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PhD Studentship: Investigating water-rock interactions influence geothermal reservoir susta

Job in Newcastle upon Tyne, Newcastle, Tyne and Wear, SY7, England, UK
Listing for: Newcastle University
Apprenticeship/Internship position
Listed on 2026-07-24
Job specializations:
  • Engineering
    Research Scientist, Environmental Engineer
  • Research/Development
    Research Scientist
Salary/Wage Range or Industry Benchmark: 18702 - 22858 GBP Yearly GBP 18702.00 22858.00 YEAR
Job Description & How to Apply Below
Position: PhD Studentship: Investigating how water-rock interactions influence geothermal reservoir susta[...]
Location: Newcastle upon Tyne

Award summary

100% home fees covered, and a minimum tax‑free annual living allowance of £20,780 (2025/26 UKRI rate). An additional allowance will be provided to contribute towards consumables, 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 lifespan of geothermal systems depend on the subsurface distribution of heat, fluid flow pathways, and recharge mechanisms and fluid chemical composition. These factors control the precipitation, dissolution and alteration of minerals, which can clog wells (e.g., through scale formation) and change the physical characteristics of reservoirs, affecting their performance.

The aim of this project will be to advance efficient evaluation of how fluid composition and temperature perturbations influence mineralogical alteration and, ultimately, reservoir performance and development decisions.

The project will address this challenge through quantifying the conditions under which geochemical alteration occurs, and the associated uncertainty in predicting reservoir behaviour. This will be done with laboratory investigations and geochemical modelling. Specifically, you will:

  • Characterise variability in mineralogical and petrophysical properties resulting from fluid‑rock interactions under representative reservoir conditions.
  • Evaluate the impact of fluid composition and temperature variations on reservoir properties, and assess the implications for permeability and porosity.
  • Assess the influence of scale‑dependent heterogeneities and depositional facies on the distribution and extent of alteration processes.
  • Develop a systematic workflow for integrating experimental observations and reactive transport modelling to construct predictive models of formation alteration.
Funding and partners

The project is funded by Eni S.p.A through the UK Energy Futures research partnership, bringing together geoscientists, engineers and social scientists to advance geoenergy research across the N8 Research Partnership.

Details
  • Number of awards
    : 1
  • Start date
    : 1st October 2026
  • Award duration
    : 3.5 years
  • Sponsor
    :
    Industry – ENI
  • Name of supervisor/s:
    • Sanem Acikalin – Newcastle University
    • Tom Reershemius – Newcastle University
    • Stuart Jones – Durham University
Eligibility criteria

You must have, or expect to gain, a minimum 2:1 Honours degree or international equivalent in a subject relevant to the proposed PhD project (e.g. Earth Science, Geology, Geochemistry or equivalent).

This studentship is open to those who qualify for home tuition fees only. If you are not sure if you qualify, please contact

Contact details

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