11326 modules
Page 677
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SESS3023 2030-31
Marine Hydrodynamics
The interaction between vessels, structures and waves governs many of the challenges faced in naval architecture and ocean engineering. Predicting how marine systems respond to their fluid environment is essential for ensuring safety, performance and operational effectiveness.
In this module, you will extend your understanding of fluid mechanics to analyse wave-induced loads and motions experienced by ships and offshore structures. You will develop mathematical, computational and engineering modelling skills to investigate topics such as added mass, roll behaviour and seakeeping performance. Through numerical analysis and experimental investigations, you will explore how hydrodynamic theory is applied to real vessels operating in realistic sea conditions.
By the end of the module, you will be able to evaluate the hydrodynamic performance of marine systems and interpret their response to environmental loading. These capabilities form an important part of advanced naval architecture and support careers in ship design, offshore engineering and maritime consultancy. -
SESS3023 2025-26
Marine Hydrodynamics
This module extends the fundamentals of fluid mechanics in the context of naval architecture and ocean engineering including water waves and the fluid loading and motion of maritime structures and vessels in waves. Students will assess the concepts of added mass, wave forces, ship roll and seakeeping by developing the conceptual, mathematical, and computational techniques needed for their evaluation. There are two assignments which integrate added mass, roll damping and seakeeping response through numerical and experimental applications to a real floating vessel. -
SESS3023 2028-29
Marine Hydrodynamics
The interaction between vessels, structures and waves governs many of the challenges faced in naval architecture and ocean engineering. Predicting how marine systems respond to their fluid environment is essential for ensuring safety, performance and operational effectiveness.
In this module, you will extend your understanding of fluid mechanics to analyse wave-induced loads and motions experienced by ships and offshore structures. You will develop mathematical, computational and engineering modelling skills to investigate topics such as added mass, roll behaviour and seakeeping performance. Through numerical analysis and experimental investigations, you will explore how hydrodynamic theory is applied to real vessels operating in realistic sea conditions.
By the end of the module, you will be able to evaluate the hydrodynamic performance of marine systems and interpret their response to environmental loading. These capabilities form an important part of advanced naval architecture and support careers in ship design, offshore engineering and maritime consultancy. -
SESS3023 2026-27
Marine Hydrodynamics
The interaction between vessels, structures and waves governs many of the challenges faced in naval architecture and ocean engineering. Predicting how marine systems respond to their fluid environment is essential for ensuring safety, performance and operational effectiveness.
In this module, you will extend your understanding of fluid mechanics to analyse wave-induced loads and motions experienced by ships and offshore structures. You will develop mathematical, computational and engineering modelling skills to investigate topics such as added mass, roll behaviour and seakeeping performance. Through numerical analysis and experimental investigations, you will explore how hydrodynamic theory is applied to real vessels operating in realistic sea conditions.
By the end of the module, you will be able to evaluate the hydrodynamic performance of marine systems and interpret their response to environmental loading. These capabilities form an important part of advanced naval architecture and support careers in ship design, offshore engineering and maritime consultancy. -
SESS3023 2027-28
Marine Hydrodynamics
The interaction between vessels, structures and waves governs many of the challenges faced in naval architecture and ocean engineering. Predicting how marine systems respond to their fluid environment is essential for ensuring safety, performance and operational effectiveness.
In this module, you will extend your understanding of fluid mechanics to analyse wave-induced loads and motions experienced by ships and offshore structures. You will develop mathematical, computational and engineering modelling skills to investigate topics such as added mass, roll behaviour and seakeeping performance. Through numerical analysis and experimental investigations, you will explore how hydrodynamic theory is applied to real vessels operating in realistic sea conditions.
By the end of the module, you will be able to evaluate the hydrodynamic performance of marine systems and interpret their response to environmental loading. These capabilities form an important part of advanced naval architecture and support careers in ship design, offshore engineering and maritime consultancy. -
SESS3023 2029-30
Marine Hydrodynamics
The interaction between vessels, structures and waves governs many of the challenges faced in naval architecture and ocean engineering. Predicting how marine systems respond to their fluid environment is essential for ensuring safety, performance and operational effectiveness.
In this module, you will extend your understanding of fluid mechanics to analyse wave-induced loads and motions experienced by ships and offshore structures. You will develop mathematical, computational and engineering modelling skills to investigate topics such as added mass, roll behaviour and seakeeping performance. Through numerical analysis and experimental investigations, you will explore how hydrodynamic theory is applied to real vessels operating in realistic sea conditions.
By the end of the module, you will be able to evaluate the hydrodynamic performance of marine systems and interpret their response to environmental loading. These capabilities form an important part of advanced naval architecture and support careers in ship design, offshore engineering and maritime consultancy. -
LAWS6172 2028-29
Marine Insurance: Cover and Practice
London has a strong marine insurance and reinsurance market. The English law on marine insurance developed by the market and by the judiciary have influenced the legal principles of marine insurance globally. This module introduces marine insurance practice and marine cover, and considers the main legal issues arising from claims and the further developments of English law through cases.
We will focus on specific types of risks and losses which a ship owner or a cargo owner will usually seek to cover in the marine insurance market, most notably partial or total loss of property and collision liability insurance under a hull and machinery policy; expenses and liability insurance from a P & I Club and also the range of cover which cargo interests may obtain. The key standard form contracts used in the London market are analysed and evaluated.
This module will also look into some legal principles relating to insurance claims and liability in detail, notably causation and third party issues arising insurance claims including direct claims against insurers and insurers’ subrogated claims against wrongful third parties. -
LAWS6172 2025-26
Marine Insurance: Cover and Practice
London has a strong marine insurance and reinsurance market. The English law on marine insurance developed by the market and by the judiciary have influenced the legal principles of marine insurance globally. This module introduces marine insurance practice and marine cover, and considers the main legal issues arising from claims and the further developments of English law through cases.
We will focus on specific types of risks and losses which a ship owner or a cargo owner will usually seek to cover in the marine insurance market, most notably partial or total loss of property and collision liability insurance under a hull and machinery policy; expenses and liability insurance from a P & I Club and also the range of cover which cargo interests may obtain. The key standard form contracts used in the London market are analysed and evaluated.
This module will also look into some legal principles relating to insurance claims and liability in detail, notably causation and third party issues arising insurance claims including direct claims against insurers and insurers’ subrogated claims against wrongful third parties. -
LAWS6172 2027-28
Marine Insurance: Cover and Practice
London has a strong marine insurance and reinsurance market. The English law on marine insurance developed by the market and by the judiciary have influenced the legal principles of marine insurance globally. This module introduces marine insurance practice and marine cover, and considers the main legal issues arising from claims and the further developments of English law through cases.
We will focus on specific types of risks and losses which a ship owner or a cargo owner will usually seek to cover in the marine insurance market, most notably partial or total loss of property and collision liability insurance under a hull and machinery policy; expenses and liability insurance from a P & I Club and also the range of cover which cargo interests may obtain. The key standard form contracts used in the London market are analysed and evaluated.
This module will also look into some legal principles relating to insurance claims and liability in detail, notably causation and third party issues arising insurance claims including direct claims against insurers and insurers’ subrogated claims against wrongful third parties. -
LAWS6172 2026-27
Marine Insurance: Cover and Practice
London has a strong marine insurance and reinsurance market. The English law on marine insurance developed by the market and by the judiciary have influenced the legal principles of marine insurance globally. This module introduces marine insurance practice and marine cover, and considers the main legal issues arising from claims and the further developments of English law through cases.
We will focus on specific types of risks and losses which a ship owner or a cargo owner will usually seek to cover in the marine insurance market, most notably partial or total loss of property and collision liability insurance under a hull and machinery policy; expenses and liability insurance from a P & I Club and also the range of cover which cargo interests may obtain. The key standard form contracts used in the London market are analysed and evaluated.
This module will also look into some legal principles relating to insurance claims and liability in detail, notably causation and third party issues arising insurance claims including direct claims against insurers and insurers’ subrogated claims against wrongful third parties.