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.

A FUTURE FORETASTE: SHIPBUILDING INDUSTRIAL TENDENCIES

Transactions

By R Pérez Fernandez E Péter Cosma,

Publication Date: 2020-10-01 Edition Issue: IJME Vol 162 A4.649 Publication Year: 2020 Publication Type: Paper

Digital transformation is reshaping shipbuilding and marine engineering, creating new opportunities to improve design efficiency, information management, and lifecycle integration. Emerging technologies such as digital twins, data-centric models, immersive visualisation, and intelligent human-machine interfaces are redefining how vessels are designed, constructed, and operated, supporting more connected, responsive, and efficient maritime processes.

Detail Link: A FUTURE FORETASTE: SHIPBUILDING INDUSTRIAL TENDENCIES

RELIABILITY OF CORRODED STIFFENED PLATE SUBJECTED TO UNIAXIAL COMPRESSIVE LOADING

Transactions

By K Woloszyk Y Garbatov

Publication Date: 2020-10-01 Edition Issue: IJME Vol 162 A4.652 Publication Year: 2020 Publication Type: Paper

Structural reliability is a fundamental consideration in the long-term safety and performance of marine structures, particularly as corrosion progressively reduces load-carrying capacity throughout a vessel’s service life. Increasing emphasis on reliability-based design and assessment methods is improving understanding of the combined effects of material degradation, uncertainties, and inspection practices, supporting more informed maintenance strategies and enhanced structural integrity management.

Detail Link: RELIABILITY OF CORRODED STIFFENED PLATE SUBJECTED TO UNIAXIAL COMPRESSIVE LOADING

Technical Note: THELOADS ON YACHT ANCHOR CABLES

Transactions

By K Klaka

Publication Date: 2020-10-01 Edition Issue: IJME Vol 162 A4.235 Publication Year: 2020 Publication Type: Paper

Safe and effective anchoring remains a fundamental aspect of small-vessel operation, with anchor cable loads strongly influenced by environmental conditions and anchoring configuration. Improved understanding of the relationship between scope ratio, water depth, and wind loading is supporting more informed anchoring practices, helping vessel operators optimise holding performance, reduce anchor loads, and enhance safety during stationary operations.

Detail Link: Technical Note: THELOADS ON YACHT ANCHOR CABLES

Discussion: A FAMILY OF OFFSHORE CONSTRUCTION VESSELS

Transactions

By J R MacGregor S N Smith P van der Hoek M Duddy R Harrison

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.133 Publication Year: 2009 Publication Type: Paper

Offshore construction vessels play a critical role in modern subsea field development, bridging the gap between offshore installations and the infrastructure required to construct, maintain, and operate them. As offshore operations move into deeper waters and become increasingly complex, vessel designers are adopting integrated, multipurpose solutions that combine pipelay, diving support, construction, and dynamic positioning capabilities. Growing emphasis on operational flexibility, equipment standardisation, survivability, and lifecycle efficiency is driving the development of advanced offshore construction vessel families that can meet diverse project requirements while delivering improved performance, reliability, and economic value.

Detail Link: Discussion: A FAMILY OF OFFSHORE CONSTRUCTION VESSELS

Discussion: TOWARDS A CFD-BASED PREDICTION OF SHIP PERFORMANCE - PROGRESS IN PREDICTING FULL-SCALE RESISTANCE AND SCALE EFFECTS

Transactions

By H C Raven A van der Ploeg A R Starke L Eça R L Townsin

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.135 Publication Year: 2009 Publication Type: Paper

Advances in computational fluid dynamics are transforming the prediction of ship performance, offering the potential to reduce reliance on traditional scale-model extrapolation methods and improve understanding of full-scale resistance. Continued research into scale effects, correlation allowances, and surface roughness representation is enhancing confidence in CFD-based performance assessment, supporting more accurate and reliable prediction of vessel efficiency during design and operation.

Detail Link: Discussion: TOWARDS A CFD-BASED PREDICTION OF SHIP PERFORMANCE - PROGRESS IN PREDICTING FULL-SCALE RESISTANCE AND SCALE EFFECTS

Discussion: A CASE STUDY IN PRELIMINARY SHIP DESIGN

Transactions

By D J Andrews R G Pawling E Tupper I Buxton A R Cudmore

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.139 Publication Year: 2020 Publication Type: Paper

Preliminary ship design is increasingly recognised as a collaborative and iterative process that extends beyond traditional numerical synthesis to include architectural configuration, operational effectiveness, affordability, and stakeholder engagement. Growing adoption of Design Building Block approaches is enabling designers to explore complex ship arrangements more effectively, supporting requirements elucidation, improving communication between designers and customers, and providing a stronger foundation for evaluating innovative vessel concepts during the earliest design stages.

Detail Link: Discussion: A CASE STUDY IN PRELIMINARY SHIP DESIGN

MODELLING SEA TRIAL MOTION INDUCED INTERRUPTION DATA USING AN INVERTED PENDULUM ARTICULATED POSTURAL STABILITY MODEL

Transactions

By R G Langlois S N MacKinnon C A Duncan

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.127 Publication Year: 2009 Publication Type: Paper

Understanding how ship motions affect human performance at sea is becoming increasingly important as vessel operators seek to improve safety, productivity, and crew wellbeing in challenging environments. Advances in motion-induced interruption modelling are providing greater insight into the relationship between vessel motions, task execution, and operator stability, supporting the development of more realistic seakeeping assessment criteria and enhancing the design of ships and working environments to reduce operational risk.

Detail Link: MODELLING SEA TRIAL MOTION INDUCED INTERRUPTION DATA USING AN INVERTED PENDULUM ARTICULATED POSTURAL STABILITY MODEL

NAVAL ARCHITECTURE AND SYSTEM ENGINEERING: A DEAL FOR NAVAL SHIP DESIGN EVOLUTION

Transactions

By P Gualeni N Dazzi

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.128 Publication Year: 2009 Publication Type: Paper

The design of modern warships is increasingly shaped by systems engineering principles as naval programmes become more complex, technology-driven, and focused on whole-life capability. Growing integration of multidisciplinary design methods, digital technologies, and lifecycle thinking is enabling designers to balance operational performance, cost, risk, and adaptability, supporting more effective naval ship acquisition and the development of increasingly sophisticated naval platforms.

Detail Link: NAVAL ARCHITECTURE AND SYSTEM ENGINEERING: A DEAL FOR NAVAL SHIP DESIGN EVOLUTION

STUDY OF PODDED PROPULSORS WITH VARIED HUB ANGLES AND CONFIGURATIONS

Transactions

By M F Islam B Veitch P Liu A Akinturk

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.132 Publication Year: 2009 Publication Type: Paper

Advances in podded propulsion technology are driving continued efforts to improve manoeuvrability and propulsive efficiency across a wide range of vessel types. Growing understanding of the influence of hub geometry on hydrodynamic performance is supporting the refinement of podded propulsor designs, with particular attention being given to performance under off-design and manoeuvring conditions where flow interactions become increasingly significant.

Detail Link: STUDY OF PODDED PROPULSORS WITH VARIED HUB ANGLES AND CONFIGURATIONS

SEA-KEEPING CHARACTERISTICS OF A MODEL RIB IN HEAD SEAS

Transactions

By N C Townsend P A Wilson S Austen

Publication Date: 2009-01-01 Edition Issue: IJME Vol 151 A1.141 Publication Year: 2009 Publication Type: Paper

Understanding the seakeeping performance of high-speed rigid inflatable boats is essential for ensuring safe and effective operation in demanding sea conditions, where excessive motions and slamming can affect both crew performance and vessel integrity. Experimental investigations into the influence of wave conditions, operating speed, and tube pressure are improving understanding of motion responses, while the development of alternative motion severity measures is supporting more realistic assessment of ride quality and operational limits

Detail Link: SEA-KEEPING CHARACTERISTICS OF A MODEL RIB IN HEAD SEAS

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