Thermal loading on mudstones

EPSRC · United Kingdom government procurement

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September 29, 2026
Response Due
Active
Status

Opportunity Overview

The long-term geological disposal of radioactive waste has three potential host rocks: crystalline rocks, evaporites and lower strength sedimentary rocks. The latter, which are normally mudstones, are attractive due to their low permeability and plastic deformational characteristics.

The mechanics of UK mudstone successions have been extensively researched (e.g. Cripps and Taylor 1986, 1987, Hobbs et al 2002), but with an emphasis on their strength properties at the near surface, and all such work has been carried out at ambient (room) temperatures. Prior work carried out at the University of Leeds in collaboration with the BGS and Arup suggests that thermal damage in sandstones is evident at modest temperatures ranging from 50o-125oC (Woodman et al., 2021). This suggests that materials subject to heating in this range, and then subjected shearing will mobilise lower strengths than those tested under ambient (20o-25oC) conditions.

Given the proposed uses of mudstone/clay formations as a host rock for the disposal of thermogenic radioactive waste in Europe, there is a need to understand processes affecting mudstones generally, especially where there are different compositional differences such as variations in silt content. There is therefore, a clear need to investigate the mechanics of mudstones under elevated temperatures in order to identify controlling factors on process impacting on long term performance.
This research aims to:
- Investigate experimentally the thermo-mechanical changes in lower strength sedimentary rocks subject to thermal loading and whether there is a threshold level for different levels of damage;
- Identify the mechanisms that control the response of the rock material which can be used in a process model to predict long term behaviour
- Upscale the results of laboratory observations to evaluate damage and identify the extent and consequences of a thermally disturbed zone around the storage of any thermogenic wastes.

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Solicitation Details

Issuing agencyEPSRC
CountryUnited Kingdom
CategoryResearch Development
PublishedSeptember 30, 2022
Procurement stageActive solicitation
Response dueSeptember 29, 2026
StatusOpen — accepting responses
Official sourceView original notice
Last verifiedAugust 10, 2026

Source: UK Research and Innovation (UKRI) — Open Government Licence v3.0.

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