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.

ZeroUSV's Oceanus17 USV builds on core values

By Martin Conway

The Oceanus17's payload bay will measure 9m x 2.8m, with the capacity to accommodate a 20' container (image: Chris Blount)

The forthcoming Oceanus17 USV from UK-based ZeroUSV will incorporate most of the components and design features that characterised its earlier, smaller, Oceanus12 model, speeding up the design, engineering and build phases

Detail Link: ZeroUSV's Oceanus17 USV builds on core values

RISK MANAGEMENT OF TERMINAL ON-SITE OPERATIONS FOR SPECIAL BULK CARGOS IN TAIWAN

Transactions

By Wen-Jui Tseng Ji-Feng Ding Shing-Hua Hung Worawut Poma

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.519 Publication Year: 2019 Publication Type: Paper

A structured risk-management framework is helping strengthen the safety of special bulk cargo terminal operations. Combining Formal Safety Assessment with prioritisation, risk mapping and cost-benefit evaluation, the approach highlights critical maintenance and workforce-related risks while informing targeted control strategies that can reduce accidents and improve operational resilience.

Detail Link: RISK MANAGEMENT OF TERMINAL ON-SITE OPERATIONS FOR SPECIAL BULK CARGOS IN TAIWAN

STUDY OF AIRFLOW AROUND SHIP WITH RIGID SAIL ARRAY AND POTENTIAL ARRAY PROPULSIVE POWER

Transactions

By G M Atkinson

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.520 Publication Year: 2019 Publication Type: Paper

Harnessing wind as a supplementary propulsion source, rigid sail technology offers a promising route to lower fuel consumption and emissions in commercial shipping. Advanced virtual wind tunnel and CFD modelling reveal how multi-sail configurations can generate meaningful propulsive forces, supporting the transition towards more energy-efficient and sustainable vessel operations.

Detail Link: STUDY OF AIRFLOW AROUND SHIP WITH RIGID SAIL ARRAY AND POTENTIAL ARRAY PROPULSIVE POWER

HIGH-SPEED WAVE-PIERCING CATAMARAN GLOBAL LOADS DETERMINED BY FEA AND SEA TRIALS

Transactions

By I Almallah J Lavroff D S Holloway M R Davis

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.522 Publication Year: 2019 Publication Type: Paper

Accurately predicting global loads remains a critical challenge for high-speed wave-piercing catamarans operating in realistic sea conditions. Combining full-scale trial data, strain sensing and finite-element modelling improves understanding of complex structural loads, supporting more efficient designs, enhanced reliability and greater confidence in the load assumptions used during vessel development.

Detail Link: HIGH-SPEED WAVE-PIERCING CATAMARAN GLOBAL LOADS DETERMINED BY FEA AND SEA TRIALS

AN EFFICIENT GRAPH THEORY-BASED ALGORITHM FOR SHIP TRAJECTORY PLANNING

Transactions

By A Lazarowska

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.530 Publication Year: 2019 Publication Type: Paper

Autonomous navigation is advancing through fast, graph-based path planning techniques designed for dynamic marine environments. By combining visibility graphs with the A* algorithm, the approach delivers collision-free route optimisation within seconds, offering a practical foundation for intelligent ship control systems operating amid changing conditions and navigational constraints.

Detail Link: AN EFFICIENT GRAPH THEORY-BASED ALGORITHM FOR SHIP TRAJECTORY PLANNING

ENERGY EFFICIENCY BASED OPERATION OF COMPRESSED AIR SYSTEM ON SHIPS TO REDUCE FUEL CONSUMPTION AND CO2 EMISSION

Transactions

By C Dere C Deniz

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.532 Publication Year: 2019 Publication Type: Paper

Compressed air systems represent a significant opportunity to improve maritime energy efficiency. Optimising operating pressure and reducing leakage can deliver substantial savings in power, fuel and emissions, while improving system performance. Greater attention to compressed air management could unlock meaningful operational and environmental benefits as ship operators pursue lower costs and improved sustainability.

Detail Link: ENERGY EFFICIENCY BASED OPERATION OF COMPRESSED AIR SYSTEM ON SHIPS TO REDUCE FUEL CONSUMPTION AND CO2 EMISSION

CONTROL OF REMOTELY OPERATED UNDERWATER VEHICLE USING MODEL PREDICTIVE CONTROL

Transactions

By M P R Prasad A Swarup

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.533 Publication Year: 2019 Publication Type: Paper

Autonomous and remotely operated underwater systems are benefiting from more advanced control techniques capable of handling complex, nonlinear behaviour and operational uncertainty. Model predictive control offers enhanced trajectory tracking and stability compared with traditional approaches, strengthening the capabilities of underwater vehicles used in scientific research, defence operations and ocean exploration.

Detail Link: CONTROL OF REMOTELY OPERATED UNDERWATER VEHICLE USING MODEL PREDICTIVE CONTROL

DEVELOPMENT OF A MATHEMATICAL MODEL FOR PERFORMANCE PREDICTION OF PLANING CATAMARAN IN CALM WATER

Transactions

By A Ghassemzadeh A Dashtimanesh M Habibiasl P Sahoo

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.538 Publication Year: 2019 Publication Type: Paper

High-speed planing catamarans present unique hydrodynamic challenges, where interactions between closely spaced hulls can significantly influence performance. Improved prediction of lift, resistance and trim behaviour supports more efficient hull optimisation, while insights into hull geometry and separation effects offer opportunities to enhance speed, stability and overall vessel efficiency.

Detail Link: DEVELOPMENT OF A MATHEMATICAL MODEL FOR PERFORMANCE PREDICTION OF PLANING CATAMARAN IN CALM WATER

Technical Note: FLAME SPREAD AND SMOKE & TOXICITY TESTING INTERPRETATIONS FOR PLASTIC PIPES

Transactions

By M S McLaggan L S Kristensen C Møller

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.502 Publication Year: 2019 Publication Type: Paper

Lightweight composite materials are creating new opportunities for ship design, but questions remain around the consistency of fire-safety assessment and regulatory interpretation. Flame spread, smoke and toxicity performance are critical considerations, with greater clarity needed to support safe adoption, consistent compliance and broader use of advanced materials across the maritime sector.

Detail Link: Technical Note: FLAME SPREAD AND SMOKE & TOXICITY TESTING INTERPRETATIONS FOR PLASTIC PIPES

THE CLASSIFICATION OF PIPE-LAY VESSELS AND HEAVY-LIFT CRANE VESSELS

Transactions

By M Dickin

Publication Date: 2019-04-01 Edition Issue: IJME Vol 161 A2.518 Publication Year: 2019 Publication Type: Paper

Specialist pipe-lay and heavy-lift vessels present unique safety and assurance challenges that extend beyond conventional ship operations. Classification choices, station-keeping performance, structural integrity, safety-critical systems and onboard chemical management all play vital roles in reducing risk, protecting the environment and enabling increasingly complex offshore operations.

Detail Link: THE CLASSIFICATION OF PIPE-LAY VESSELS AND HEAVY-LIFT CRANE VESSELS

Discussion: EXPERIMENTAL AND NUMERICAL MODAL ANALYSIS OF COMPOSITE LAMINATED SHELLS WITH CUT-OUT

Transactions

By A Mandal C Ray S Haldar

Publication Date: 2019-01-01 Edition Issue: IJME Vol 161 A1.495 Publication Year: 2019 Publication Type: Paper

How do cutouts affect the performance of laminated composite shells in demanding marine and aerospace environments? Combining laboratory resin-infusion manufacturing, free-vibration testing and validated numerical simulation, researchers revealed key dynamic behaviour patterns. Advanced mass-matrix modelling with rotary inertia and modal assurance verification offers insights for more reliable, maintainable structural designs.

Detail Link: Discussion: EXPERIMENTAL AND NUMERICAL MODAL ANALYSIS OF COMPOSITE LAMINATED SHELLS WITH CUT-OUT

Discussion: EXPERIMENTAL AND NUMERICAL MODAL ANALYSIS OF COMPOSITE LAMINATED SHELLS WITH CUT-OUT - Copy

Transactions

By A Mandal C Ray S Haldar

Publication Date: 2019-01-01 Edition Issue: Vol 161 A1.495 Publication Year: 2019 Publication Type: Paper

How do cutouts affect the performance of laminated composite shells in demanding marine and aerospace environments? Combining laboratory resin-infusion manufacturing, free-vibration testing and validated numerical simulation, researchers revealed key dynamic behaviour patterns. Advanced mass-matrix modelling with rotary inertia and modal assurance verification offers insights for more reliable, maintainable structural designs.

Detail Link: Discussion: EXPERIMENTAL AND NUMERICAL MODAL ANALYSIS OF COMPOSITE LAMINATED SHELLS WITH CUT-OUT - Copy

Newsletters

 

Stay connected with the global maritime community through RINA’s newsletters.

Whether you are a member or not, you can receive updates from The Naval Architect, alongside selected RINA news, events and industry insights. Members also gain access to a wider portfolio of exclusive newsletters on key topics in the maritime industry.

  • The Naval Architect (currently available to all members & non-members)
  • Power & Sustainability (members-only)
  • Ship Repair & Maintenance (members-only)
  • Warship Technology (members-only)
  • Ferries & Fast Craft (members-only)
  • Offshore Technology (members-only)

 

Sign Up For Newsletters

1 / 1
100%