Ferries & Fast Craft

Ferries & Fast Craft focuses on vessel design, performance optimisation, and operational technologies shaping high-speed and passenger transport sectors. You can expect topics such as hull design and hydrodynamics, propulsion systems including hybrid and electric solutions, lightweight and innovative new materials, and advanced navigation and safety systems.

Gain insights into regulatory compliance and efficiency improvements in the unseen workhorses of the maritime industry.

OPPORTUNITIES FOR IMPROVED EFFICIENCY AND REDUCED CO2 EMISSIONS IN DRY BULK SHIPPING STEMMING FROM THE RELAXATION OF THE PANAMAX BEAM CONSTRAINT

Transactions

By P W Stott P N H Wright

Publication Date: 2011-10-01 Edition Issue: IJME Vol 153 A4.213 Publication Year: 2011 Publication Type: Paper

The expansion of the Panama Canal is creating new opportunities for vessel optimisation, allowing designers to move beyond longstanding dimensional constraints that have shaped ship development for decades. Growing interest in larger and more efficient dry bulk carriers highlights the potential for improved transport efficiency and reduced emissions, while wider benefits across other shipping sectors are expected to emerge as fleet designs evolve.

Detail Link: OPPORTUNITIES FOR IMPROVED EFFICIENCY AND REDUCED CO2 EMISSIONS IN DRY BULK SHIPPING STEMMING FROM THE RELAXATION OF THE PANAMAX BEAM CONSTRAINT

FATIGUE RELIABILITY ASSESSMENT OF WELDED JOINTS OF VERY FAST FERRY ACCOUNTING FOR VEHICLE LOADS

Transactions

By Y Garbatov C Guedes Soares

Publication Date: 2011-10-01 Edition Issue: IJME Vol 153 A4.214 Publication Year: 2011 Publication Type: Paper

Maintaining the long-term structural reliability of high-speed ferries requires careful assessment of fatigue damage under complex operational loading conditions. Increasing use of reliability-based design methods is improving understanding of how wave loads, transient operational effects, and corrosion influence fatigue performance, supporting more robust structural details and informed lifecycle management of lightweight marine structures.

Detail Link: FATIGUE RELIABILITY ASSESSMENT OF WELDED JOINTS OF VERY FAST FERRY ACCOUNTING FOR VEHICLE LOADS

COATINGS AND PERMANENT MEANS OF ACCESS - THE ANTI-CORROSION CHALLENGES

Transactions

By J P Lomas P D Contraros G Papadakis

Publication Date: 2011-10-01 Edition Issue: IJME Vol 153 A4.216 Publication Year: 2011 Publication Type: Paper

New requirements for permanent means of access are increasing the complexity of ship structural design, construction, and lifecycle maintenance. Growing attention to accessibility, safety, and inspection requirements is driving the development of more integrated design approaches, balancing regulatory compliance with the practical challenges of coating application, cargo operations, structural integrity, and long-term vessel maintenance.

Detail Link: COATINGS AND PERMANENT MEANS OF ACCESS - THE ANTI-CORROSION CHALLENGES

EFFECT OF DOUBLE BOTTOM HEIGHT ON THE STRUCTURAL BEHAVIOUR OF BULK CARRIERS

Transactions

By P D Contraros S P Phokas

Edition Issue: IJME Vol 153 A4.217 Publication Year: 2011 Publication Type: Paper

The introduction of Common Structural Rules has renewed focus on the relationship between regulatory requirements and the long-term structural reliability of bulk carriers. Growing recognition of the safety implications of key design parameters, such as double-bottom height, is encouraging more robust design standards that balance structural efficiency with appropriate margins of reliability and operational safety.

Detail Link: EFFECT OF DOUBLE BOTTOM HEIGHT ON THE STRUCTURAL BEHAVIOUR OF BULK CARRIERS

PROPELLER CAVITATION AND INDUCED VIBRATION

Transactions

By C Leontopoulos S K Lee L Karaminas

Publication Date: 2011-10-01 Edition Issue: IJME Vol 153 A4.222 Publication Year: 2011 Publication Type: Paper

Growing demand for more efficient propeller designs is pushing marine propulsion systems closer to their performance limits, increasing the importance of managing cavitation, vibration, and noise. Greater understanding of propeller-hull interactions and mitigation technologies is helping designers improve propulsion efficiency while maintaining acceptable levels of structural integrity, operational reliability, and onboard comfort.

Detail Link: PROPELLER CAVITATION AND INDUCED VIBRATION

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