Sweden

Krangede Hydroelectric Power Station — 250 MW 水力

水力 再生可能 検証日

Krangede Hydroelectric Power Station は スウェーデン に位置する 250 MW 水力 発電所です。場所、容量、技術的詳細を表示。

容量
250 MW

Installed

運転開始
1936

Year online

所有者
Fortum

Operator

所在地
63.15, 16.07

座標

Insights

#35
largest in スウェーデン
#1,234
largest 水力 worldwide
#6,655
largest worldwide
1936
48 yrs older than avg
68
operated by For…
25
plants within 100 km

技術詳細

燃料タイプ
水力
容量
250 MW
運転開始
1936
Status
Operational
所有者
Fortum
Sweden
座標
63.147, 16.070
Wikipedia
Link

カーボンフットプリント

年間CO₂
21,041 t

tonnes / year

生涯CO₂
1,683,266 t

over ~80 yrs

Intensity
24 g

推定gCO2/kWh

年間排出量は次に相当します

4,574
台の自動車(年間)
2,805
軒の住宅(年間)
956,401
本の樹木で相殺

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

近くの発電所

About this plant

The Krångede Hydroelectric Power Station, located in Sweden, serves as a vital component of the nation’s renewable energy infrastructure. With a capacity of 250.2 MW, this facility is operated by Fortum and has been in service since its commissioning in 1936. The plant utilizes hydroelectric generation technology, which efficiently converts the kinetic energy of flowing water into electricity. Situated at coordinates 63.1466, 16.0703, the Krångede site is ideally positioned to take advantage of the local hydrological resources, ensuring a consistent and reliable source of energy. The significance of this hydroelectric power station extends beyond its impressive capacity; it plays an essential role in supporting the local energy grid and meeting the demands of surrounding communities. Sweden’s energy policy strongly emphasizes sustainability and the use of renewable energy sources, and the Krångede Hydroelectric Power Station is a prime example of this commitment. By generating clean electricity, the facility aids in reducing greenhouse gas emissions and promoting environmental stewardship. As Sweden continues to advance its energy goals, the Krångede Hydroelectric Power Station stands out as a key player in the transition towards a low-carbon future, showcasing how hydroelectric power can effectively contribute to sustainable energy generation.

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