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Dive into the research topics where Stefan Brussk is active.

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Featured researches published by Stefan Brussk.


ASME Turbo Expo 2013: Turbine Technical Conference and Exposition | 2013

The Role of Rotor Welding Design in Meeting Future Market Requirements

T.-U. Kern; Henning Almstedt; T.-H. Thiemann; Stefan Brussk; Karsten Niepold

The demand for current and future steam turbine components is driven by higher efficiency but also by higher plant cycling needs and optimized cost balance. An increase in efficiency increases the demand for higher life steam temperatures of up to 620/630°C for today’s units and of even up to 720°C for future steam power plants. The gap between required material properties in the hot and cold running parts of a steam turbine rotor is widened by the increased live steam temperatures and the increased demand for flexibility and adaptability to current and expected future energy market conditions. Besides further material development, welding is one measure to realize such contradictory rotor characteristics. Whereas 720°C is more a future related task, solutions for 560°C / 620°C apply already welded rotors.The paper discusses from a perspective of a steam turbine manufacturer the technical features to enable flexible high efficient rotor components with a focus on advanced welding technologies suitable for different large steam turbine components and what further steps for new welding technologies are under way.Copyright


Archive | 2012

Method for manufacturing a large-dimension component part made from spheroidal graphite iron

Stefan Brussk; Torsten-Ulf Kern; Karsten Niepold; Shilun Dr. Sheng


Archive | 2013

METHOD FOR THE COHESIVE CONNECTION OF TWO COMPONENTS USING INTEGRALLY FORMED PORTIONS FOR MANIPULATING SAID COMPONENTS

Stefan Brussk; Bora Kocdemir; Tim Schreiber; Shilun Sheng; Frank Truckenmüller; Tino Uravic


Archive | 2010

Method for weld manufacturing a large-dimension component part made from spheroidal graphite iron using builtup materials

Stefan Brussk; Birgit Grüger; Michael Kretschmer; Karsten Niepold; Shilun Sheng; Claus Wilhelm


Archive | 2016

CONDENSER FOR A STEAM POWER PLANT

Kai Brune; Stefan Brussk; Nigel-Philip Cox; Daniel Dreier; Tobias Gabl-Zimmek; Andrei Ghicov; Marie Hu; Mario Koebe; Marc Lange; Teresa Pott; Stefan Riemann; Andreas Ulma; David Veltmann; Gerta Zimmer


Archive | 2016

SHAFT ELEMENT, METHOD FOR PRODUCING A SHAFT ELEMENT COMPOSED OF TWO DIFFERENT MATERIALS, AND CORRESPONDING TURBOMACHINE

Torsten-Ulf Kern; Stefan Brussk; Karsten Niepold


Archive | 2015

SHAFT-ELEMENT, METHOD OF PRODUCING A SHAFT-ELEMENT MADE OF TWO DIFFERENT MATERIALS AND CORRESPONDING FLOW ENGINE

Torsten-Ulf Kern; Stefan Brussk; Karsten Niepold


Archive | 2014

A method of preserving a plant component of a steam power plant

Kai Brune; Stefan Brussk; Nigel-Philip Cox; Daniel Dreier; Tobias Gabl-Zimmek; Andrei Ghicov; Marie Hu; Mario Koebe; Marc Lange; Teresa Pott; Stefan Riemann; Andreas Ulma; David Veltmann; Gerta Zimmer


Archive | 2014

Dampfturbinensystem Steam turbine system

Kai Brune; Stefan Brussk; Nigel-Philip Cox; Daniel Dreier; Tobias Gabl; Andrei Ghicov; Marie Hu; Mario Koebe; Marc Lange; Teresa Pott; Stefan Riemann; Andreas Ulma; David Veltmann; Gerta Zimmer


Archive | 2014

Verfahren zur Konservierung eines Anlagenteils eines Dampfkraftwerks A method for preserving a system part of a steam power plant

Kai Brune; Stefan Brussk; Nigel-Philip Cox; Daniel Dreier; Tobias Gabl-Zimmek; Andrei Ghicov; Marie Hu; Mario Koebe; Marc Lange; Teresa Pott; Stefan Riemann; Andreas Ulma; David Veltmann; Gerta Zimmer

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