Jednotělesová parní turbína
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Vysoká škola báňská – Technická univerzita Ostrava
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Abstract
In the first part, the master thesis deals with the analysis of the ideal Rankin-Clausian cycle and methods for increasing its efficiency. In the second part, the design of a high-speed steam turbine with an output of 17 MW with reversed current and regulated consumption according to the specifications of Doosan Škoda Power s.r.o. The design of the steam turbine is realized in the chapters thermal calculation, flow parts calculations and subsequently control strength calculations. The calculation is solved using Microsoft Excel, which is connected to electronic steam tables X Steam version 2.6 IAPWS IF97. An essential part of the work is a conceptual section of a steam turbine processed in AutoCAD.
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Steam (Rankine-Clausius) circulation, steam turbine, shoveling, stepped part, stage, strength calculation.