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EGS Geothermal Power

"The Stone Age did not end Because We ran out of stone"

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An Infinite Energy from the Earth, Powering a Cleaner Tomorrow

Realizing carbon neutrality and eco-friendly infinite energy to power the pristine baseload of future smart cities. We harvest the boundless thermal energy from deep within the Earth and convert it into clean, distributed power, establishing the absolute foundation for sustainable cities of tomorrow.

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An infinite source of base energy.

We propose a new paradigm for next-generation EGS geothermal power generation that overcomes weather conditions and geographical limitations.

Principle of Earth's Deep Energy Capture.

When water at ambient temperature is injected at high pressure into the deep rock formation through the Injection Well, micro-fractures expand to create an Enhanced Geothermal Reservoir. The fluid, transformed into high-temperature hot water through the rock heat-transfer process, moves to the Production Well to drive the power generation turbines.

 

At this stage, the total thermal energy recovered, Q, is quantified as follows:

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Comparison of characteristics by renewable energy source.

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A promise leading a sustainable vision.

By converting the infinite thermal energy from deep within the Earth into clean, distributed power, we lay the absolute foundation for a carbon-neutral and fully smart future city.

his brochure provides a detailed guide on core geothermal power technologies and their various industrial applications. Click the icon to download the technical summary.

Summary of Geothermal Power Technology

Indonesia 30GW Project.

Construction cost USD 100 million.

CIBUNI Geothermal Power Project Economic Analysis

As a 30MW geothermal power project utilizing verified geothermal resources in the geothermal region of West Java, Indonesia, the economic feasibility assessment results are excellent.

 

The project's Internal Rate of Return (IRR) (11.64%) exceeds Indonesia's benchmark interest rate (4.75%), and the Net Present Value (NPV) is positive, indicating sufficient economic feasibility.

 

The Benefit-Cost Ratio (B/C) is 1.76 times, exceeding the benchmark of 1.0, indicating high investment utility relative to costs and very favorable business prospects.

 

The project demonstrates excellent cash generation capabilities, with a total net income of USD 235 million over 30 years, amounting to 2.35 times the total investment ($100 million).

 

The payback period for total project costs is a favorable 9 years, making it a highly excellent project that guarantees stable cash flow.

 

The Cibuni 30 MW geothermal power project is an excellent cash flow business, generating Free Cash Flow (FCF) of USD 12,726,519 starting from the first year of operation.

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