Heat engines

Heat Engine systems for Energy Independence

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Heat Engine advanced System Features

Phasic’s Heat Electrification (HE) Engines are engineered to solve today’s most pressing energy challenges. Each device integrates cutting-edge AI, proprietary heat tech, and ruggedised design to deliver clean, reliable power from waste heat—24/7. Explore six core features that set Phasic apart:

AI-Optimized Thermal Conversion

Advanced AI software continuously analyses system dynamics to maximise heat transfer efficiency and electrical output; turning low-grade waste heat into high-impact clean energy

Resilient distributed Energy Resource (DER)

Each Heat Engine acts as a node in a self-reinforcing energy network—scalable, failure-resistant, and capable of delivering megawatt-scale power without central bottlenecks

Ultra-Low levelised Cost of Energy

Delivering electricity at just $37/MWh, Phasic Heat Engine offers one of the lowest unsubsidised clean energy costs on the market—significantly lowering operating expenses

Easily scalable Modular Architecture

Modular design allows for simplified deployment and rapid scaling. Scalable by design—deploy quickly and grow without infrastructure bottlenecks

Integrated cooling Load Reduction

By reducing thermal loads by up to 10°C, Heat Engines ease strain on cooling systems, decreasing energy and water consumption across the facility

Carbon-Free, Compliance-Ready

Heat Engines help organisations meet increasing decarbonisation goals and emerging waste heat reuse regulations with on-site, zero-emission electricity

heat engine for industries

Heat Engine applications Across Industries

| Power Generation |
01   |   04

Reliable Thermal Efficiency for Power Plants

| 01 |
General Information

Heat engines are widely used in power plants to convert thermal energy into mechanical or electrical power. Their efficiency and reliability make them essential for energy production in various scales.

| 02 |
Product Features
  • Optimized for continuous heavy-duty operations
  • Efficient fuel-to-power conversion
  • Designed for industrial-scale heat applications
| 03 |
Technical Information
  • Heat output: [X] MW
  • Designed for offshore & onshore use
  • Corrosion-resistant materials
| Manufacturing & Heavy Industry |
02   |   04

Industrial Heat Power Solutions

| 01 |
General Information

Heat engines are widely used in power plants to convert thermal energy into mechanical or electrical power. Their efficiency and reliability make them essential for energy production in various scales.

| 02 |
Product Features
  • Optimized for continuous heavy-duty operations
  • Efficient fuel-to-power conversion
  • Designed for industrial-scale heat applications
| 03 |
Technical Information
  • Heat output: [X] MW
  • Designed for offshore & onshore use
  • Corrosion-resistant materials
| Oil & Gas |
03   |   04

Thermal Energy for Extraction & Processing

| 01 |
General Information

Heat engines are widely used in power plants to convert thermal energy into mechanical or electrical power. Their efficiency and reliability make them essential for energy production in various scales.

| 02 |
Product Features
  • Optimized for continuous heavy-duty operations
  • Efficient fuel-to-power conversion
  • Designed for industrial-scale heat applications
| 03 |
Technical Information
  • Heat output: [X] MW
  • Designed for offshore & onshore use
  • Corrosion-resistant materials
| Marine & Transportation |
04   |   04

High-Efficiency Heat Engines for Mobility

| 01 |
General Information

Heat engines are widely used in power plants to convert thermal energy into mechanical or electrical power. Their efficiency and reliability make them essential for energy production in various scales.

| 02 |
Product Features
  • Optimized for continuous heavy-duty operations
  • Efficient fuel-to-power conversion
  • Designed for industrial-scale heat applications
| 03 |
Technical Information
  • Heat output: [X] MW
  • Designed for offshore & onshore use
  • Corrosion-resistant materials
Performance

Phasic Energy Performance

Phasic Energy’s next-generation Heat Exchangers (HX) and Heat Electrification Engines (HE) deliver remarkable results across various industries. Here are key performance numbers that showcase the impact of our technology:

Increase in Heat Transfer Efficiency

| 01 |

+

20%

Power Output Increase

| 02 |

+

12% MW

Reduction in Energy Waste

| 03 |

+

30% MW

Lower Carbon Emissions

| 04 |

-

15% CO₂

Improvement in System Lifespan

| 05 |

+

5 years

Faster Heat Recovery Time

| 06 |

-

25% time

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