Poland

Elektrownia Wodna Zarnowiec — 716 MW Hydroelectric

Hydroelectric Renewable Verified

Elektrownia Wodna Zarnowiec is a 716 MW hydro power plant located in Poland. View location, capacity, and technical details.

Capacity
716 MW

Installed

Commissioned
1983

Year online

Owner
PGE Polska Grupa Energetyczna S.A.

Operator

Location
54.72, 18.08

Coordinates

Insights

#28
largest in Poland
#538
largest Hydroelectric worldwide
#3,333
largest worldwide
1983
1 yrs older than avg
11
operated by PGE Polska Grupa…
23
plants within 100 km

Technical Details

Fuel Type
Hydroelectric
Capacity
716 MW
Commissioned
1983
Status
Operational
Owner
PGE Polska Grupa Energetyczna S.A.
Country
Poland
Coordinates
54.722, 18.084
Wikipedia
Link

Carbon Footprint

Annual CO₂
60,213 t

tonnes / year

Lifetime CO₂
4,817,019 t

over ~80 yrs

Intensity
24 g

Est. gCO2/kWh

Annual emissions equivalent to

13,090
cars per year
8,028
homes per year
2,736,943
trees to offset

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

Nearby Plants

About this plant

Electrowna Wodna Żarnowiec is a prominent hydroelectric power plant located in Poland, with a total installed capacity of 716 megawatts (MW). Commissioned in 1983, the plant is owned and operated by PGE Polska Grupa Energetyczna S.A., one of the largest energy companies in Poland. As a hydroelectric facility, Żarnowiec plays a crucial role in the country’s energy sector by providing a renewable source of electricity that contributes to Poland’s energy mix and helps reduce reliance on fossil fuels.

The plant harnesses the kinetic energy of flowing water to generate electricity, utilizing the principles of hydropower. Water is directed through turbines, which convert the energy of flowing water into mechanical energy, and subsequently into electrical energy through generators. This process is characterized by its efficiency and minimal operational costs once the infrastructure is established. Hydropower is considered one of the cleanest forms of energy production, as it does not emit greenhouse gases during operation, making it a vital component of Poland’s strategy to increase renewable energy sources and combat climate change.

Electrowna Wodna Żarnowiec not only contributes to energy production but also plays a significant role in balancing the electrical grid. Hydro plants have the unique capability to adjust output quickly in response to fluctuations in electricity demand, making them essential for grid stability. As Poland continues to transition towards a more sustainable energy landscape, the importance of renewable energy sources like those provided by Żarnowiec is set to grow.

The environmental impact of hydroelectric power is often a topic of discussion. While hydropower is generally seen as a cleaner alternative to fossil fuels, it can also have ecological consequences. The construction of dams and reservoirs can alter local ecosystems, affect fish populations, and change water quality. However, modern hydropower projects increasingly incorporate measures to mitigate these impacts, such as fish ladders and environmental flow management, which aim to preserve aquatic habitats.

Regionally, the Żarnowiec plant holds significance not only for its energy production capabilities but also for its influence on local economies and communities. By providing a stable and renewable source of electricity, the plant supports local industries and contributes to job creation. Furthermore, it enhances energy security for the region, reducing dependence on imported energy resources. The plant also plays a role in promoting tourism and recreation in the region, as the surrounding areas often attract visitors for activities such as hiking, fishing, and water sports.

In summary, Electrowna Wodna Żarnowiec stands as a critical asset in Poland’s energy infrastructure. Its capacity to generate renewable electricity while contributing to grid stability and supporting local economies underscores its importance in the transition to a more sustainable energy future.

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