National Repository of Grey Literature 2 records found  Search took 0.01 seconds. 
Calculation of the thermal diagram high load steam turbine with steam reheating
Cerman, Marek ; Lázničková, Ilona (referee) ; Raček, Jiří (advisor)
The major topic of this bachelor’s thesis is calculation of thermal diagram with condensing steam turbine. In the first section the project is focused on the theory of steam cycles. In nine separate chapters the reader is briefly introduced to the principle of steam turbine as well as to some common type of steam turbines, basic diagrams of steam cycles and their illustrations in T-s diagram and Mollier h-s diagram. The attention is then individually focused on the process of energy change, how is the steam energy transformed into a mechanical energy, the inference of turbine output power, the assesment of actual efficiency of steam diagram systems and on the facilities that allow for an increase of the efficiency in practice. In the second section of the project, the calculation of thermal diagram of free-cylinder turbine with steam reheating is introduced as a follow-through to the theoretical basics. The rated output of the turbo-set is 100 MW. The thermal cycle is defined by the main steam parameters, the reheat parameters and the emission pressure. Setting component is basic thermal diagram which foremost introduces the connections of system of regenerative heaters from the point of utilisation of the heating steams condensates. First chapter of the second section targets the general method of solution, which in connectedness consists of the concept of steam expansion in the turbine, the concept of heating feed water in regenerative heaters, the assignment of the mass steam flows in the cycle and the assignment of energy index figures. The method analysis is, even in the scope of determining basic parameters detailed. In the second chapter, the general method is subsequently applied to a numeral calculation of the given diagram. Here, the method that exploits computer software is demonstrated. It will assert itself with the instancy, the calculation may be proceeded with, compared to common use of water and steam tables and to the accuracy to which the quantity values of working substance are marked during various thermodynamic phases. All of the significant figures defining the designated thermal cycle are calculated. In the conclusion the values are summarized in a table and picture overview and evaluated.
Calculation of the thermal diagram high load steam turbine with steam reheating
Cerman, Marek ; Lázničková, Ilona (referee) ; Raček, Jiří (advisor)
The major topic of this bachelor’s thesis is calculation of thermal diagram with condensing steam turbine. In the first section the project is focused on the theory of steam cycles. In nine separate chapters the reader is briefly introduced to the principle of steam turbine as well as to some common type of steam turbines, basic diagrams of steam cycles and their illustrations in T-s diagram and Mollier h-s diagram. The attention is then individually focused on the process of energy change, how is the steam energy transformed into a mechanical energy, the inference of turbine output power, the assesment of actual efficiency of steam diagram systems and on the facilities that allow for an increase of the efficiency in practice. In the second section of the project, the calculation of thermal diagram of free-cylinder turbine with steam reheating is introduced as a follow-through to the theoretical basics. The rated output of the turbo-set is 100 MW. The thermal cycle is defined by the main steam parameters, the reheat parameters and the emission pressure. Setting component is basic thermal diagram which foremost introduces the connections of system of regenerative heaters from the point of utilisation of the heating steams condensates. First chapter of the second section targets the general method of solution, which in connectedness consists of the concept of steam expansion in the turbine, the concept of heating feed water in regenerative heaters, the assignment of the mass steam flows in the cycle and the assignment of energy index figures. The method analysis is, even in the scope of determining basic parameters detailed. In the second chapter, the general method is subsequently applied to a numeral calculation of the given diagram. Here, the method that exploits computer software is demonstrated. It will assert itself with the instancy, the calculation may be proceeded with, compared to common use of water and steam tables and to the accuracy to which the quantity values of working substance are marked during various thermodynamic phases. All of the significant figures defining the designated thermal cycle are calculated. In the conclusion the values are summarized in a table and picture overview and evaluated.

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