Supercritical CO2 Turbine Page Links
Infinity Turbine Sales | Plans | Consulting TEL: 1-608-238-6001 Email: greg@infinityturbine.com
For Data Centers or Charging Your Tesla MegaPack The Infinity Turbine IT1000 is a 1 MW supercritical CO₂ power system delivering high-efficiency energy production for data centers, industrial sites, and grid applications... More Info
IT250 Supercritical CO2 Gas Turbine Generator $999,000 250 kW (natural gas, solar thermal, thermal battery heat) ... More Info
IT1000 Supercritical CO2 Gas Turbine Generator $3M 1 MW (natural gas, solar thermal, thermal battery heat) ... More Info
IT10MW Supercritical CO2 Gas Turbine Generator $30M 10 MW (natural gas, solar thermal, thermal battery heat) ... More Info
|
|
Supercritical CO2 Articles on Infinity Turbine
Comparing Low Pressure CO₂–Water Hydro Accumulators and Supercritical CO₂ Turbines for Power Generation Using Reversed Water Pumps as Turbines: A Cost-Effective Alternative to Custom Hydro Turbines 10 MW Supercritical CO2 Turbine Generator Power Block for AI Data Centers Payback and Cost Savings of a 10 MW Power Station Integrating a 10 MW Supercritical CO2 Power Block into AI Data Centers Price, Lead Time, and Permitting for 1 to 10 MW Gas and Diesel Generator Sets Integration of Tesla Megapack for Grid Scale Battery Storage and Backup Power Integrating a 10 MW Power Block with the New Tesla Megablock Energy Storage System Efficiency and Heat Rate Analysis of Micro Supercritical CO2 Turbine Generators Refrigerants for Organic Rankine Cycle Systems: Properties, Efficiency, and Usage Notes Cooling Potential of Micro Supercritical CO2 Turbines per Kilowatt of Electricity Generated for AI Data Centers and Solar Thermal Comparing Carnot Efficiency in Organic Rankine Cycle and Supercritical CO2 Turbomachinery ORC Refrigerants at 300 psi: Temperature Limits, Efficiency, and Usage Notes Free Cooling from a 10 MW Supercritical CO2 Turbine: How Much and What Is It Worth Low-Cost Strategies for Pressurizing CO₂: Best Practices & Cost Benchmarks Cycles for CO₂ Working Fluid: Rankine, Brayton, Transcritical and Their Differences CO2 Power Cycles Compared: Rankine/ORC vs. sCO₂ Brayton Across 45 °C to 700 °C Evaluating Jet Pump Integration in CO₂ Power Cycles: Brayton vs Rankine Performance CO2 Power Cycles Compared: Rankine/ORC vs. sCO₂ Brayton Across 45 °C to 700 °C Scaling Guidelines for Converting Micro Turbines from Air to Supercritical CO2 Evaluating a Tesla Disc Micro Turbine for Supercritical CO2 How Temperature and Pressure Behave in Supercritical CO2 How Much Power Could a One Inch Dyson Style Impeller Produce as a Supercritical CO2 Micro Turbine One Inch Supercritical CO2 Micro Turbine Performance at 100 C, 300 C, 500 C, and 700 C Two Inch Supercritical CO2 Micro Turbine Performance at 100 C, 300 C, 500 C, and 700 C Three Inch Supercritical CO2 Micro Turbine Performance at 100 C, 300 C, 500 C, and 700 C Six Inch Supercritical CO2 Micro Turbine Performance at 100 C, 300 C, 500 C, and 700 C Twelve Inch Supercritical CO2 Axial Multi Stage Turbine Performance at 100 C, 300 C, 500 C, and 700 C What Is the Largest Supercritical CO2 Turbine Built to Date Inside the STEP Demo: The Largest Supercritical CO2 Turbine Demonstration
|