Academic year 2018/2019 |
Supervisor: | doc. Ing. Jan Fiedler, Dr. | |||
Supervising institute: | EÚ | |||
Teaching language: | Czech | |||
Aims of the course unit: | ||||
The aim of the course is to make students familiar with problems of designing big and small thermal turbines and turbo-compressors. | ||||
Learning outcomes and competences: | ||||
The course provides students with the knowledge and skills necessary for working out the documentation in the turbines design including optimal thermal and economic calculations. | ||||
Prerequisites: | ||||
Knowledge of energy sources, steam turbines and boilers. | ||||
Course contents: | ||||
The course extends the knowledge of the physical processes in the transformation of thermal or pressure energy into mechanical power, and vice versa, by thermal turbines and turbo-compressors, acquired in previous courses. The lectures are concerned with the determination of basic parameters and design concept of a machine, detailed design calculations and the design of the whole machine, and important details in the design. Students will learn how to link together energy, technical, operational, economic and environmental demands in the machine design. | ||||
Teaching methods and criteria: | ||||
The course is taught through lectures explaining the basic principles and theory of the discipline. Exercises are focused on practical topics presented in lectures. | ||||
Assesment methods and criteria linked to learning outcomes: | ||||
Graded course credit requirements: active participation in the exercises and delivery of a project for the assigned topic before the stated deadline. Examination: written part consists of questions and numerical tasks, oral part is a discussion on a given topic. | ||||
Controlled participation in lessons: | ||||
Participation in the exercises is systematically controlled. | ||||
Type of course unit: | ||||
Lecture | 13 × 2 hrs. | optionally | ||
Exercise | 13 × 1 hrs. | compulsory | ||
Course curriculum: | ||||
Lecture | 1.-2. History, Introduction to the design in the steam turbines. 3.-4. Elementary stage of thermal turbines. 5.-7. Multistage and multicylinders steam turbines. 8. Last stage steam turbines and condensators. 9. Construction gas turbines, cooled hot parts, combustors. 10. Constructions of basic parts of thermal turbines, auxiliary systems. 11-13. Steam turbine design, operation, assembly. |
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Exercise | Individually calculate and design steam turbines. | |||
Literature - fundamental: | ||||
1. Kousal M.:Spalovací turbiny,SNTL Praha 1980 | ||||
1. Fiedler, J::Parní turbíny, návrh a výpočet. CERM Brno 2013 | ||||
2. Cohen H.-Rogers C.F.C.-Saravanamutto H.I.N.:: Gas Turbine Theorie, , 0 | ||||
3. Ambrož J.:Parní turbiny za změněných podmínek,SNTL Praha 1983 | ||||
4. Leyzerovich:Large Power Steam Turbines, Pennwel Books, USA2003 | ||||
5. Škopek,J.:Parní turbina, ZČU Plzeň 2007 | ||||
Literature - recommended: | ||||
1. Kadrnožka J.:Parní turbiny a kondenzace,skripta VUT 1993 | ||||
2. Kadrnožka J.:Plynové turbiny a turbokompresory,skripta VUT 1992 | ||||
3. Ščegljajev A.V.:Parní turbiny I, II,ACADEMIA 1982 | ||||
4. Horlock, J.H.:Advanced Gas Turbine Cycles. Prgamon Publishing, London 2003 |
The study programmes with the given course: | |||||||||
Programme | Study form | Branch | Spec. | Final classification | Course-unit credits | Obligation | Level | Year | Semester |
M2I-P | full-time study | M-ENI Power Engineering | -- | Cr,Ex | 5 | Compulsory | 2 | 2 | W |
Faculty of Mechanical Engineering
Brno University of Technology
Technická 2896/2
616 69 Brno
Czech Republic
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