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Field
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-funded by Leonardo. This project aims to design and manufacture heat exchangers for high power thermal management in defence applications, while leveraging on the latest computational techniques. Additive
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CFD-FEA Combined Thermal-Fluid-Mechanical Modelling for Defect Control in Additive Manufacturing PhD
manufacturing, specifically focused on directed energy deposition process utilising metal wire as the primary feedstock. Within this exciting realm, through CFD-FEA combined thermal-fluid-mechanical modelling, we
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to record thermal images of feet of their patients, and with biomedical engineers to model the data for an AI system that can detect the wounds likely to have delayed healing. You love people and Digital
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Status: Closed Applications open: 7/07/2023 Applications close: 25/08/2023 View printable version [.pdf] About this scholarship Description/Applicant information Thermal energy storage (TES) enables
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the population. Uni.lu provides a reduced-scale laboratory prototype, which is capable to cover any building-relevant types of energy, namely thermal (space heating, space cooling and domestic hot water) and
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A major challenge for defence & security laser systems is managing the heat generated and differential thermal expansion of the different components in the system. A compounding challenge is the
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conditioning system in PCS, and building system. The aim of this proposed PhD project is to characterize the effectiveness of personal thermal comfort systems via a detailed analysis of heat transfer between
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4-year Industrially funded D.Phil. studentship that includes joining the Faraday Institution PhD Training Programme and an industry internship. Project: The impact of thermal-mechanical
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3 levels of human body comfort, local conditioning system in PCS, and building system. The aim of this proposed PhD project is to characterize the effectiveness of personal thermal comfort systems via
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. The high-temperature limit for safe operation of FM steels of approx. 550C is governed by thermal creep strain effects and helium embrittlement. There is currently a strong thrive to develop novel Reduced Activation FM