4.5 Article

Dynamics of Electricity Production against the Backdrop of Climate Change: A Case Study of Hydropower Plants in Poland

Journal

ENERGIES
Volume 14, Issue 12, Pages -

Publisher

MDPI
DOI: 10.3390/en14123427

Keywords

renewable energy sources (RES); hydroelectricity; small hydropower plant (SHP); Poland

Categories

Funding

  1. Faculty of Earth Sciences and Spatial Management, Nicolaus Copernicus University

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As the structure of renewable energy production in Poland shifts, with an increase in wind and biomass energy production and a decrease in hydroelectric plant production, Poland may face challenges in achieving its energy targets in 2030.
Renewable energy sources (RES) play an important role in the European Union's energy sector as a result of the energy policy framework adopted. Its share in the final energy consumption varies depending on the country and the adopted energy policy. The article presents the structure of electricity production from renewable energy sources in Poland in the years 2002-2019. It was found that the share of energy production from hydroelectric power plants in Poland in relation to the amount of energy produced from renewable energy sources in the analyzed years has strongly decreased. The reason for this state was an increase in the production of energy coming from wind and biomass energy combined with an increase in subsidies for these energy producers. Additionally, unstable hydrological conditions, mainly low river flows, may be the reason for the low share of energy produced in power plants. As a case study, data for five small hydropower plants (SHP) located on the Gwda river (north-western Poland) were analyzed. Electricity production volumes were analyzed depending on the size of the Gwda river flow. It was found that the lower amount of electricity produced at SHPs on the Gwda river is mainly due to lower flows in the river. In the future, unstable electricity production from renewable energy sources may have a significant impact on achieving Poland's energy targets in 2030.

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