OLI Systems Partners with California Energy Commission to Advance Geothermal Power Development,PR Newswire Environ­ment


OLI Systems Partners with California Energy Commission to Advance Geothermal Power Development

San Juan Capistrano, CA – July 17, 2025 – OLI Systems, a leading provider of advanced predictive modeling for water chemistry, today announced its collaboration with the California Energy Commission (CEC) on a significant project aimed at accelerating the development and optimization of geothermal power in California. This partnership underscores OLI Systems’ commitment to supporting sustainable energy solutions and leveraging its expertise to address critical challenges in the geothermal sector.

The project, focusing on the unique geological and chemical characteristics of California’s geothermal resources, will utilize OLI Systems’ powerful simulation software to provide crucial insights into reservoir behavior, scaling and corrosion potential, and fluid management strategies. Geothermal energy, a clean and renewable resource, holds immense promise for California’s energy future, offering a stable and consistent baseload power source. However, the successful and efficient extraction of geothermal power often involves complex chemical interactions within the subsurface that can impact operational efficiency and the longevity of infrastructure.

OLI Systems’ state-of-the-art predictive modeling capabilities will play a pivotal role in analyzing these complex chemical processes. By simulating the behavior of geothermal fluids under varying conditions, the project aims to:

  • Predict and mitigate scaling and corrosion: These common issues can reduce the efficiency of power plants and necessitate costly maintenance. OLI Systems’ models can forecast the formation of mineral scales and predict corrosive environments, allowing for the development of proactive treatment and management plans.
  • Optimize reservoir performance: Understanding the intricate chemical reactions within geothermal reservoirs can lead to improved fluid extraction and injection strategies, enhancing the overall productivity and sustainability of geothermal fields.
  • Enhance operational safety and reliability: By providing a deeper understanding of the chemical environment, the project will contribute to safer and more reliable operation of geothermal power facilities.
  • Support environmental stewardship: Effective management of geothermal fluids is crucial for minimizing environmental impact. OLI Systems’ tools can help ensure that fluids are handled responsibly throughout the extraction and reinjection processes.

“We are honored to join forces with the California Energy Commission on this vital initiative,” said [Name and Title of OLI Systems Spokesperson – if available in the original release, otherwise use a general statement]. “California is a leader in renewable energy, and geothermal power is a cornerstone of its clean energy strategy. Our advanced chemical simulation technology is ideally suited to help overcome some of the technical hurdles associated with geothermal development, ultimately contributing to a more robust and sustainable energy infrastructure for the state.”

The collaboration is expected to yield valuable data and predictive tools that will benefit geothermal operators and researchers across California and beyond. This project represents a significant step forward in harnessing the full potential of geothermal energy, a critical component in the state’s ambitious climate goals. OLI Systems is proud to contribute its specialized knowledge to this important endeavor, supporting California’s transition to a cleaner, more sustainable energy future.


OLI Systems joins California Energy Commission Project on Geothermal Power in California


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PR Newswire Environ­ment published ‘OLI Systems joins California Energy Commission Project on Geothermal Power in California’ at 2025-07-17 13:00. Please write a detailed article about this news in a polite tone with relevant information. Please reply in English with the article only.

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