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1
Content available remote Modelling of the Solina-Myczkowce pumped storage power plant
EN
The article presents simulation results of a developed model of PSP Solina. The model was designed and executed in the Matlab – Simulink interface. A modular approach was used to clearly distinguish characteristic elements of the model. Simulations of the model performance were carried out for a period of 365 days. The results were presented graphically. To simplify, the form of criteria defining on/off moments and defining the turbine/pump turbine operating mode was adopted. All constraints arising from the physical parameters and limitations of the cascade objects as well as those arising from the provisions of the current water management instructions for the Solina-Myczkowce cascade were taken into account. The model is a flexible proposal with which to develop and test decision-making mechanisms in the context of energy generation/consumption in operation. Due to the high potential and short on/off times of the turbine sets, the Solina EW plays an important role in the National Electricity System. An important role in the control process of the facility is played by the forecast of both power demand and contingencies. The analyses are supported by many charts and commentary.
EN
This article presents the idea and mathematical model of a pumped storage power plant. PSPS Porąbka Żar was selected as the real object for modelling. Due to the specificity of the operation of an intervention-regulatory and scheduled nature related to the coverage of power demand in the power system, the possibility of different modes of operation was taken into account in the model. PorąbkaŻar power plant is a pearl of hydro-engineering on the global stage. It is the first underground and the second largest pumped storage power plant in Poland. It is located in Międzybrodzie Bialskie, in the Silesian province. The short distance between the upper reservoir of the power station, located on Mt. Żar, and the lower reservoir of the międzybrodzkie lake, the high average head of the power station of 432 m above sea level, create great opportunities for accessibility and interference in the operation of the power station. It is equipped with four reversible Francis turbine sets, which operate simultaneously with a total capacity of 500 MW in the generator mode and 542 MW in the pumping mode. Due to its high potential and short turn-on and turn-off times of the turbine sets, it plays an important role in the national power system. The mathematical model was made in Matlab - Simulink software. An important role in the control process of the facility is played by the forecast of both power demand and contingencies. The forecasting model is equipped with elements of artificial intelligence. In addition, the article shows the possibility of supplementing an operating power plant with hybrid elements. The analysis is supported by commentary and a number of charts.
3
Content available remote Ocena logistyki w świetle aktualnych aktów normatywnych
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