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to CO2 capture schemes. This research project focuses on combining computational fluid dynamics (CFD) and process simulation tools to study in detail the performance of an amine capture post-combustion
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interactions with the free surface of the sodium pool, and the stratification and natural circulation of the sodium pool. Numerical simulations will be carried out using direct numerical simulations (DNS) and
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-laminarisation (See J. Fluid Mech., He & Seddighi, 2013 & 2015). The work will include revising the direct numerical simulation (DNS) computer code developed in the group for the simulation of boundary layer flows
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Simulating Composite Fracture by the Extended Finite Element Method School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Dr J L Curiel Sosa Application Deadline
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space systems. This research will benefit from excellent computing facilities, expertise in computer-aided engineering (CA2M lab), the available experimental facilities including flight simulator
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Large Eddy Simulation Around Buildings (LES) School of Mechanical, Aerospace and Civil Engineering PhD Research Project Self Funded Prof Lin Ma, Prof Mohamed Pourkashanian, Prof Derek Ingham, Dr
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and/or techno‐economic assessment for full scale power plants that employ the next generation CCS technologies. Plant process simulation software packages, such as the gCCS and Aspen will be employed as
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Application Deadline: Applications accepted all year round Details Computational Wind Engineering has been developed rapidly over the last decades. Among the numerical techniques, Large Eddy Simulation (LES) is
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, the certification is very expensive mainly due to the number of experimental tests required. A potential way to reduce costs is to use modelling and simulation. The problem is that modelling
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-CCS or BECCS) is already recognized as a potential option to tackle climate change in most scenarios, as it is linked to the concept of negative CO2 emissions. This project will use process simulation