8588 modules
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FEEG6005 2026-27
Applications of CFD
Computational Fluid Dynamics (CFD) has transformed the way engineers design products, allowing complex fluid flows to be explored virtually before physical prototypes are built. From improving aircraft aerodynamics and wind turbine performance to optimising cooling systems and biomedical devices, CFD is now an essential tool across engineering.
This module introduces the numerical methods that underpin CFD while developing the practical skills needed to perform professional-quality flow simulations. You will explore finite volume and finite difference methods before applying commercial CFD software to generate computational meshes, select appropriate turbulence models, run simulations and interpret engineering results. Throughout the module, you will learn how modelling assumptions, numerical methods and mesh quality influence the accuracy and reliability of simulation predictions.
By the end of the module, you will be able to plan, perform and critically evaluate CFD analyses of engineering systems, combining theoretical understanding with practical simulation skills that are widely sought across industries including aerospace, automotive, energy, marine and biomedical engineering. -
FEEG6005 2028-29
Applications of CFD
The basic concept of Computational Fluid Dynamics and numerical procedures (FVM/FDM) are introduced. The major focus is practical applications, including geometry and grid generation, using solvers and turbulence models in CFD packages, and interpretation of data. -
FEEG6005 2031-32
Applications of CFD
Computational Fluid Dynamics (CFD) has transformed the way engineers design products, allowing complex fluid flows to be explored virtually before physical prototypes are built. From improving aircraft aerodynamics and wind turbine performance to optimising cooling systems and biomedical devices, CFD is now an essential tool across engineering.
This module introduces the numerical methods that underpin CFD while developing the practical skills needed to perform professional-quality flow simulations. You will explore finite volume and finite difference methods before applying commercial CFD software to generate computational meshes, select appropriate turbulence models, run simulations and interpret engineering results. Throughout the module, you will learn how modelling assumptions, numerical methods and mesh quality influence the accuracy and reliability of simulation predictions.
By the end of the module, you will be able to plan, perform and critically evaluate CFD analyses of engineering systems, combining theoretical understanding with practical simulation skills that are widely sought across industries including aerospace, automotive, energy, marine and biomedical engineering. -
FEEG6005 2030-31
Applications of CFD
Computational Fluid Dynamics (CFD) has transformed the way engineers design products, allowing complex fluid flows to be explored virtually before physical prototypes are built. From improving aircraft aerodynamics and wind turbine performance to optimising cooling systems and biomedical devices, CFD is now an essential tool across engineering.
This module introduces the numerical methods that underpin CFD while developing the practical skills needed to perform professional-quality flow simulations. You will explore finite volume and finite difference methods before applying commercial CFD software to generate computational meshes, select appropriate turbulence models, run simulations and interpret engineering results. Throughout the module, you will learn how modelling assumptions, numerical methods and mesh quality influence the accuracy and reliability of simulation predictions.
By the end of the module, you will be able to plan, perform and critically evaluate CFD analyses of engineering systems, combining theoretical understanding with practical simulation skills that are widely sought across industries including aerospace, automotive, energy, marine and biomedical engineering. -
FEEG6005 2029-30
Applications of CFD
Computational Fluid Dynamics (CFD) has transformed the way engineers design products, allowing complex fluid flows to be explored virtually before physical prototypes are built. From improving aircraft aerodynamics and wind turbine performance to optimising cooling systems and biomedical devices, CFD is now an essential tool across engineering.
This module introduces the numerical methods that underpin CFD while developing the practical skills needed to perform professional-quality flow simulations. You will explore finite volume and finite difference methods before applying commercial CFD software to generate computational meshes, select appropriate turbulence models, run simulations and interpret engineering results. Throughout the module, you will learn how modelling assumptions, numerical methods and mesh quality influence the accuracy and reliability of simulation predictions.
By the end of the module, you will be able to plan, perform and critically evaluate CFD analyses of engineering systems, combining theoretical understanding with practical simulation skills that are widely sought across industries including aerospace, automotive, energy, marine and biomedical engineering. -
LING1003 2026-27
Applications of Linguistics
This unit will introduce you to the main areas relevant to applied language studies. -
LING1003 2025-26
Applications of Linguistics
This unit will introduce you to the main areas relevant to applied language studies. -
SESM6043 2029-30
Applications of Renewable Energy, Storage and Nuclear Energy
This module covers applications of renewable energy, storage and nuclear power. The module is split equally across the three aspects of renewable energy, storage and nuclear power. -
SESM6043 2028-29
Applications of Renewable Energy, Storage and Nuclear Energy
This module covers applications of renewable energy, storage and nuclear power. The module is split equally across the three aspects of renewable energy, storage and nuclear power. -
SESM6043 2025-26
Applications of Renewable Energy, Storage and Nuclear Energy
This module covers applications of renewable energy, storage and nuclear power. The module is split equally across the three aspects of renewable energy, storage and nuclear power.