment of hulls, propellers, and lifting surfaces during the design process. Growing adoption of geometry-integrated numerical methods is helping to reduce modelling effort while improving computational performance, strengthening the role of simulation-driven design across the maritime sector.

Detail Link: NON-UNIFORM RATIONAL B-SPLINE BASED ISO-GEOMETRIC ANALYSIS FOR A CLASS OF HYDRODYNAMIC PROBLEMS

INTEGRATED ACCIDENT MODEL FOR MARINE CONVOY TRAFFIC IN ICECOVERED WATERS

Transactions

By B Khan F Khan B Veitch

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.599 Publication Year: 2020 Publication Type: Paper

Safe navigation in ice-covered waters increasingly depends on understanding the complex interaction between human factors, operational pressures, and environmental conditions. Growing recognition of the influence of crew workload, staffing levels, and decision-making on convoy operations is supporting more comprehensive risk assessment approaches, helping operators improve safety management and reduce collision risk during icebreaker-assisted navigation.

Detail Link: INTEGRATED ACCIDENT MODEL FOR MARINE CONVOY TRAFFIC IN ICECOVERED WATERS

DETERMINATION OF DRAG AND LIFT RELATED COEFFICIENTS OF AN AUV USING COMPUTATIONAL AND EXPERIMENTAL FLUID DYNAMICS METHODS

Transactions

By E Javanmard Sh Mansoorzadeh A Pishevar J A Mehr

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.600 Publication Year: 2020 Publication Type: Paper

Accurate prediction of underwater vehicle behaviour depends on reliable estimation of hydrodynamic coefficients, which remain fundamental inputs to manoeuvring and control system design. Growing integration of computational and experimental techniques is improving confidence in performance prediction, enabling more effective development of autonomous underwater vehicles and supporting safer, more efficient operation in increasingly demanding subsea environments.

Detail Link: DETERMINATION OF DRAG AND LIFT RELATED COEFFICIENTS OF AN AUV USING COMPUTATIONAL AND EXPERIMENTAL FLUID DYNAMICS METHODS

COMPARISON OF UNSTEADY REYNOLDS-AVERAGED NAVIER-STOKES PREDICTION OF SELF-PROPELLED CONTAINER SHIP SQUAT AGAINST EMPIRICAL METHODS AND BENCHMARK DATA

Transactions

By Z Kok J T Duffy S Chai Y Jin

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.604 Publication Year: 2020 Publication Type: Paper

As pressure grows to maximise port capacity and vessel efficiency, accurately predicting squat in shallow water is becoming increasingly important for the safe operation of large container ships. Advances in CFD-based assessment methods are improving understanding of high-speed shallow-water effects, offering more reliable predictions where traditional empirical approaches may underestimate under-keel clearance requirements.

Detail Link: COMPARISON OF UNSTEADY REYNOLDS-AVERAGED NAVIER-STOKES PREDICTION OF SELF-PROPELLED CONTAINER SHIP SQUAT AGAINST EMPIRICAL METHODS AND BENCHMARK DATA

INTRODUCING OPERATIONAL INFORMATION INTO EARLY STAGE SHIP DESIGN USING QUEUEING NETWORKS

Transactions

By K Droste J J Hopman A A Kana B J van Oers

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.610 Publication Year: 2020 Publication Type: Paper

Early-stage ship design increasingly requires a deeper understanding of how vessel arrangement influences operational effectiveness, particularly for ships where internal layout has a direct impact on mission execution and workflow efficiency. Growing emphasis on requirements elucidation is driving the adoption of analytical methods that link layout decisions to operational performance, supporting more informed design choices and better-balanced requirements from the outset.

Detail Link: INTRODUCING OPERATIONAL INFORMATION INTO EARLY STAGE SHIP DESIGN USING QUEUEING NETWORKS

A TECHNIQUE OF PANELS CUTTING FOR MODIFICATION OF HULL GEOMETRY HYDRODYNAMIC MODELS

Transactions

By H Jafaryeganeh C Guedes Soares

Publication Date: 2020-04-01 Edition Issue: IJME Vol 162 A2.614 Publication Year: 2020 Publication Type: Paper

Accurate prediction of wave-induced structural loads remains an important requirement in the assessment of ship strength and seakeeping performance. Continued refinement of hydrodynamic modelling techniques and mesh-generation methods is improving the accuracy of load calculations at critical structural locations, supporting more reliable structural assessments and enabling greater confidence in the prediction of vessel responses in waves.

Detail Link: A TECHNIQUE OF PANELS CUTTING FOR MODIFICATION OF HULL GEOMETRY HYDRODYNAMIC MODELS

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