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Design of gland steam system for steam turbine
Skopal, Jiří ; Fiedler, Jan (referee) ; Kracík, Petr (advisor)
The Bachelor thesis deals with the design of a gland steam system for a steam turbine. The main focus of the the thesis is the creation of a functional P&ID scheme and the development of a 3D model of the gland steam and vent steam system. The thesis is divided into five parts. The first part provides a basic description of the gland steam system, its key components, and the creation of a heat and mass balance scheme based on the input values provided by Doosan Škoda Power company. The second part involves hydraulic calculation of the piping system, including the determination of nominal pipe sizes. The third part is dedicated to the created P&ID scheme. This section provides a detailed description of the principles and organization of the P&ID scheme using the KKS coding, as well as description of individual technological units in the P&ID scheme. The next part presents the created 3D model. Doosan Škoda Power company provided a power plant where the gland steam and vent steam piping system is modelled. The output of the 3D model includes images of the gland steam and vent steam system, as well as pipe isometrics of selected system components. The final part of the thesis includes the structural calculation of the piping system according to applicable standarts. This part verifies that the created gland steam and vent steam piping system meets safety requirements.

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