Ship Repair & Maintenance

Ship Repair & Maintenance is a window into vessel lifecycle management, focusing on the latest technical advancements, regulatory requirements, and best practices in maintenance and repair operations.

Topics such as condition-based and predictive maintenance, hull integrity, corrosion control and propulsion system overhauls will be explored, in addition to the application of digital tools in maintenance diagnostics and planning. Ship Repair & Maintenance will also follow market trends and the distribution of work across the world.

Technical Note: EXPERIMENTAL STUDY OF THE INTERACTION OF CORROSION DAMAGE AND OUT-OF-CIRCULARITY IN THE COLLAPSE OF SUBMARINE PRESSURE HULLS

Transactions

By J R MacKay M J Smith F van Keulen T N Bosman

Publication Date: 2012-07-01 Edition Issue: IJME Vol 154 A3.229 Publication Year: 2012 Publication Type: Paper

Maintaining the structural integrity of submarine pressure hulls throughout their service life requires a clear understanding of how corrosion and geometric imperfections interact under external pressure loading. Experimental investigation of ring-stiffened cylinders shows that corrosion can significantly reduce collapse strength, particularly when combined with out-of-circularity defects, providing valuable insight for lifecycle assessment, maintenance planning, and submarine structural design.

Detail Link: Technical Note: EXPERIMENTAL STUDY OF THE INTERACTION OF CORROSION DAMAGE AND OUT-OF-CIRCULARITY IN THE COLLAPSE OF SUBMARINE PRESSURE HULLS

HANDLING TEMPORAL COMPLEXITY IN THE DESIGN OF NON-TRANSPORT SHIPS USING EPOCH-ERA ANALYSIS

Transactions

By H M Gaspar S O Erikstad A M Ross

Publication Date: 2012-07-01 Edition Issue: IJME Vol 154 A3.230 Publication Year: 2012 Publication Type: Paper

Designing specialist vessels for uncertain and rapidly evolving markets requires balancing immediate operational needs with the flexibility to remain competitive over decades of service. This study applies Epoch-Era Analysis to the design of an Anchor Handling Tug Supply vessel, demonstrating how future market scenarios can be incorporated into early-stage design decisions to support more adaptable, resilient, and commercially sustainable vessel concepts.

Detail Link: HANDLING TEMPORAL COMPLEXITY IN THE DESIGN OF NON-TRANSPORT SHIPS USING EPOCH-ERA ANALYSIS

RECURSIVE NEURAL NETWORK MODEL OF CATAMARAN MANOEUVRING

Transactions

By L Moreira C Guedes Soares

Publication Date: 2012-07-01 Edition Issue: IJME Vol 154 A3.232 Publication Year: 2012 Publication Type: Paper

Data-driven modelling techniques are creating new opportunities to predict vessel manoeuvring performance without relying solely on traditional mathematical representations. This study demonstrates the application of a recursive neural network trained using full-scale trial data to simulate catamaran manoeuvres, showing how artificial intelligence can support accurate prediction of ship handling characteristics and assist future vessel design and operational planning.

Detail Link: RECURSIVE NEURAL NETWORK MODEL OF CATAMARAN MANOEUVRING

ON THE MACRO HYDRODYNAMIC DESIGN OF HIGHLY EFFICIENT MEDIUMSPEED CATAMARANS WITH MINIMUM RESISTANCE

Transactions

By M Haase J Binns G Thomas N Bose G Davidson S Friezer

Publication Date: 2012-07-01 Edition Issue: IJME Vol 154 A3.234 Publication Year: 2012 Publication Type: Paper

Bridging the gap between conventional ferries and high-speed craft is driving interest in a new generation of medium-speed catamarans that combine improved transport efficiency with lower environmental impact. This study identifies key hull-form characteristics for minimising resistance, providing design guidance for fuel-efficient twin-hull vessels capable of transporting larger payloads at economically attractive operating speeds.

Detail Link: ON THE MACRO HYDRODYNAMIC DESIGN OF HIGHLY EFFICIENT MEDIUMSPEED CATAMARANS WITH MINIMUM RESISTANCE

FULL-SCALE MOTIONS OF A LARGE HIGH-SPEED CATAMARAN: THE INFLUENCE OF WAVE ENVIRONMENT, SPEED AND RIDE CONTROL SYSTEM

Transactions

By G Jacobi G Thomas M R Davis D S Holloway G Davidson T Roberts

Publication Date: 2012-07-01 Edition Issue: IJME Vol 154 A3.238 Publication Year: 2012 Publication Type: Paper

Understanding the behaviour of high-speed vessels in severe sea conditions remains critical as operators seek to balance performance, passenger comfort, and safety. Full-scale trials of a large wave-piercing catamaran demonstrated the significant influence of vessel speed, heading, and ride-control systems on motion responses, while also providing valuable validation data for numerical seakeeping prediction methods used in vessel design and performance assessment.

Detail Link: FULL-SCALE MOTIONS OF A LARGE HIGH-SPEED CATAMARAN: THE INFLUENCE OF WAVE ENVIRONMENT, SPEED AND RIDE CONTROL SYSTEM

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