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tailored for the complex demands of modern ultra-efficient propulsion systems. This PhD project will address that gap by creating advanced simulation and design tools to evaluate integrated fuel systems
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. The objective of this PhD project is to employ the above-described experimental setup of a natural convection loop with water as the cooling fluid. For a range of operating conditions, the student will use a
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multidisciplinary CDT cohort with shared training, collaboration, and networking opportunities. Gain hands-on experience in aero-engine aerodynamics, flow measurement, modelling, and simulation. Benefit from
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This is a self-funded PhD position to work with Dr Adnan Syed in the Surface Engineering and Precision Centre. The PhD project will focus studying high temperature corrosion mechanisms in details
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comparatively strong interaction between bilayers of these materials offers interesting perspectives for materials design. In this spirit, the successful applicant will use state-of-the-art atomistic simulation
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, the project is aligned with a Royal Society-funded project, under which the PhD student will be employed as a research assistant for three years, receiving a monthly stipend of approximately £1,000
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University. Applications are invited for a PhD studentship in the Centre for Propulsion and Thermal Power Engineering, Cranfield University, in the area of gas turbine performance, diagnostics and prognostics
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for Digital Engineering and Manufacturing (CDEM). The Centre houses state-of-the-art simulation and visualisation facilities. You will have access to high-end computers to simulate the complex nature
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/on-wing repair and maintenance of gas turbine engines. Applicants are invited to undertake a fully funded three-year PhD programme in partnership with Rolls-Royce to address key challenges in soft robotics
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PhD Studentship: Optimisation of Liquid Metal Filtration and Cleanliness in Nickel Based Superalloys
A four year PhD with integrated studies is available in the High Temperature Research Centre, School of Metallurgy and Materials under the supervision of Prof Nick Green and Prof Roger Reed, with a