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.

Conference Proceedings

DEVELOPMENT OF A SUBMARINE MANEUVERING SIMULATOR

Warship

By E G Nascimento E A Tannuri

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Brazil’s first domestically developed submarine simulator marks a significant step in national maritime engineering capability. Built within the University of São Paulo’s Numerical Offshore Tank, the platform combines vessel manoeuvring theory and advanced numerical modelling to support submarine analysis, training, research, and future technology development independently and at national scale.

Detail Link: DEVELOPMENT OF A SUBMARINE MANEUVERING SIMULATOR

THE VERTICAL FORCE REQUIRED FROM THE AFT CONTROL SURFACES TO ENABLE A SUBMARINE TO MAINTAIN A LEVEL TURN

Warship

By H Kim D Ranmuthugala M R Renilson

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Accurately predicting submarine behaviour during turning manoeuvres remains a critical design challenge. Comparing coefficient-based modelling, computational fluid dynamics, and free-running tests, researchers found CFD closely matched measured control-surface demands while simpler methods overpredicted requirements. The findings improve understanding of out-of-plane loads and support more effective submarine control-system design today globally.

Detail Link: THE VERTICAL FORCE REQUIRED FROM THE AFT CONTROL SURFACES TO ENABLE A SUBMARINE TO MAINTAIN A LEVEL TURN

UNLOCKING THE POTENTIAL OF SUSTAINABLE SUBMARINE DESIGN

Warship

By L Hammock

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Future submarine design is increasingly shaped by sustainability and climate resilience. By embedding environmental considerations from concept through disposal, designers can reduce lifecycle impacts without compromising capability. The analysis highlights collaborative approaches spanning customers, shipyards, suppliers, and engineers, demonstrating how sustainable principles can enhance performance, flexibility, and long-term value today.

Detail Link: UNLOCKING THE POTENTIAL OF SUSTAINABLE SUBMARINE DESIGN

DESIGN OF DELTA WING AUTONOMOUS UNDERWATER GLIDERS FOR LONG TERM SUSTAINABLE AND STEALTH RECONNAISSANCE USING NUMERICAL STUDIES

Warship

By M Guggilla R Vijayakumar

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Delta-wing autonomous underwater gliders could extend reconnaissance endurance while improving underwater efficiency. Using CFD analysis across multiple NACA-based hull configurations, researchers evaluated lift, drag, and longitudinal stability characteristics. The work identifies promising low-power designs capable of covering greater distances, enhancing stealthy ocean-data collection and submarine support missions globally today ahead.

Detail Link: DESIGN OF DELTA WING AUTONOMOUS UNDERWATER GLIDERS FOR LONG TERM SUSTAINABLE AND STEALTH RECONNAISSANCE USING NUMERICAL STUDIES

BATTERY TECHNOLOGY - WHERE IT CAME FROM AND WHERE ITS GOING

Warship

By M Moody D Mitchell

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Advances in battery technology are creating new opportunities for naval ships and submarines. Seeking higher energy density longer service life improved reliability and lower lifecycle costs designers are assessing proven maritime electrification solutions. The challenge lies in adopting these capabilities while maintaining rigorous safety assurance operational resilience and future readiness.

Detail Link: BATTERY TECHNOLOGY - WHERE IT CAME FROM AND WHERE ITS GOING

NUMERICAL ESTIMATION OF DAMAGE CAUSED BY THE IMPACT OF AN EXERCISE TORPEDO ON A SUBMARINE PRESSURE HULL STRUCTURE

Warship

By R Castillo N Bradbeer

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Finite-element simulations are improving understanding of submarine survivability during training-torpedo impacts. Validated against experimental data, the analysis assessed pressure-hull responses at different strike speeds and found only limited permanent deformation at higher velocities. The results suggest operational capability would remain unaffected, helping reduce risk and inform safer training practices today.

Detail Link: NUMERICAL ESTIMATION OF DAMAGE CAUSED BY THE IMPACT OF AN EXERCISE TORPEDO ON A SUBMARINE PRESSURE HULL STRUCTURE

ENEWABLE: AN INNOVATIVE UCL CONCEPT SUBMARINE DESIGN FOR AN ALL-ELECTRIC BOAT

Warship

By R Pawling J Dos Santos M Yigit Oguz D Weatherall B Lango

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

An all-electric submarine concept is challenging traditional underwater operations. Designed to recharge through offshore wind infrastructure and operate without conventional fuels, the Renewable concept explores long-endurance battery propulsion for regional missions. The study highlights innovative energy integration, operational feasibility, and emerging possibilities for lower-emission naval capabilities ahead in coming decades.

Detail Link: ENEWABLE: AN INNOVATIVE UCL CONCEPT SUBMARINE DESIGN FOR AN ALL-ELECTRIC BOAT

CAD SYSTEM DISTINCTIVE FEATURES IN SUBMARINE DESIGN

Warship

By R Perez-Fernandez

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

In the late 19th and early 20th centuries the frames of a steel ship were stood up on the keel like those of a wooden ship, and the plates attached later. Frames had to be shaped to match the curves of the hull design. Each one was heated in a forge and then hammered or jacked to match the shape of its template. In late 19th century, it was not easy fairing the hull. Flexible sticks, called battens, were used for fairing the lines, i.e. checking the

Detail Link: CAD SYSTEM DISTINCTIVE FEATURES IN SUBMARINE DESIGN

THE DESIGN AND HYDRODYNAMIC ASSESSMENT OF A SUBMARINE CONCEPT WITH OFF-AXIS PROPULSION

Warship

By P Crossland R Crocker S Machin

Edition Issue: Future Technologies in Naval Submarines, 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Predicting submarine manoeuvring behaviour is a critical foundation of lifecycle safety management. By improving understanding of vessel response and control characteristics, designers can better assess operational risks, support safety assurance, and inform safer decisions throughout design, operation, maintenance and capability evolution for submarines operating in demanding underwater environments worldwide today.

Detail Link: THE DESIGN AND HYDRODYNAMIC ASSESSMENT OF A SUBMARINE CONCEPT WITH OFF-AXIS PROPULSION

DEVELOPMENT OF A 1:30 SCALE SAILING MODEL OF OCEANBIRD

Wind Propulsion

By A Hillenbrand U Dhomé J Kuttenkeuler M Razola

Edition Issue: International Conference on Wind Propulsion 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Realistic testing methods are advancing wind-powered vessel development. Using a sensor-rich scale model of Oceanbird, researchers gathered high-quality manoeuvring and aerodynamic data in free-sailing conditions. The work demonstrates improved evaluation of sailing ship behaviour, including zigzag performance, while strengthening validation techniques for future wind-assisted and fully wind-powered designs globally today.

Detail Link: DEVELOPMENT OF A 1:30 SCALE SAILING MODEL OF OCEANBIRD

RONDOUT RIVERPORT 2040: A COMPREHENSIVE PLAN FOR A WORKING WATERFRONT AND THE TRANSPORTATION OF GOODS AND PEOPLE IN A CARBON CONSTRAINED FUTURE

Wind Propulsion

By A Willner

Edition Issue: International Conference on Wind Propulsion 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Rondout Riverport 2040 presents a vision for transforming Hudson Valley waterfronts through sustainable maritime commerce, heritage preservation and clean technology innovation. By linking communities, businesses and working ports, the strategy promotes economic vitality, equitable transition beyond fossil fuels, regional collaboration and resilient long-term prosperity for Kingston, Esopus residents and stakeholders.

Detail Link: RONDOUT RIVERPORT 2040: A COMPREHENSIVE PLAN FOR A WORKING WATERFRONT AND THE TRANSPORTATION OF GOODS AND PEOPLE IN A CARBON CONSTRAINED FUTURE

INTERACTIONS BETWEEN TWO FLETTNER ROTORS USED FOR WIND SHIP ASSISTED PROPULSION

Wind Propulsion

By B Charrier

Edition Issue: International Conference on Wind Propulsion 2021 Publication Year: 2021 Publication Type: Conference Proceeding

Wind-tunnel research is refining the performance of rotating-cylinder propulsion systems. Detailed aerodynamic measurements revealed spanwise flow effects, drag growth, and interactions between adjacent cylinders that reduce thrust efficiency at certain wind angles. The findings improve understanding of rotor-sail behaviour, supporting more accurate designs and enhanced wind-assisted vessel performance worldwide today.

Detail Link: INTERACTIONS BETWEEN TWO FLETTNER ROTORS USED FOR WIND SHIP ASSISTED PROPULSION

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