11336 modules
Page 972
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SESS3022 2030-31
Ship Manoeuvring and Control
Safe and efficient operation of marine vehicles depends on their ability to manoeuvre predictably and respond effectively to control inputs. From conventional ships to autonomous maritime systems, manoeuvring and control are increasingly important aspects of modern vessel design and operation.
In this module, you will develop an understanding of the principles that govern marine vehicle motion and control. You will explore how hydrodynamic forces influence manoeuvring performance and how control system theory can be applied to vessels operating on and below the water surface. Through analytical modelling and simulation-based activities, you will learn how engineers predict and improve vessel behaviour in a range of operating scenarios.
By the end of the module, you will be able to evaluate manoeuvring performance and apply control concepts to marine vehicle systems. The knowledge developed will support further study in autonomy, maritime robotics, vessel performance and advanced marine systems engineering. -
SESS3022 2025-26
Ship Manoeuvring and Control
This module provides the fundamental concepts associated with the principles of manoeuvring and control theory, with a focus on vehicles operating on or below the air water interface. There is one assignment which integrates manoeuvring hydrodynamic data into the control of a marine vehicle. -
SESS2020 2026-27
Ship Resistance and Propulsion
This module identifies the fundamental aspects and describes practical approaches for ship resistance and associated propulsion including propeller design and engine selection. Students will estimate the ship resistance and design propeller to fulfil the propulsion requirement. There are two laboratories and one assignment as well as a number of tutorials in this module to enable the students to demonstrate their understanding of the concepts and the applications. -
SESS2020 2027-28
Ship Resistance and Propulsion
Efficient propulsion is central to the performance, economics and environmental impact of modern ships. Understanding how vessels move through water and how propulsion systems convert power into useful thrust is critical to reducing fuel consumption, improving sustainability and meeting increasingly demanding industry expectations.
In this module, you will develop the analytical and practical skills needed to evaluate ship resistance and propulsive performance in calm water. You will learn to estimate resistance, select propulsion arrangements and design propellers to meet operational requirements. Laboratory work, tutorials and design-based activities will help you connect theoretical models with real engineering systems and develop confidence in interpreting experimental and analytical data.
By the end of the module, you will be able to assess calm water ship propulsion requirements and evaluate the performance of propulsion systems using established engineering methods. The module provides an important foundation for advanced study in ship performance, hydrodynamics and sustainable maritime design. -
SESS2020 2028-29
Ship Resistance and Propulsion
Efficient propulsion is central to the performance, economics and environmental impact of modern ships. Understanding how vessels move through water and how propulsion systems convert power into useful thrust is critical to reducing fuel consumption, improving sustainability and meeting increasingly demanding industry expectations.
In this module, you will develop the analytical and practical skills needed to evaluate ship resistance and propulsive performance in calm water. You will learn to estimate resistance, select propulsion arrangements and design propellers to meet operational requirements. Laboratory work, tutorials and design-based activities will help you connect theoretical models with real engineering systems and develop confidence in interpreting experimental and analytical data.
By the end of the module, you will be able to assess calm water ship propulsion requirements and evaluate the performance of propulsion systems using established engineering methods. The module provides an important foundation for advanced study in ship performance, hydrodynamics and sustainable maritime design. -
SESS2016 2028-29
Ship Structural Design and Production
The structural design and construction of ships lies at the heart of naval architecture, ensuring that vessels can operate safely, efficiently and economically throughout their service lives. Engineers must not only design structures capable of withstanding demanding operational loads but also consider how those structures can be manufactured, assembled and maintained effectively within modern shipyards.
In this module, you will develop the knowledge and skills needed to evaluate and design ship structures from both engineering and production perspectives. You will learn how naval architects assess longitudinal and transverse structural strength using fundamental engineering principles and industry standards, including classification society requirements. You will also explore how production methods, manufacturing processes and design-for-production considerations influence the efficiency, quality and cost of ship construction. Through analytical exercises and engineering applications, you will strengthen your ability to make design decisions that balance structural performance with practical production constraints.
By the end of the module, you will be able to assess the strength and suitability of ship structural arrangements and appreciate how design choices affect the wider shipbuilding process. The module provides an important bridge between engineering fundamentals and advanced studies in marine structures, ship design and offshore engineering, while developing skills directly relevant to professional practice in naval architecture and shipbuilding. -
SESS2016 2026-27
Ship Structural Design and Production
This module aims to examine aspects of design relevant to the longitudinal and transverse strength of a ship. This is conducted through both first principles design and the use of classification society rules. In addition the production technology applicable to the shipbuilding industry is examined from the perspective of the shipyard and its management but also from a design for production viewpoint. The complementary management module will also provide production planning and scheduling relevant to ship production. -
SESS2016 2027-28
Ship Structural Design and Production
The structural design and construction of ships lies at the heart of naval architecture, ensuring that vessels can operate safely, efficiently and economically throughout their service lives. Engineers must not only design structures capable of withstanding demanding operational loads but also consider how those structures can be manufactured, assembled and maintained effectively within modern shipyards.
In this module, you will develop the knowledge and skills needed to evaluate and design ship structures from both engineering and production perspectives. You will learn how naval architects assess longitudinal and transverse structural strength using fundamental engineering principles and industry standards, including classification society requirements. You will also explore how production methods, manufacturing processes and design-for-production considerations influence the efficiency, quality and cost of ship construction. Through analytical exercises and engineering applications, you will strengthen your ability to make design decisions that balance structural performance with practical production constraints.
By the end of the module, you will be able to assess the strength and suitability of ship structural arrangements and appreciate how design choices affect the wider shipbuilding process. The module provides an important bridge between engineering fundamentals and advanced studies in marine structures, ship design and offshore engineering, while developing skills directly relevant to professional practice in naval architecture and shipbuilding. -
MANG6588 2026-27
Shipping Economics and Trade
This module provides an in-depth exploration of the economic principles that drive the global shipping industry, equipping students with critical analytical skills for effective decision making. The module covers the structure of the international shipping market, the major global trade routes, the commodities transported and the intricacies of various freight contracts. Students will explore the role of shipbroking and chartering, the dynamics of the four main shipping markets - cargo, newbuilding, second-hand and scrapping - and the operational differences between liner and bulk shipping. With a focus on sustainability, the course also examines the impact of environmental regulations and green technologies on maritime operations. Through theoretical study and practical case studies, students will be prepared to navigate and influence the evolving challenges of the shipping industry, with a particular emphasis on sustainable practices. -
MANG6588 2027-28
Shipping Economics and Trade
This module provides an in-depth exploration of the economic principles that drive the global shipping industry, equipping students with critical analytical skills for effective decision making. The module covers the structure of the international shipping market, the major global trade routes, the commodities transported and the intricacies of various freight contracts. Students will explore the role of shipbroking and chartering, the dynamics of the four main shipping markets - cargo, newbuilding, second-hand and scrapping - and the operational differences between liner and bulk shipping. With a focus on sustainability, the course also examines the impact of environmental regulations and green technologies on maritime operations. Through theoretical study and practical case studies, students will be prepared to navigate and influence the evolving challenges of the shipping industry, with a particular emphasis on sustainable practices.