Revolutionizing Industrial Heat Recovery and Power Generation — Intelligently

ThermicPower™ Systems delivers next-gen, AI-optimized energy solutions that transform waste heat, renewable, and low-cost time-of-use electricity thermal sources into clean, on-site electricity — using thermal storage, heat engines and AI-driven predictive intelligence. Ideal for industrial plants, microgrids, remote sites, utilities and sustainability-driven operations.

Turn industrial heat into smart electricity — with no combustion, no emissions, and full AI control.

The Challenge

Industrial facilities waste low- to medium-grade heat due to inefficient recovery technologies and lack of intelligent control systems, missing out on opportunities to save energy, reduce emissions, and increase reliability.

Our Solution

ThermicPower Systems provides a hybrid, AI-optimized platform that transforms waste, heat generated from renewables and/or off-peak grid time of use electricity to generate electricity using:
⦁ Low to medium temperature heat engines
⦁ Thermal storage
⦁ AI-driven predictive Control

Core Technologies

Convert thermal energy into power using eco-friendly fluids
Store heat and use it to generate and deliver electricity
Optimize system performance with predictive maintenance, dynamic control, and real-time insights

Features & Benefits

Predictive Maintenance

Minimizes unplanned downtime

Operational Optimization

Real-time tuning of system efficiency

Load Forecasting

Prepare for demand peaks intelligently

AI Dynamic Control

Adjust to external conditions proactively

Modular Design

Scalable, adaptable installations

Thermal Storage

Ensures continuous performance during heat variability

Selected Use Case Scenarios

A food processing facility generates continuous waste heat (~110°C). ThermicPower recovers this energy, providing clean, on-site electricity, reducing energy bills and peak load charges.

A solar thermal system’s heat output fluctuates throughout the day. By integrating ThermicPower, it ensures steady power delivery to critical systems, enhancing energy security and optimizing performance.

Utility power generation leads to a large amount of waste heat. For instance, thermal power plants generate over 50% waste heat. Natural gas combined-cycle power plants do a bit better with efficiencies in the 60% range, but still generate significant waste heat. ThermicPower System can harness the waste heat to generate additional power, which can improve the overall power generation efficiency to 70% to 80%. Part of the remaining waste heat can be captured by thermal storage module of the Thermic Power System and fed into our ThermoCoolReserve™ solution to generate cooling energy that can be used to cool the entire power generation operation, potentially eliminating the need for cooling towers, and siting the power plant close to a large body of water.

An off-grid mining site uses diesel generators and solar panels. ThermicPower captures waste heat from engines and stores excess solar heat, reducing fuel usage and improving uptime.

Office complexes often waste heat from HVAC systems. ThermicPower retrofits enable recovery and reuse of this heat for partial building power needs, reducing operating expenses.

Institutions with experimental labs can use ThermicPower to model advanced heat recovery scenarios and validate sustainable energy technologies in real-time applications.

Project Status

⦁ Patent Pending
⦁ Conceptual Design Complete
⦁ Thermodynamic Modeling Validated
⦁ Prototype Development In Progress
⦁ Seeking Pilot Partners & Early Collaborators

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ThermoCoolReserve White Papers

Data Center Applications

Semi Conductor Manufacturing

Pharmaceutical Cold Chains

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