11336 modules
Page 971
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SOES3009 2027-28
Shelf Seas and Shelf Edge Dynamics
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SOES3009 2028-29
Shelf Seas and Shelf Edge Dynamics
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SOES6080 2030-31
Shelf Seas and Shelf Edge Dynamics
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SESS2017 2028-29
Ship Design and Economics
Ship design requires engineers to balance technical performance, safety, environmental responsibility and commercial viability. From cargo vessels and passenger ships to specialised offshore vessels, successful designs must meet both operational requirements and wider economic and sustainability objectives.
In this module, you will learn how engineering decisions influence the technical and commercial success of a vessel. You will apply design principles to develop a preliminary ship design, translating operational requirements into engineering solutions and producing a general arrangement drawing. Along the way, you will develop skills in design synthesis, engineering judgement, economic assessment and the evaluation of safety and sustainability considerations.
By the end of the module, you will have gained practical experience of the early stages of ship design and an appreciation of the trade-offs involved in developing maritime systems. These skills provide an important bridge between engineering fundamentals and more advanced design-focused modules and support future careers in naval architecture and maritime engineering. -
SESS2017 2026-27
Ship Design and Economics
A module in which students will learn the basis of sustainable ship design whilst considering the economic and safety implications. In parallel the students will undertake a preliminary ship design which will enhance their understanding of some design implications and result in a general arrangement drawing. -
SESS2017 2027-28
Ship Design and Economics
Ship design requires engineers to balance technical performance, safety, environmental responsibility and commercial viability. From cargo vessels and passenger ships to specialised offshore vessels, successful designs must meet both operational requirements and wider economic and sustainability objectives.
In this module, you will learn how engineering decisions influence the technical and commercial success of a vessel. You will apply design principles to develop a preliminary ship design, translating operational requirements into engineering solutions and producing a general arrangement drawing. Along the way, you will develop skills in design synthesis, engineering judgement, economic assessment and the evaluation of safety and sustainability considerations.
By the end of the module, you will have gained practical experience of the early stages of ship design and an appreciation of the trade-offs involved in developing maritime systems. These skills provide an important bridge between engineering fundamentals and more advanced design-focused modules and support future careers in naval architecture and maritime 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. -
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 2026-27
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 2027-28
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.