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evolution at high temperature. The transition towards smarter, lower-carbon manufacturing demands new ways to understand and monitor how materials evolve during processing. This PhD project addresses a
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together with other energy assets, such as electrical boilers, within a Model Predictive Control (MPC) framework that optimally balances electricity and heat production. Within FLEX-SMR, this PhD focuses
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cooling is also intrinsically linked to heat extraction, structural integrity, and irradiation-induced material damage, TBR optimisation represents a highly coupled neutronic–thermomechanical challenge
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are conventionally operated as baseload assets, yet coupling HTGRs with large-scale thermal energy storage (TES) could fundamentally alter this paradigm. By storing surplus reactor heat during periods of low demand
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Thermally Sprayed Coatings for ablation and high heat flux conditions Background UK applicants are invited to undertake a 3-4 year, fully-funded PhD studentship (fees and enhanced stipend) within
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) at the University of Nottingham, funded by the UK government. There is a critical need to develop materials and coatings that can withstand ultra-high temperature (UHT) conditions while maintaining structural
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About the project: Turning Up the Heat: Modelling and Scale-Up of Thermochemical Energy Storage Supervisor: Dr Ferran Brosa Planella, University of Warwick Heating accounts for nearly half of global
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, equipment, and travel related to the project. Overview Deep geothermal reservoirs can provide a long-term, sustainable supply of heat and energy to serve society’s needs. The performance and operational
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PEPR website: www.pepr-batteries.fr . Mission You will contribute actively to the development of methods for analysing heat generation of lithium-ion and sodium-ion batteries. Main activities
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exposed to very high pressures and temperatures, as well as high shear rates. Reliable measurements under such conditions are essential for the design of efficient, durable and electrified machinery, yet