8546 modules
Page 816
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SESM6040 2028-29
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels contribute more than 85% of world energy production, but also contribute more than 60% of anthropogenic greenhouse gas emissions. As research continues to find alternative and more sustainable energy production technologies hydrocarbon fuels will continue to be the primary energy supplier therefore measures need to be taken to improve their efficiency and minimise anthropogenic greenhouse gas emissions.
This module addresses thermo-fluid processes underlying technologies which use hydrocarbon fuels in a more sustainable manner, including carbon capture, utilisation and storage, and enhanced oil and gas recovery. To enable students to develop technology for these applications, this module equips students with physical insight and engineering methods for heat and mass transport, chemically-reacting flows, multi-phase flows, and porous media flows. -
SESM6040 2029-30
Thermo-Fluid Engineering for Carbon Capture, Utilisation and Storage (CCUS)
Hydrocarbon fuels contribute more than 85% of world energy production, but also contribute more than 60% of anthropogenic greenhouse gas emissions. As research continues to find alternative and more sustainable energy production technologies hydrocarbon fuels will continue to be the primary energy supplier therefore measures need to be taken to improve their efficiency and minimise anthropogenic greenhouse gas emissions.
This module addresses thermo-fluid processes underlying technologies which use hydrocarbon fuels in a more sustainable manner, including carbon capture, utilisation and storage, and enhanced oil and gas recovery. To enable students to develop technology for these applications, this module equips students with physical insight and engineering methods for heat and mass transport, chemically-reacting flows, multi-phase flows, and porous media flows. -
SESM2017 2026-27
Thermodynamics
Enables students to analyse and design advanced power, propulsion, heating and cooling systems using thermodynamic principles. -
SESM2017 2028-29
Thermodynamics
Enables students to analyse and design advanced power, propulsion, heating and cooling systems using thermodynamic principles. -
SESM2017 2027-28
Thermodynamics
Enables students to analyse and design advanced power, propulsion, heating and cooling systems using thermodynamic principles. -
CHEM2033 2026-27
Thermodynamics and Kinetics
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FEEG1003 2026-27
ThermoFluids
Core Thermodynamics and Fluid Mechanics for all Engineering Themes.
Students should be aware that this module requires pre requisites of Mathematics -
FEEG1003 2025-26
ThermoFluids
Core Thermodynamics and Fluid Mechanics for all Engineering Themes.
Students should be aware that this module requires pre requisites of Mathematics -
FEEG1003 2027-28
ThermoFluids
Core Thermodynamics and Fluid Mechanics for all Engineering Themes.
Students should be aware that this module requires pre requisites of Mathematics -
SESA1016 2025-26
Thermofluids for Aerospace Engineers
This module provides a foundational understanding of thermodynamics and fluid mechanics to Aeronautics and Astronautics Engineering students, placing significant emphasis on the critical application of these principles to aerospace systems. It equips students with the requisite knowledge and tools essential for subsequent modules encompassing aircraft and space propulsion, aerodynamics and high-speed gas dynamics.
In the thermodynamics section, students delve into the laws of thermodynamics in the context of aerospace applications, learning how these principles underpin the design of aerospace systems. The fluid mechanics section provides a comprehensive perspective of fluid properties, flow regimes, and conservation laws, with an emphasis on applying these concepts to the analysis of aerospace components and systems.