Ukraine

Dnipro Hydroelectric Station — 1,548 MW Hydroelectric

Hydroelectric Renewable Verified

Dnipro Hydroelectric Station is a 1,548 MW hydro power plant located in Ukraine. View location, capacity, and technical details.

Capacity
1,548 MW

Installed

Commissioned
1927

Year online

Owner
Ukrhydroenergo

Operator

Location
47.87, 35.09

Coordinates

Insights

#28
largest in Ukraine
#154
largest Hydroelectric worldwide
#1,210
largest worldwide
1927
57 yrs older than avg
18
operated by Ukrhydroenergo
12
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
1,548 MW
Commissioned
1927
Status
Operational
Owner
Ukrhydroenergo
Country
Ukraine
Coordinates
47.869, 35.086
Wikipedia
Link

Estimated Carbon Footprint

Annual CO₂
130,181 t

tonnes / year

Lifetime CO₂
10,414,449 t

over ~80 yrs

Intensity
24 g

gCO₂ per kWh

Annual emissions equal to

28,300
cars / year
17,357
homes / year
5,917,300
trees to offset

Renewable source — life-cycle emissions only (materials/construction), no direct combustion. Open calculator

Nearby Stations

About this plant

The Dnipro Hydroelectric Station, located on the Dnipro River in Ukraine, is a significant contributor to the country’s energy sector, boasting a capacity of 1548 megawatts (MW). Commissioned in 1927, it stands as one of the oldest and most vital hydroelectric plants in Ukraine, playing a crucial role in the nation’s electricity generation and supply. The facility is a prime example of the utilization of hydroelectric power, which harnesses the kinetic energy of flowing water to produce electricity. This renewable energy source is characterized by its minimal operational costs once the infrastructure is established, as well as its ability to generate power without emitting greenhouse gases during operation, making it an environmentally friendly option compared to fossil fuels.

The Dnipro Hydroelectric Station utilizes the gravitational force of water flowing through turbines to generate electricity. The plant’s design incorporates a series of dams and reservoirs that regulate the flow of the Dnipro River, ensuring a consistent supply of water to maintain power generation. This method of energy production not only provides a reliable electricity source but also helps in flood control and irrigation, enhancing its regional importance. The energy produced by the Dnipro Hydroelectric Station supports both residential and industrial consumers, helping to stabilize the grid and meet the growing energy demands of Ukraine.

In terms of environmental impact, hydroelectric power is generally considered one of the cleaner energy sources. The operation of the Dnipro Hydroelectric Station results in significantly lower carbon emissions compared to traditional thermal power plants. However, the construction and operation of large dams can lead to ecological changes in surrounding areas, including alterations in water quality, fish populations, and local ecosystems. Efforts to mitigate these impacts have included the implementation of fish ladders and habitat restoration programs, which aim to preserve the biodiversity of the Dnipro River.

The Dnipro Hydroelectric Station also holds regional significance, not only serving as a major power supplier for Ukraine but also contributing to the economic development of the surrounding areas. The facility creates jobs and fosters local industries that rely on stable electricity supply, thus enhancing the overall quality of life for residents. Moreover, the Dnipro River itself is a vital waterway for transportation and recreation, with the hydroelectric station playing a key role in maintaining the river’s health and usability.

In summary, the Dnipro Hydroelectric Station is an essential component of Ukraine’s energy infrastructure, providing a substantial amount of hydroelectric power while also contributing to environmental sustainability and regional economic growth. Its long-standing operation since 1927 underscores its importance in the evolution of the country’s energy landscape, as it continues to adapt and meet modern energy demands.

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