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Article

Combined Power Generating Complex and Energy Storage System

by
Rollan Nussipali
1,*,
Nikita V. Martyushev
2,*,
Boris V. Malozyomov
3,
Vladimir Yu. Konyukhov
4,
Tatiana A. Oparina
4,
Victoria V. Romanova
5,6 and
Roman V. Kononenko
7
1
Department of Transport and Mechanical Engineering, Taraz Regional University Named After M.Kh. Dulaty, Taraz 080012, Kazakhstan
2
Department of Information Technology, Tomsk Polytechnic University, 634050 Tomsk, Russia
3
Department of Electrotechnical Complexes, Novosibirsk State Technical University, 20, Karl Marx Ave., 630073 Novosibirsk, Russia
4
Department of Automation and Control, Irkutsk National Research Technical University, 664074 Irkutsk, Russia
5
Department of Energy, Trans-Baikal State University, 672039 Chita, Russia
6
Department of Energy, Branch of the National Research University «Moscow Power Engineering Institute» in Volzhsky, 404110 Volzhsky, Russia
7
Computer Hardware and Software Laboratory, Institute of Information Technologies and Data Analysis, Irkutsk National Research Technical University, 664074 Irkutsk, Russia
*
Authors to whom correspondence should be addressed.
Electricity 2024, 5(4), 931-946; https://doi.org/10.3390/electricity5040047
Submission received: 28 September 2024 / Revised: 4 November 2024 / Accepted: 18 November 2024 / Published: 21 November 2024
(This article belongs to the Special Issue Recent Advances in Power and Smart Grids)

Abstract

Combining wind and hydropower facilities makes it possible to solve the problems caused by power supply shortages in areas that are remote from the central energy system. Hydropower plants and highly manoeuvrable hydroelectric units successfully compensate for the uneven power outputs from wind power plants, and the limitations associated with them are significantly reduced when they are integrated into the regional energy system. Such an integration contributes to increasing the efficiency of renewable energy sources, which in turn reduces our dependence on fossil resources and decreases their harmful impact on the environment, increasing the stability of the power supply to consumers. The results of optimisation calculations show that a consumer load security of 95% allows the set capacity of RESs to be used in the energy complex up to 700 MW. It is shown here that the joint operation of HPPs and WPPs as part of a power complex and hydraulic energy storage allows for the creation of a stable power supply system that can operate even in conditions of variable wind force or uneven water flow. The conclusions obtained allow us to say that the combination of hydro- and wind power facilities makes it possible to solve the problem of power supply deficits in the regions of Kazakhstan that are remote from the central power station. At the same time, hydroelectric power plants and highly manoeuvrable hydroelectric units successfully compensate for the uneven power output from wind power plants and significantly reduce the limitations associated with them during their integration into the regional energy system.
Keywords: energy complex; hydroelectric power plant; wind power plant; energy storage; installed capacity energy complex; hydroelectric power plant; wind power plant; energy storage; installed capacity

Share and Cite

MDPI and ACS Style

Nussipali, R.; Martyushev, N.V.; Malozyomov, B.V.; Konyukhov, V.Y.; Oparina, T.A.; Romanova, V.V.; Kononenko, R.V. Combined Power Generating Complex and Energy Storage System. Electricity 2024, 5, 931-946. https://doi.org/10.3390/electricity5040047

AMA Style

Nussipali R, Martyushev NV, Malozyomov BV, Konyukhov VY, Oparina TA, Romanova VV, Kononenko RV. Combined Power Generating Complex and Energy Storage System. Electricity. 2024; 5(4):931-946. https://doi.org/10.3390/electricity5040047

Chicago/Turabian Style

Nussipali, Rollan, Nikita V. Martyushev, Boris V. Malozyomov, Vladimir Yu. Konyukhov, Tatiana A. Oparina, Victoria V. Romanova, and Roman V. Kononenko. 2024. "Combined Power Generating Complex and Energy Storage System" Electricity 5, no. 4: 931-946. https://doi.org/10.3390/electricity5040047

APA Style

Nussipali, R., Martyushev, N. V., Malozyomov, B. V., Konyukhov, V. Y., Oparina, T. A., Romanova, V. V., & Kononenko, R. V. (2024). Combined Power Generating Complex and Energy Storage System. Electricity, 5(4), 931-946. https://doi.org/10.3390/electricity5040047

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