World Power Plants

Big Bend Dam538.3 MW Hydroelectric

HydroRenewableVerified: Jul 2026

The Big Bend Dam is a prominent hydroelectric power generation facility located in the United States of America, showcasing a substantial capacity of 538.3 MW. Commissioned in 1965, this facility is operated by the US Army Corps of Engineers (USACE-Omaha) and plays an integral role in both energy generation and water management within the region. Situated at coordinates 44.0384, -99.4463, the dam utilizes a traditional hydroelectric model, leveraging the flow of water to turn turbines and generate electricity. The operational context of the Big Bend Dam is significant, as it not only supports the local grid but also contributes to flood control and irrigation efforts, making it a multifaceted asset for the community. As energy policies in the United States increasingly prioritize renewable sources, the Big Bend Dam stands out as a key player in the shift towards sustainable energy practices. Its long-standing operation and capacity make it a reliable source of clean energy, reflecting the importance of hydroelectric power in the nation's energy mix.

Capacity
538.3 MW
Commissioning Year
1965

61 years old

Owner
USACE-Omaha
Location
44.0384°, -99.4463°

United States of America, North America

Context & rankings
  • 828. largest of 10,098 plants in United States of America
  • #4,429 worldwide by installed capacity
  • #690 of 8,493 Hydroelectric plants worldwide
  • 0.04% of the installed capacity of United States of America
Age & fleet comparison

61 years in operation

Hydroelectric fleet average: 42.1 years

Operator portfolio

USACE-Omaha operates 7 plants totalling 2,860 MW

Regional density

10 plants within 100 km, 1,115 MW combined

Nearest plant: Chamberlain Wind Project (26.4 km)

Location

Coordinates:: 44.038400, -99.446300
Open in Google Maps
Carbon Footprint

Zero Direct Emissions

Big Bend Dam is a hydro power plant producing approximately 1886 GWh of clean electricity per year with zero direct CO₂ emissions during operation.

Lifecycle emissions: ~24 g CO₂/kWh (manufacturing, transport, decommissioning)

Technical Details

Primary Fuel Type
Hydro
Energy Source
Renewable
Country
United States of America
Continent
North America
Data Source
Global Power Plant Database

Big Bend Dam: A Vital Hydro Power Plant in the USA

The Big Bend Dam, located on the Missouri River in South Dakota, is a significant hydroelectric power facility with a generation capacity of approximately 538.3 megawatts (MW). Commissioned in 1965 and owned by the U.S. Army Corps of Engineers (USACE) Omaha District, the dam plays a crucial role in the energy sector of the United States, contributing to the renewable energy portfolio and providing a reliable source of electricity to the surrounding regions. As a hydroelectric plant, Big Bend Dam harnesses the kinetic energy of flowing water to generate electricity, making it a clean and sustainable alternative to fossil fuel power sources.

The operation of the Big Bend Dam is based on the principles of hydroelectric power generation, where the potential energy of water stored in the reservoir is converted into mechanical energy through turbines. When water is released from the dam, it flows through turbines, which are connected to generators that convert the mechanical energy into electrical energy. This process not only provides a steady and controllable power supply, but also helps to manage flood risks and maintain water levels in the Missouri River, which is essential for regional agriculture and ecosystems.

The environmental impact of the Big Bend Dam is multifaceted. On one hand, hydroelectric power is considered a renewable energy source that emits significantly lower greenhouse gases compared to traditional fossil fuels, contributing to efforts in reducing climate change. The dam aids in the regulation of river flow, which can enhance water quality and support aquatic habitats. However, the presence of the dam also creates challenges, such as potential disruptions to fish migration patterns and alterations to natural sediment transport processes. Consequently, the management of the dam involves balancing energy production with ecological considerations, necessitating ongoing studies and initiatives to mitigate any negative effects on the local environment.

Regionally, the Big Bend Dam is vital not only as a power generator but also as a pivotal component of the Missouri River Basin's hydrological system. The dam contributes to flood control, irrigation, and recreational opportunities, thereby supporting local economies and communities. The availability of hydroelectric power from Big Bend helps stabilize energy prices and provides a reliable source of electricity to homes and businesses in nearby areas. As the United States continues to transition towards cleaner energy solutions, the Big Bend Dam exemplifies the potential of hydroelectric power to meet growing energy demands while promoting environmental stewardship and sustainability.

United States of AmericaEnergy Profile

10,098
Total Plants
1420.7 GW
Total Capacity
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