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So what support is there for deep geothermal projects?
That contrasts strikingly with the more glamorous sister of deep geothermal energy, nuclear power.
As it is known the waters in the deep geothermal wells are usually very aggressive to the applied cementing materials.
However, we recognise that deep geothermal could have a part to play in the UK's energy mix going forward, but for direct heat use, rather than power generation".
But even Decc's own and very conservative estimate is that deep geothermal - a few kilometres down - could provide 10% of the UK's electricity.
The team behind the £18m scheme hopes to create the UK's first deep geothermal power station and ignite a renewed interest in the technology's wider potential.
This paper describes the first steps in the design of new custom-made tracers for the investigation of thermal characteristics in deep geothermal reservoirs.
In shallow or not much deep geothermal reservoirs with temperature below 100 °C, the two phase closed loop thermosyphon can transfer heat very efficiently.
Deep geothermal resources often require enhancement of the permeability of hot-dry rock at significant depths (4-6 km), which can induce seismicity.
Operations in deep geothermal boreholes are a technical challenge due to harsh conditions such as high pressures, high temperatures, limited space and corrosive thermal water.
Up to this point, technical challenges related to pore fluid confinement made difficult to measure electrical conductivity at temperatures and pressures representative of very deep geothermal reservoirs.
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