GT-ORC Organic Rankine Cycle System

Convert low- and medium-temperature heat from hot water, steam, exhaust gas, or industrial processes into useful electricity.

40-1,000 kW ORC Power Generation Portfolio

The GT-ORC system converts low- and medium-temperature waste heat into electricity through an Organic Rankine Cycle. A sealed working fluid absorbs heat, drives the generator, condenses, and recirculates continuously. Its closed-loop design provides stable performance, easy maintenance, and a long service life.

ORC Power Generation Process

  • Fluid Pressurization: The pump pressurizes the low-pressure working fluid and delivers it to the evaporator.

  • Heat Absorption: The fluid absorbs heat in the evaporator and enters the expander-generator as vapour.

  • Power Generation: The high-pressure vapour drives the expander-generator to produce electricity.

  • Condensation and Recirculation: The vapour releases heat, returns to a liquid state, and re-enters the pump to repeat the cycle.

Applications

The GT-ORC system converts waste heat from industrial processes, engine exhaust, steam, hot water, solar thermal, biomass, and data centers into useful electricity.

Engine Exhaust

Solar Thermal

Process Waste Heat

Data Center

Steam & Hot Water

Biomas and Biogas

PARAMETERGT-40GT-80GT-160GT-300
Working fluidR134aR134aR134aR134a
Rated output40 kW79 kW159 kW298 kW
Output range10–60 kW15–90 kW40–200 kW60–320 kW
Hot-water flow25 m³/h40 m³/h80 m³/h150 m³/h
Hot-water inlet95°C95°C95°C95°C
Cooling-water inlet25°C25°C25°C25°C
Dimensions L × W × H2200 × 1500 × 18002500 × 1800 × 20004000 × 2500 × 30006000 × 2800 × 3500
Unit weight3,000 kg5,000 kg10,000 kg15,000 kg
Hot-water connectionDN32DN50DN80DN100
Cooling connectionDN150DN200DN300DN400
CommunicationModbus RTUModbus RTUModbus RTUModbus RTU
  • Working Fluid Pressurization
    The pump increases the pressure of the liquid working fluid and delivers it to the evaporator.
  • Heat Absorption and Evaporation
    The fluid absorbs heat from the available heat source, becomes vapour, and enters the expander-generator.
  • Expansion and Power Generation
    The high-pressure vapour expands through the expander and drives the generator to produce electricity.
  • Condensation and Recirculation
    The vapour releases heat in the condenser, returns to liquid form, and re-enters the pump to repeat the cycle.