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Highly efficient and oil-free micro steam turbines for ...

Date post: 13-Jan-2022
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Highest efficiency in its power range through: Optimized blade geometry Direct coupling of turbine and generator High-performance electronics Low operating costs through: Oil-free special bearings Absence of gearbox Wear and corrosion resistant materials Highly efficient and oil-free micro steam turbines for power generation TURBONIK GmbH Carlo-Schmid-Allee 3 D-44263 Dortmund Germany q +49 (0)231 946144 0 E [email protected] N www.turbonik.de
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Page 1: Highly efficient and oil-free micro steam turbines for ...

Highest efficiency in its power range through: Optimized blade geometry Direct coupling of turbine and generator High-performance electronics

Low operating costs through: Oil-free special bearings Absence of gearbox Wear and corrosion resistant materials

Highly efficient and oil-free micro steam turbines for power generation

TURBONIK GmbHCarlo-Schmid-Allee 3 D-44263 DortmundGermany

q +49 (0)231 946144 0E [email protected] www.turbonik.de

300 kW

Power

Page 2: Highly efficient and oil-free micro steam turbines for ...

Profitable already with small steam flows

The high-speed micro steam turbine was developed for easy and fast integration in steam systems with focus on small steam flows. This technology enables a profitable decentralized power generation and heat supply in the range up to 300 kWel per unit.

Direct coupling of turbine and generator combined with optimized turbine-blade geometry provide the highest available efficiency in this power range. Oil-free special bearings as well as the absence of a gearbox ensure high availability with extremely low maintenance costs. Each turbine is adapted and optimized to the individual appli-cation purpose of the customer.

Technical specificationElectrical power output 75 – 300 kWelSteam flow 1 – 10 t/hHeat output 750 – 10.000 kWthLive steam pressure 4 – 40 bar gLive steam temperature saturated steam up to 450 °CBackpressure -0,8 – 10 bar g

Exemplary load cases and performanceLive steam pressure Backpressure Steam flow Power

13 bar g 2 bar g 6 t/h 300 kWel10 bar g 2 bar g 6 t/h 250 kWel

13 bar g 1 bar g 5 t/h 300 kWel10 bar g 1 bar g 5 t/h 270 kWel

(Examples with saturated steam conditions at turbine inlet)

www.turbonik.de


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