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requirements English level B2 (CEFR) Other requirements Knowledge of multiphase flows; strong skills in CFD; Familiar with CFD tools, preferably Ansys Fluent; skills in experimentation (fluid analysis, flow
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and diffusion processes in the plasma resulting in the ionization of the initial gas - The decomposition of CH4, including detailed reaction sequence and chemical kinetics in a multiphase environment
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multiphase flow challenges related to the flow characteristics during cyclic injection processes using microfluidic experiments and pore-scale modelling. You will gain access to the advanced microfluidic
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datasets for the broader research community. The student will receive comprehensive training in advanced experimental techniques, data analysis, and multiphase flow physics, preparing them for careers in
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. The project involves multiphase and particle-laden flows relevant to contrail formation; prior experience in these areas is welcome but not required. Experience with laboratory instrumentation, data acquisition
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-chemical properties similar to conventional kerosene, their combustion behavior can differ significantly, requiring adjustments and optimization of current gas turbines (GT). In this context, numerical
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field of multiphase flow modelling. Contact Dr Nadimi (sadegh.nadimi-shahraki@ncl.ac.uk) for more information. Number Of Awards 1 Start Date 1st October 2026 Award Duration 4 Years Application Closing
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problem Knowledge of multiphase flows Experience with machine learning techniques Funding This studentship covers UK home tuition fees and provides a tax-free stipend of £24,000 per year for 4 years. Please
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This exciting project aims to experimentally and theoretically investigate the fundamental nucleation and heat transfer mechanisms in high-pressure flow boiling, in particular Critical Heat Flux
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product quality, reducing waste, and enabling sustainable, low-carbon manufacturing of high-value materials. Academically, the work will contribute to the growing field of multiphase flow modelling. Contact