Geothermal Energy: Harnessing the Earth’s Natural Power

The rise of geothermal energy

Geothermal energy is rapidly emerging from niche status to become one of the most promising sources of clean, always‑on renewable energy. As global demand accelerates – particularly driven from AI, cloud computing and data‑centre growth – geothermal offers scalability, reliability and a minimal surface footprint.

  • 17 GW

    global geothermal power capacity in December 2025

  • The US supplies 23%

    of the world’s geothermal power generation

  • Global data‑centre power demand set to double to

    ~1,000 TWh by 2030

  • 135 GW

    of developable EGS capacity has been identified in the Great Basin, Southwestern US

What is geothermal energy?

Geothermal energy captures naturally occurring heat stored beneath the Earth’s surface and brings it to the surface through wells, using systems similar in architecture to the oil and gas industry.

Geo = Earth

Thermal = Heat

There are three primary types of geothermal technologies:

  • Conventional Systems

    Use naturally permeable reservoirs to extract hot brine or steam for heating or electricity.

  • Enhanced Geothermal Systems (EGS)

    Use stimulation to create artificial permeability in tight or dry hot rock, enabling heat extraction where natural reservoirs do not exist.

  • Advanced Geothermal Systems (AGS)

    Predominantly closed-loop systems that circulate a working fluid through deep sealed wellbores to absorb heat from surrounding rocks, removing the need to extract subsurface fluids.

The challenge: a developing fit-for-purpose geothermal insurance products

Current products are often adapted from oil and gas legacy structures and do not reflect geothermal’s unique risks, technologies or operational characteristics.

Underwriting challenges include:

  • Lack of international standards for well design & construction and well control

  • While the total reported number of losses remains relatively low, a few large natural catastrophe (NatCat) claims can have a significant impact 

  • Increasing third‑party liability exposure from EGS‑related induced seismicity

The
challenge

  • Concentrated development in volcanic or higher‑risk geographies

  • Legacy policy wordings (e.g. EED 8/86 - a standard insurance package policy form for Energy Exploration and Development in the offshore oil and gas industry) that do not sufficiently match the dynamics of a loss of well-control event for geothermal wells

  • Historically inconsistent maintenance standards in parts of the industry

Loss history:small industry, big losses

Despite low recorded claims frequency, a small number of large events can quickly overwhelm the current modest premium pool of the industry.

Geothermal Loss History (Global, WELD)

  • 47 recorded geothermal losses since 2000 totalling over $800m

  • The costliest losses come from natural catastrophes (volcanoes and earthquakes)

  • The most frequent losses stem from turbine failures and blowouts

  • The 2018 eruption of Mt. Kilauea caused losses of $132m at the Puna Geothermal Venture

The standards gap - and the shift underway

Until recently, geothermal lacked a unified international risk‑classification and standards framework.

That is now changing.

In 2025, the International Association of Drilling Contractors (IADC) and the International Geothermal Association (IGA) jointly established an IADC Geothermal Committee to help define a global standard for geothermal drilling.

This includes:
  • A Geothermal Well Classification document (already published)

  • Geothermal Well Complexity Index

  • A Geothermal Well Control Guidelines document (recently published)

  • Additional working groups focused on well design, rig and equipment and drilling technologies – each responsible for drafting corresponding international guidelines.

Together, these efforts aim to create the shared technical language necessary for operators, insurers, banks and investors to align understanding and enable the scaling ambitions for the industry.

Emerging opportunities: why geothermal’s moment is now

1.The AI-driven surge in energy demand

Global data‑centre electricity consumption is expected to almost double from 2025 to 2030, driven by cloud computing and high-density workloads. Geothermal’s stable baseload and small surface footprint make it a natural fit for large‑scale tech partnerships (for example, the major project partnership announced by Meta and Sage Geosystems, a client currently underwritten (and led) by Starr).

2.Cost competitiveness

The Levelized Cost of Electricity (LCOE), a universal measure comparing renewable power generation technologies, has fallen significantly for geothermal relative to wind and solar:

  • $0.06/kWh in 2024

  • 17% reduction from 2023

  • 24% cheaper than offshore wind

3.Breakthrough technologies

Novel technologies have the potential to unlock vast regions for future geothermal development:

Top Locations for Geothermal Production

  • Laser drilling trials showing major cost‑reduction potential

  • Multi-loop AGS designs for higher heat extraction efficiency

  • With continued technology improvements and reductions in project costs, geothermal could meet up to 15% of global electricity demand growth to 2050 (Source: IEA)

Supporting geothermal growth through insurance

As standards mature and technologies advance, insurers can play a pivotal role in scaling geothermal safely and sustainably.

  • Better risk profiling

    Differentiate complexity at project, site and well levels to align perception and reality of technical risk that underpins policy terms.

  • Tailored insurance products

    Move away from oil & gas policy templates toward geothermal‑specific wordings that reflect geothermal nuances.

  • Risk reduction partnerships

    Insurers with strong engineering expertise can actively support risk mitigation, making geothermal underwriting more seamless.

  • Enabling investment

    Robust insurance frameworks attract investors and promote sector growth.

Supporting geothermal growth through insurance

  • Assess geological, geographic and well‑execution risks using emerging IADC standards

  • Review drilling plans to anticipate operational challenges

  • Evaluate operator competency, maintenance history and well‑control capability

  • Align risk classification with tailored policy terms

Our Commitment

At Starr, we work closely with brokers and clients to support the safe and sustainable growth of geothermal energy. Our underwriting approach combines global energy expertise with technical insight to deliver clear, practical insurance solutions for an evolving sector.

Starr’s Risk Engineer, Darryl Krobel, participates in the IADC Geothermal Well Control working group, contributing to the development of industry guidelines for geothermal well control. We also work with a leading US well control training provider to develop tailored insurance products and training for drilling operators and contractors.

In parallel, Starr is developing targeted endorsements and amendments to the EED 8/86 policy wording, working with legal specialists to ensure coverage is fit for purpose for geothermal drilling as the industry continues to scale.

Our Other insights

The recovery economy: How insurance rebuilds, redevelops and creates resilience

When conflict ends, rebuilding begins. But recovery isn't just about clearing rubble or restoring power lines, it's about restoring trust, restarting trade and reconnecting economies to the global system. That process takes capital, coordination and confidence. Insurance sits quietly at the centre of all three.

What ships do in the shadows: The rise of the dark fleet

The rise of the dark fleet is less about individual vessels and more about the risks it creates across the wider market. Trade fragmentation, ageing fleets and increased regulatory scrutiny are all adding complexity to underwriting and claims.

Deception on your dinner plate: Inside the world of food fraud

Food fraud is a serious and growing global issue, costing the food industry between $10 billion and $40 billion each year.

How do you identify risks to vulnerable assets from strikes, riots and civil commotion?

Global civil unrest events have risen by 55% between 2023 and 2024. Often, urban protests or mass gatherings have a cascading impact, damaging property and interrupting business.