Estimation of future hydropower generation of reservoir systems used for different purposes in different regions

IET RENEWABLE POWER GENERATION(2024)

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摘要
In recent years, growth in environmental awareness and increasing non-renewable energy costs have augmented the interest in hydropower generation as a renewable energy. The volume of water stored in a reservoir system is crucial in hydropower production and has deep uncertainty. The subject of this investigation is the estimation of the amount of future hydropower generation in reservoir systems, some of which have multi-purpose use. This investigation was carried out in Turkey at Ataturk, Keban, Karakaya and Demirkopru Dams. In the estimation of the hydropower generation for future, the decision matrices were devised and run separately for each reservoir system. In the verification of the validity of the model, the amounts of energy generated in reality in the last three years, which were not included in the modelling process, were used for the reservoirs investigated. In the verification process, when the model results and the amounts of energy produced in reality are compared, similar satisfactory results were obtained which are compatible with the properties of the regions where the reservoirs were built. It is expected that the proposed model will provide a decision support tool especially in multi-objective planning of constrained water resources. The subject of this investigation is the estimation of the amount of future hydropower generation in reservoir systems, some of which have multi-purpose use and are built in different regions. Thus, the aim was that the amount of energy production, which depends on many variables, can be estimated more accurately with a smaller data set. More importantly, it is intended to form a decision support tool for the optimum planning of the multi-objective use of constrained water resources. This investigation was carried out in Turkey at Ataturk, Keban, Karakaya and Demirkopru Dams. In the verification of the validity of the model, the amounts of energy generated in reality in the last three years, which were not included in the modelling process, were used for all the reservoirs investigated. When the model results and the amounts of energy produced in reality are compared, satisfactory results are obtained which are compatible with the properties of the regions where the reservoirs were built.image
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estimation theory,hydroelectric power,power system management,renewable energy policy,risk analysis
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