National Repository of Grey Literature 14 records found  previous11 - 14  jump to record: Search took 0.00 seconds. 
Steady state and short-circuit conditions within E.ON 110 kV power network at parallel operation of nodal areas of Čebín substation and Sokolnice substation
Múdry, Peter ; Rampl, Martin (referee) ; Blažek, Vladimír (advisor)
In the distribution network 110 kV of E.ON Company there are the nodal areas of Čebin substation and Sokolnice substation which are operated separately at the present time. There is one 400/110 kV transformer for each nodal area. In case of fault on one of these transformers or on busbar in which the set transformer is working, it comes to an outage of electric supply in the set nodal area. This problem has to be solved with help of the parallel operation of nodal areas of Čebín substation and Sokolnice substation. The main and also the practical task of this work is to design the bridge connection appropriate for parallel operation of nodal areas (supply transformers 400/110 kV). With help of a computing program there were made calculations of steady state and short-circuit conditions in distribution network 110 kV for separated and parallel operation of nodal areas. Voltage conditions, load of transformers (400/110 kV and 110/vn kV) and conditions on 110 kV lines are evaluated and controlled as the result of steady state calculations. Based on short-circuit conditions there is controlled the short-circuit resistance of the substations. Finally there are compared advantages and disadvantages of separated and parallel operations of nodal areas. If necessary, technical arrangements required for introduction of parallel operation of nodal areas of Čebín substation and Sokolnice substation will be designed. The theoretical part of the work deals with calculation of steady state with help of iterative methods, namely Newton´s and Gauss-Seidel methods. There are further described the method of calculating short-circuit currents, characteristic values and time behaviours of short-circuit current.
Stabilized operation and short - circuit conditions within E.ON 110 kV power network supplied from Otrokovice 110kV switching station, during the period of 2011
Jurča, Ondřej ; Rampl, Martin (referee) ; Blažek, Vladimír (advisor)
Distribution network 110 kV owned by E. ON in the area Otrokovice; powered by 110 kV and two variants of involvement contained.The first option is basic involvement, without the use of the bridge. The second option includes involvement with the bridge. The aim of this study is to compare; by calculating the steady-state network operation and short circuit conditions of the network, the involvement of these two options. The thesis is divided into two parts, theoretical and practical. The theoretical part consists of a description of the steady operation of networks of high-voltage and short circuit ratio calculations. Load flow calculations are described by the Gauss-Seidel and Newton iterative method. In the case of short-circuit conditions, the effects of their characteristic values, processes and various methods of calculation are described.In the second part, this theoretical knowledge is applied to input data and dispatching programme with the appropriate calculations of network operation and short circuit conditions. The calculated values are listed in the thesis, on the basis of which an evaluation of the two possible connections is made.
Pump storage station
Šimek, Petr ; Sloupenský, Zdeněk (referee) ; Kubálek, Jiří (advisor)
This bachelor thesis deals with the functions of hydro-power plants, describes the various machinery and their distribution according to the parameters of use. Outlines the calculation in the design of hydraulic machines. There are also descriptions of machine layout and their use in praktice. For the particular case, there is prepared hydro power plant Dlouhé stráně. Related topic that is included here, the electricity system and the daily load diagram.
Long-term Electric Power Failure in the Czech Republic
KADLECOVÁ, Zdeňka
The electric power is one of the key products without which functioning of our society would be hard to imagine. The electricity distribution network is an interconnected system comprising of a manufacturing part producing electricity from various sources, a transmission system of conductors and equipment, distribution systems of high and low voltage, and of technical control stations suitably distributed to control the whole network. Energy security means ensuring continuity of necessary supplies of energy and energy services to accommodate the protected interests of the state. A long-term electric power failure may have serious consequences for the state security, for providing for basic subsistence needs of the population, individual?s health or the state economy. For their maintenance under ordinary as well as emergency conditions it is particularly necessary to ensure functioning of critical infrastructure. The aim of this thesis is to examine the level of preparedness of the subjects within the critical infrastructure for a long-term interruption of electric power supplies and to create a draft of an emergency preparedness plan of a subject within the critical infrastructure focused on a long-term electric power failure. The research part of the thesis has two parts. The first part includes processing and analysis of the data acquired though a questionnaire survey. The second one presents a draft of the emergency preparedness plan of a subject within the critical infrastructure. The results of the questionnaire survey showed a good readiness of the critical infrastructure for a long-term, extensive electric power failure, which confirms the set hypothesis. The thesis introduces the public, particularly the subjects of the critical infrastructure, to the possibilities of occurrence of long-term, extensive electric power failures, with available prevention of such emergency situations and their preparation, planning and solving. The presented emergency plan draft should help with preparation of an emergency readiness plan of a subject within the critical infrastructure, including outlining the ways to solve emergency situations that may arise in relation with a power failure, and thus to improve protection of the critical infrastructure elements.

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