ORC Systems

ORC Systems

The energy that you do not use thermally in your existing power generation plant turns into energy that you can sell to the electricity market with superior ORC technology or you can use again by yourself.

Energy that you do not use thermally in your existing power generation plant turns into energy that you can sell to the electricity market with superior ORC technology or you can use again by yourself.

With ORC technology, the system, which is completely designed as a package, is assembled and installed very quickly.

Since the fluid can reach high pressures at low temperatures, electric energy can be generated at low exhaust gas temperatures (> 250 ° C).

  • Access to all system data thanks to PLC based control system
  • High efficiency level due to integrated re-heater, heat insulation, magnetic coupling design
  • No additional energy is needed, only thermal energy is sufficient
  • Directly compatible with gas engine and automatically adjustable output power at different loads
  • Enhanced power electronic systems facilitate the connection of electricity sales
  • Space-saving design
  • Requires little maintenance
  • Encouragement for additional electricity generation in renewable energy systems

The organic fluid is first pressurized with jacket water through a brazed plate exchanger and then with a second plate exchanger with energy taken from the flue gas by a separate heat carrier fluid.

The pressurized fluid passes over the expander, allowing the expander to rotate. The expander is directly connected to the generator and electricity generation takes place in this way. The organic fluid at the outlet of the expander is condensed by means of a separate condenser and pre-heated to the temperature to be taken from the jacket water again.

  • Along with the ORC unit to be supplied as a package, the automation system allows the system to be controlled from a single location without operator intervention.
  • It is also the equipment of the system that the plate heat exchanger to be supplied for jacket water and thermal carrier fluids and the heat exchanger to which the energy to be taken from the exothermic gas of the thermal fluid can be transferred.
  • The semi-aqueous condenser system will also be integrated in the system.
  • Stairs and platforms will be designed to provide easy control and maintenance.
  • Stairs and balustrades are designed in accordance with TS EN ISO 14122, taking into account work safety precautions.