Close
MCE 2026
World Hydrogen & Carbon Americas

Manchester Geothermal Energy Source Found Under City Centre

Note* - All images used are for editorial and illustrative purposes only and may not originate from the original news provider or associated company.

Subscribe

- Never miss a story with notifications

- Gain full access to our premium content

- Browse free from any location or device.

Media Packs

Expand Your Reach With Our Customized Solutions Empowering Your Campaigns To Maximize Your Reach & Drive Real Results!

– Access the Media Pack Now

– Book a Conference Call

Leave Message for Us to Get Back

Related stories

UK Offshore Wind Auction Delivers Record Capacity Boost

The latest UK offshore wind auction secured 8.2 gigawatts...

Energy Efficiency as Power Capacity: Reducing Generation and Transmission Needs

Energy efficiency represents a supply-side solution for power sectors, directly reducing peak loads and deferring generation capacity additions. Discover how advanced efficiency measures lower infrastructure requirements and optimize long-term power system costs.

Digital Energy Management: Transforming Power Consumption Patterns Through Data Intelligence

Advanced digital platforms and data analytics are fundamentally reshaping when, where and how electricity is consumed. Explore how intelligent energy management systems enable real-time optimization and cross-system coordination.
- Advertisement -

Scientists have identified a major Manchester geothermal energy source deep beneath the University of Manchester, revealing the potential for large-scale clean power generation within the city.

The finding emerged from a knowledge exchange project between remote sensing firm Metatek and the University of Manchester. Researchers combined historic subsurface data from the 1980s with new land gravity measurements collected in 2025 to analyse geological structures around 2,000 metres below the university campus.

Using a simplified version of Metatek’s airborne gravity technology, the team mapped high-temperature zones created by burial depth and pressure. These zones suggest conditions suitable for geothermal energy extraction in an urban setting.

Dr David Johnstone, Senior Geoscientist at Metatek, said: “Our project, and subsequent work, provides the building blocks to create a detailed 3D geological model of the strata beneath the University campus, allowing us to select a drill location that could target high temperature zones due to the burial depth and pressure.”

He added that the Manchester geothermal energy source could “unlock a tremendous amount of cheap and clean energy” and potentially offset a significant portion of the University’s annual energy demand, which exceeds 100 GWh.

That level of output would be comparable to the electricity use of around 25,000 homes, roughly equivalent to the town of Altrincham. Researchers said the energy potential matches the output of about 100,000 solar panels, with a similar payback period to other renewable technologies.

A potential drilling site has been identified within Cecil Street Car Park, requiring a surface footprint no larger than a tennis court.

Johnstone said: “We have calculated that the best access point to create a geothermal well would be an area no bigger than a tennis court, in a corner of Cecil Street Car Park.”

The recent survey has produced the most detailed geological assessment yet of Manchester’s subsurface. Given the scale of the findings, the research team plans to expand the work using Metatek’s full airborne gravity imaging system to explore geothermal opportunities beneath other urban areas.

Latest stories

Related stories

UK Offshore Wind Auction Delivers Record Capacity Boost

The latest UK offshore wind auction secured 8.2 gigawatts...

Energy Efficiency as Power Capacity: Reducing Generation and Transmission Needs

Energy efficiency represents a supply-side solution for power sectors, directly reducing peak loads and deferring generation capacity additions. Discover how advanced efficiency measures lower infrastructure requirements and optimize long-term power system costs.

Digital Energy Management: Transforming Power Consumption Patterns Through Data Intelligence

Advanced digital platforms and data analytics are fundamentally reshaping when, where and how electricity is consumed. Explore how intelligent energy management systems enable real-time optimization and cross-system coordination.

Heat Pumps as Strategic Grid Assets Enabling Renewable Integration and Stability

Modern heat pumps have evolved beyond efficiency technologies to become strategic grid assets capable of providing demand flexibility, load shifting and seasonal balancing. Discover how large-scale heat pump deployment supports renewable integration and grid stability.

Subscribe

- Never miss a story with notifications

- Gain full access to our premium content

- Browse free from any location or device.

Media Packs

Expand Your Reach With Our Customized Solutions Empowering Your Campaigns To Maximize Your Reach & Drive Real Results!

– Access the Media Pack Now

– Book a Conference Call

Leave Message for Us to Get Back

Translate »