Geo XT taps India's deep heat with enhanced geothermal systems — drilling into hot dry rock to deliver firm, 24/7 clean power that doesn't blink when the sun sets or the wind drops.
Horizontal drilling, hydraulic stimulation and distributed fibre-optic sensing turn hot dry rock into a managed reservoir, unlocking firm clean power beneath India's established thermal provinces.
Directional wells reach hot crystalline rock beneath established thermal provinces, guided by surface-spring and gradient surveys.
Controlled stimulation opens a network of fine fractures, engineering permeability into rock that was previously sealed.
Water is injected down one well, sweeps heat from the fracture network, and returns superheated through a production well.
A binary cycle converts the recovered heat to electricity, then re-injects the cooled water in a closed loop.
The injection side is engineered to be unobtrusive and water-disciplined — critical for a country managing scarce water and dense communities.
The output is the thing India's grid struggles to buy cleanly: power that is there at 2pm and 2am alike.
India's geothermal heat is concentrated along well-studied belts — from the high Himalaya to the rift basins of the west and the Godavari graben in the south.
India's highest-priority field, with boiling springs and shallow high-temperature gradients in a cold, energy-starved region.
Long-known hot springs in the Parvati valley, well placed for combined power and direct-heat use.
Site of India's first geothermal power pilot, on a major intracratonic thermal lineament.
A cluster of hot springs over deep basement faults, close to eastern industrial load.
High heat flow in a deep sedimentary basin — abundant subsurface data shortens the path to production.
Rift-related thermal anomalies in the Godavari graben, near growing southern demand.
As India builds the world's largest renewable fleet, the missing piece is clean firm power. Engineered geothermal can be that backbone — buildable near demand, available every hour, for generations.