Digital tools are omnipresent and their rise exponential. Cloud and digital services have improved our lives and, overall, reduced carbon emissions, although at the expense of a growing electricity demand from data centres. Remarkably, nearly half the data centre electricity input is for self-cooling, which provides an opportunity for a technology able to harness low-grade heat and turn it into cooling power. The co-location of energy in form of heat and water is an opportunity.The project focuses on the mathematical modelling and optimization of a proof-of-principle heat-powered cooling process that reduces waste heat and greenhouse gas emissions and boosts return on investment, while meeting all the sustainability criteria.Special modelling, including machine learning, and cost of manufacturing tools guide the development of an optimised heat-to-cold concept designed to break through current barriers to commercialisation. In this project, you will design digital tools for an innovative technology that uses low temperature heat for the production of cold by exploiting recent discoveries in material science and engineering [1, 2]. The ambition of this project is to earn the sector’s support and enable the widespread use of heat-powered cooling in place of the current electricity-driven counterpart. You will work in the Emerging Sustainable Technologies Laboratory (ESTech Lab) [3], be part of a world leading research group in sustainable technologies towards the development of a proof-of-concept super-efficient processes for heat-powered cooling, have access to state-of-the-art computing facilities and brainstorm new technological avenues for cooling.Your studies will be carried out at the Institute for Materials and Processes (IMP) and could include occasional experiments to validate models. You will attain skills in modelling, design and testing of innovative technologies for cooling.Please note, the position will be filled once a suitable candidate has been identified.[1] https://onlinelibrary.wiley.com/doi/full/10.1002/ente.202300548[2] https://pubs.acs.org/doi/10.1021/acs.est.9b06037[3] https://www.linkedin.com/in/giulio-santori-a365546/ Closing date:  Sun, 31/05/2026 - 12:00 Apply now Principal Supervisor Dr Giulio Santori Eligibility Minimum entry qualification - an Honours degree at 2:1 or above (or International equivalent) in a relevant science or engineering discipline, possibly supported by an MSc Degree. As well as:Proficiency with Labview or similar data acquisition and controlProficiency with dynamic identification methodsFurther information on English language requirements for EU/Overseas applicants.Desirable criteria:knowledge of thermodynamics of fluid phase equilibria or physical chemistry;knowledge of computational tool such as Matlab, Mathcad, Mathematica etc… with emphasis on graphical user interface design. Funding A number of scholarships are available to competitive candidates. For more information on the funding application process, please contact the project’s supervisor or visit the School of Engineering website.Applications are also welcomed from self-funded students. Informal Enquiries g.santori@ed.ac.uk