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.

Discussion: LIFE-CYCLE CO2 EMISSIONS OF BULK CARRIERS: A COMPARATIVE STUDY

Transactions

By G A Gratsos H N Psaraftis P Zachariadis N Mikelis J Kokarakis

Publication Date: 2010-10-01 Edition Issue: IJME Vol 152 A4.176 Publication Year: 2010 Publication Type: Paper

Balancing structural durability, environmental performance, and lifecycle efficiency remains a central challenge in the development of modern bulk carriers. Growing recognition that robust structures can extend service life and reduce repair demands is strengthening support for lifecycle-based design approaches, highlighting the importance of evaluating long-term emissions and operational impacts rather than focusing solely on initial efficiency metrics.

Detail Link: Discussion: LIFE-CYCLE CO2 EMISSIONS OF BULK CARRIERS: A COMPARATIVE STUDY

HISTORICAL TRAILS OF SHIP BROACHING-TO

Transactions

By K J Spyrou

Publication Date: 2010-10-01 Edition Issue: IJME Vol 152 A4.187 Publication Year: 2010 Publication Type: Paper

Maintaining control in following and quartering seas remains a critical consideration in ship safety, with broaching continuing to pose a risk despite advances in vessel design and analysis methods. Renewed interest in the phenomenon is supporting the development of modern stability criteria, while recognition of its long history highlights the enduring challenge of preserving controllability in severe sea conditions.

Detail Link: HISTORICAL TRAILS OF SHIP BROACHING-TO

SHIP MOTIONS DURING REPLENISHMENT AT SEA OPERATIONS IN HEAD SEAS

Transactions

By G Thomas T Turner T Andrewartha B Morris

Publication Date: 2010-10-01 Edition Issue: IJME Vol 152 A4.194 Publication Year: 2010 Publication Type: Paper

Replenishment at sea remains one of the most demanding naval operations, requiring vessels to maintain safe separation and controlled motions while operating in close proximity. Improved understanding of hydrodynamic interactions between ships is supporting the development of more reliable prediction methods, helping operators optimise vessel positioning and enhance the safety and effectiveness of replenishment operations in challenging sea conditions.

Detail Link: SHIP MOTIONS DURING REPLENISHMENT AT SEA OPERATIONS IN HEAD SEAS

EXPERIMENTAL AND NUMERICAL STUDY ON PROGRESSIVE FLOODING IN FULL-SCALE

Transactions

By P Ruponen P Kurvinen I Saisto J Harras

Publication Date: 2010-10-01 Edition Issue: IJME Vol 152 A4.195 Publication Year: 2010 Publication Type: Paper

Accurate prediction of progressive flooding remains fundamental to assessing ship survivability and damage stability following an accident. Growing confidence in advanced flooding simulation tools is being driven by the availability of full-scale validation data, improving understanding of floodwater behaviour, air compression effects, and compartment interactions while supporting more reliable stability and survivability assessments.

Detail Link: EXPERIMENTAL AND NUMERICAL STUDY ON PROGRESSIVE FLOODING IN FULL-SCALE

Technical Note: THE TRANSIENT EFFECTS OF FLOOD WATER ON A WARSHIP IN CALM WATER IMMEDIATELY FOLLOWING DAMAGE

Transactions
Publication Date: 2010-10-01 Edition Issue: IJME Vol 152 A4.197 Publication Year: 2010 Publication Type: Paper

Understanding the transient behaviour of a damaged vessel remains a critical challenge in damage-stability analysis, as the path between initial damage and final equilibrium can be as important as the end condition itself. Growing awareness of the influence of floodwater dynamics and ship motions is driving efforts to improve survivability assessments, recognising that transient effects may determine whether a vessel survives long before a stable condition is reached.

Detail Link: Technical Note: THE TRANSIENT EFFECTS OF FLOOD WATER ON A WARSHIP IN CALM WATER IMMEDIATELY FOLLOWING DAMAGE

A SOURCE OF PROPELLER EXCITED BROADBAND VIBRATION ON A HIGH-SPEED TWIN SCREW SHIP

Transactions

By J W English

Publication Date: 2010-10-01 Edition Issue: IJME Vol 152 A4.191 Publication Year: 2010 Publication Type: Paper

Propeller-induced vibration remains an important challenge in ship design, particularly as propulsion systems are optimised for greater efficiency and operating performance. Improved understanding of cavitation dynamics and complex propeller-hull interactions is helping to identify the underlying causes of vibration problems, supporting more effective mitigation strategies and enhancing vessel reliability, structural integrity, and onboard comfort.

Detail Link: A SOURCE OF PROPELLER EXCITED BROADBAND VIBRATION ON A HIGH-SPEED TWIN SCREW SHIP

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