Geothermal Energy - 4th September 2026 - PIB Backgrounder - Gazette Notification PDF
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PIB Backgrounder
Geothermal Energy
A New Chapter in India's Clean Energy Journey
Posted On: 04 SEP 2026 2:43PM by PIB Delhi
The intense heat in the Earth's interior is a powerful source of clean energy called geothermal energy.
Given India's rich geothermal resources, this form of energy holds immense promise as a round-the-
clock available source of power. The National Policy on Geothermal Energy aims to harness this
potential. It seeks to make geothermal energy a key part of the nation's renewable energy story as India
drives towards Net Zero by 2070. The recent commissioning of the first two geothermal wells in Ladakh
marks the beginning of this journey.
Harnessing Geothermal Energy for a Sustainable India
Deep below the Earth's surface, emanating from the intense heat of its interiors, lies a constant, low-
carbon source of energy called geothermal energy. In locations with suitable geology and tectonics, this
energy can be tapped to generate power or used directly on the ground. Unlike solar and wind energy, this
source provides renewable energy that is available round the clock. Recognising this potential, the
Government notified the National Policy on Geothermal Energy in September 2025. The policy charts a
clear roadmap for exploring and developing India's geothermal resources. The Ministry of New and
Renewable Energy (MNRE) is the nodal ministry for its implementation.
Building on this framework, India achieved a historic milestone in July 2026. The ONGC Energy Centre
commissioned the country's first two geothermal wells in Puga Valley, Ladakh. At a height of over
14,000 feet above sea level, Puga Valley is among India's most promising geothermal sites, known for its
hot springs and underground heat reserves. The two 1,000-metre-deep wells will support reservoir
evaluation. They also pave the way for India's first 1-megawatt demonstration geothermal power
project, marking the country's entry into geothermal power generation.
As India advances its clean energy transition, geothermal power offers a dependable, indigenous way to
diversify the nation's renewable energy mix.Understanding Geothermal Energy: An Overview
Geothermal Energy is a steady, low-carbon and weather-independent energy source. It holds a vast
untapped resource base to strengthen India's clean energy future and cut reliance on fossil fuels.
Formation of Geothermal Energy
The Earth's interior consists of four main layers: the outermost, solid crust; the middle, semi-solid mantle;
and the core divided into a dense liquid outer core and solid inner core. The temperature of the interior
rises with depth - the mantle temperature reaches about 3700 Celsius degrees at its boundary with the
core, while the core temperature goes up to 5000- 6000 Celsius. This heat is generated by radioactive
decay of elements like uranium, thorium, and potassium, as well as residual heat left over from the planet's
formation. This heat gives rise to huge convection currents in the mantle, as hot material moves up from
the core boundary towards the cooler, upper parts of the mantle and crust. This material also contains
water trapped as hydroxides. These convection currents give rise to all tectonic activity, including
earthquakes, volcanoes and mountain building. In geologically active regions, faults and fractures let the
hot material travel closer to the surface. This process creates reservoirs of hot water and steam, trapped
within permeable rock. This thermal energy, harnessed from within the Earth, is known as geothermal
energy.
From Geothermal Energy to Power ProductionGeothermal power generation converts the earth's natural heat into electricity by tapping hot water and
steam trapped beneath the surface. Deep wells bring these resources up to the surface. The steam then
drives a turbine connected to a generator. This process resembles conventional thermal power generation.
However, it replaces fuel combustion with naturally occurring underground heat. After power generation,
the used water is condensed and reinjected into the reservoir. This supports resource replenishment and
enables continued energy production. Geothermal energy also supports direct heat applications across
district heating, agriculture, aquaculture, and space heating & cooling, enabling efficient utilisation of
geothermal heat.
Inside the Earth
From the centre outward, the Earth is structured in four distinct layers. The inner core is a solid ball of
iron and nickel, about 2,400 km wide. The outer core surrounding it is a liquid layer of molten iron and
nickel, roughly 2,400 km thick. The mantle, composed mostly of hot, dense rock, extends nearly 2,900
km and forms the largest layer. Finally, the crust is the thin, solid outer layer, ranging from about 5 to 8
kilometres thick beneath the oceans to 24 to 56 kilometres thick beneath the continents.
India's Geothermal Resource Base
India's varied geology offers a strong foundation for geothermal development. The Geological Survey of
India (GSI) has mapped 381 hot springs and identified 10 geothermal provinces nationwide. India's
theoretical geothermal prospect stands at nearly 10.6 GW. Of this, 42 sites have been recognised as
promising for power generation and direct heat use.
The 10 geothermal provinces include the Himalayan Geothermal Province, Naga-Lusai, Andaman and
Nicobar Islands, Son Narmada Tapi (SONATA), West Coast, Cambay Graben, Aravalli, Mahanadi,
Godavari, and South Indian Cratonic regions.India's geothermal rift basins hold strong scope, owing to favourable geology and tectonics. But suitable
projects can arise anywhere geothermal resources exist. Advanced technologies like Enhanced
Geothermal Systems (EGS) and Advanced Geothermal Systems (AGS) will further widen exploration
opportunities.
Repurposing Abandoned Oil and Gas Wells
Geothermal energy can be extracted from abandoned oil and gas wells. Inactive or unproductive wells
can potentially be repurposed for geothermal initiatives, subject to technical and operational feasibility.
This approach builds on existing drilling expertise, well data and infrastructure from the oil and gas
sector.
India’s Geothermal Expansion
India is moving from resource assessment to field demonstration with remarkable speed. This momentum
is reflected in the Ministry of New and Renewable Energy sanctioning five research and development
projects between July and August 2025, covering resource assessment, indigenous technology
development and field demonstration. The projects span electricity generation, heating and cooling
applications. These efforts are generating the technical data and field experience needed for future
commercial deployment.
Project Current Status of Government-supported Projects
as of 12 December 2026Ankleshwar, Gujarat A pilot project evaluating electricity generation by retrofitting unproductive
oil and gas wells. Field investigations and baseline geological and production
data have been completed.
Gandhinagar, A demonstration project integrating solar and geothermal energy has drilled
Gujarat three geothermal wells that produce geothermal fluid at 70 to 80°C and has
demonstrated electricity generation of 50 to 90 kilowatts.
Tawang, Arunachal Studies are underway at five geothermal sites to assess the region's
Pradesh geothermal resource through field investigations and geochemical analysis.
Hyderabad, A research project is developing a geothermal cooling system for air
Telangana conditioning applications using modelling and performance analysis.
Shallow Geothermal Pilot study is developing analytical models to evaluate shallow geothermal
Energy systems using Borehole Heat Exchangers for heating and cooling
applications.
Significant geothermal resources, advancing technologies and early field activity are laying the foundation
for a future of geothermal energy in India. While commercial-scale power generation is yet to be
established, expanding well fields, demonstration activities and research and development initiatives are
strengthening the ecosystem for wider deployment.
Unlocking India’s Geothermal Potential: Policy & Partnerships
Geothermal energy is a proven, established renewable technology worldwide. Global installed capacity
reached 15.67 GW by the end of 2025. Indonesia, the US, the Philippines, Türkiye and New Zealand
lead the field, together holding around 67% of global capacity. India is now building a strong ecosystem to
advance geothermal energy from resource assessment to real-world deployment. National programmes
and international partnerships are driving this mission forward, powering research, technology
development and knowledge exchange across the sector.
National Policy on Geothermal Energy, 2025
The National Policy on Geothermal Energy aims to establish geothermal energy as a major renewable
pillar. It promotes systematic exploration and deployment of India's geothermal resources. The Policy
prioritises research, drilling, reservoir management, and direct-use applications. It also supports Ground
Source Heat Pumps (GSHPs) for heating and cooling. A clear regulatory framework encourages both
public and private sector participation. The Policy facilitates repurposing abandoned oil and gas wells for
geothermal use. It further supports a national geothermal data repository, pilot projects, and Centres of
Excellence.Renewable Energy Research and Technology Development Programme (RE-RTD)
MNRE is implementing the RE-RTD scheme through research institutions and industry partners. This
initiative aims to develop indigenous, cost-effective technologies for renewable energy, including
geothermal energy, across the country.
International Collaborations
India has advanced its geothermal energy efforts through collaborations with several international
partners. Under cooperation mechanisms with Australia and Iceland, geothermal energy has been
identified as a key area of cooperation. Similarly, an MoU with the Kingdom of Saudi Arabia designated
geothermal energy as a focus area of bilateral engagement.
These initiatives are providing a coordinated platform for translating India’s geothermal resources into
scalable solutions across sectors.
New Dimension in India’s Renewable Energy Mix
India's geothermal energy journey reflects the Government's steadfast commitment to energy security and
sustainable growth. From notifying the National Policy on Geothermal Energy to commissioning the
country's first two geothermal wells at Puga Valley, Ladakh, India has moved decisively from planning to
implementation. The country holds a theoretical geothermal resource potential of nearly 10,600 MW.
Growing pilot projects and strengthening international collaborations are expanding its applications, from
power generation to heating, geo-tourism and agriculture. Geothermal energy is thus emerging as a
valuable addition to India's renewable energy portfolio. As India advances towards its 2070 Net Zero
target, geothermal energy will remain a steady, indigenous pillar of the country's energy transition and
progress.
References:
Ministry of New and Renewable Energy
https://mnre.gov.in/en/notice/national-policy-on-geothermal-energy/
https://sansad.in/getFile/annex/269/AU1097_29PJgg.pdf?source=pqars&utm_sourcehttps://www.pib.gov.in/PressReleasePage.aspx?PRID=2200435®=3&lang=1
https://www.pib.gov.in/PressReleaseIframePage.aspx?PRID=1953550®=48&lang=2
https://www.pib.gov.in/PressReleasePage.aspx?PRID=2167657®=48&lang=2
Administration of Union Territory of Ladakh
L-G VK Saxena commissions India’s first two geothermal wells at Puga Valley in Ladakh. | The Ad
ministration of Union Territory of Ladakh | India
Ministry of Information and Broadcasting
https://newsonair.gov.in/india-has-commissioned-its-first-ever-geothermal-wells-in-ladakh-union-mi
nister-pralhad-joshi/
Telangana Renewable Energy Development Corporation Ltd
https://tgredco.telangana.gov.in/Geothermal.aspx
International Renewable Energy Agency
https://www.irena.org/-/media/Files/IRENA/Agency/Publication/2026/Mar/IRENA_DAT_RE_capa
city_statistics_2026.pdf?utm_source
U.S. Department of Energy
https://www.energy.gov/hgeo/geothermal/geothermal-electricity-generation
U.S. Energy Information Administration
https://www.eia.gov/energyexplained/geothermal/
https://www.eia.gov/analysis/studies/powerplants/capitalcost/pdf/capital_cost_AEO2025.pdf?utm_s
ource
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