National Repository of Grey Literature 16 records found  previous11 - 16  jump to record: Search took 0.01 seconds. 
Technical and economic evaluation of the gas microturbine with the waste heat recovery system
Slovák, Rostislav ; Kilkovský, Bohuslav (referee) ; Máša, Vítězslav (advisor)
The use of gas microturbines as a primary unit in CHP is still weak in the industrial process. It gives the driving force to the main aim of this master thesis, which is the technical and economic evaluation of the gas microturbines waste heat recovery system, which is the key factor for their economic sustainability. Assignment contains description of CHP system that was gradually built in LENP laboratory, part of NETME Centre. The author has joined the final work before start-up of the CHP system. He presents and describes results of the first experiments on this unit. The flue gas of a microturbine was used for heating water by heat exchanger flue gas–water and for direct linen drying. The case study of laundry with capacity 10 tons per shift was developed in cooperation with companies in laundry care. Results of those tests were used to process integration and utilization of this professional industrial laundry All obstacles found and opportunities of the use of microturbines are comprehensively described and tested in case studies, which are simulated in Chemstation Chemcad Software. Results of the thesis are expected to be useful these fields: the use of gas microturbines in industry & energy savings in industrial laundries.
Effect of exhaust pressure loss on efficiency of gas microturbine
Čechman, Ondřej ; Havlásek, Martin (referee) ; Máša, Vítězslav (advisor)
The aim of this bachelor thesis is to support of microturbines application in industrial processes where it is not used yet, but where it would bring economical saving. This is especially in the case of CHP. For specific CHP system is need to design heat exchanger according to the specific application. One of the necessary parameters for heat exchanger design is exhaust pressure loss caused by heat exchanger, which has negative effect on electrical efficiency of microturbine. The concrete aim of this thesis is verify effect exhaust pressure loss on electrical efficiency of gas microturbine. This issue is solved theoretically using values declared by manufacturer of microturbines, which has been later verified by experimental measurements. The results of this thesis will help to integrate specific microturbine (Capstone C30) as CHP unit for model of energy intensive consumer in the Laboratory of Energy Intensive Processes of NETME Centre at the Faculty of Mechanical Engineering at the Brno University of Technology.
Efficiency of gas microturbines
Slovák, Rostislav ; Gal, Pavel (referee) ; Havlásek, Martin (advisor)
This bachelor thesis focuses on gas microturbines and engines. The text is devided into five parts. The first part is an introduction to the issue of cogeneration technology. The second chapter describes principles of microturbines, including the calculation of theoretical efficiency. The third part offers a descrtiption of gas engines. The fourth part compares gas microturbines with gas engines based on producers catalog values. The last chapter describes the experimental finding of the efficiency of Capstone C30 microturbine and offers a comparison of the theoretical, catalog and experimental values, whilst explaining differences.
Gas microturbine performance in relation to operational conditions
Freisleben, Vít ; Vondra, Marek (referee) ; Bobák, Petr (advisor)
This bachelor thesis is focused on the study of gas microturbine. The first part presents the main principle of cogeneration. Then there is described construction and properties of mi-croturbine technology and states major manufacturers and their products. There is also in-cluded comparison to gas engines. Analytical part makes familiar with microturbine performance in relation to operational conditions. It includes using mathematical software Maple for processing data supplied by the manufacturer. The last part compares the results of experimental measurement with cal-culated results.
System for heat recovery of gas microturbine flue gas
Vilda, Dalibor ; Jícha, Jaroslav (referee) ; Máša, Vítězslav (advisor)
The theme of the work is the integration of gas microturbines in industrial plants. The aim is to extend the application potential of this technology by the design of the integration into the process in which this technology is not exploited yet. This process is a professional laundry service. Professional laundry services have been selected as a representative of the generally known process, which is interesting in terms of energy intensity. Combining of progressive cogeneration technology and enhanced industrial process brings a promising application potential. The work focuses on small industrial laundries to 500 kg of processed linen per shift. As a cogeneration unit a gas microturbine Capstone C30 has been used. The microturbine has an adequate power due to the process. Complete laundry operation and a gas microturbine is a part of the equipment of the Laboratory of energetically demanding processes in the NETME Centre. The main contribution of this work is to design a system for utilization of flue gas heat for heating of the main input currents to the laundry room, a hot water for washing machines and warm air for drying in the dryers. The integration of the gas microturbine made to suit specific process can be a major cost-saving measures with positive impacts on the economy of operation.
Studies on gas microturbine operation
Horník, Jan ; Bobák, Petr (referee) ; Vondra, Marek (advisor)
The bachelor thesis is focused on the study of the gas microturbine. Theoretical part makes the reader familiar with gas microturbine. Practical part is focused on its use in the field of industrial laundry. Analytical part includes the design and execution of measurement, which is followed by necessary calculations. On the basis of it is proposed several uses of combustion from microturbine. The final output of this work is financial balance for each of those uses, where can be seen return of the investment.

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