United States

High Dam — 12 MW Hydro

Hydro Renewable Verified

High Dam is a 12 MW hydro power station located in United States, commissioned in 1934. It is one of the facilities tracked in the World Power Plants database.

Capacity
12 MW

Installed

Commissioned
1934

Year online

Owner
Oswego City of

Operator

Location
43.44, -76.50

Coordinates

Technical Details

Fuel Type
Hydro
Capacity
12 MW
Commissioned
1934
Status
Operational
Owner
Oswego City of
Country
United States
Coordinates
43.444, -76.496

About this plant

High Dam is an 11.9 MW hydroelectric power plant in the United States, operated by Oswego City of since 1934. It is one of 1,469 hydro plants in the country, contributing to a total hydro capacity of 117,947 MW.

Ranked #625 of 1,469 hydro plants in the United States, High Dam represents 0.01% of the nation’s hydro capacity. The largest hydro plant in the United States is Grand Coulee Dam at 6,809 MW, making High Dam 571 times smaller.

Nearby plants include Nine Mile Point Nuclear Generating Station (1901.1 MW, Nuclear), Nine Mile Point Nuclear Station (1901.1 MW, Nuclear), and Oswego Harbor Power (1803.6 MW, Oil). The facility is located in New York, approximately 50 km from Syracuse.

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Egypt

High Dam — 2,100 MW Hydro

Hydro Renewable Verified

High Dam is a 2,100 MW hydro power station located in Egypt, commissioned in 1967. It is one of the facilities tracked in the World Power Plants database.

Capacity
2,100 MW

Installed

Commissioned
1967

Year online

Owner
Egyptian Electricity Holding Company

Operator

Location
23.97, 32.88

Coordinates

Technical Details

Fuel Type
Hydro
Capacity
2,100 MW
Commissioned
1967
Status
Operational
Owner
Egyptian Electricity Holding Company
Country
Egypt
Coordinates
23.972, 32.883

About this plant

The High Dam, located on the Nile River near Aswan, Egypt, is a significant hydroelectric power plant with a capacity of 2100 megawatts (MW). Commissioned in 1967, it serves as a cornerstone of Egypt’s energy infrastructure and plays a critical role in the country’s economic development and energy security. As one of the largest dams in the world, the High Dam not only generates electricity but also facilitates irrigation and flood control, making it an essential asset for the agricultural sector in Egypt.

The High Dam harnesses the kinetic energy of flowing water to produce electricity, a process that is characteristic of hydroelectric power generation. Water from the Nile is stored in Lake Nasser, one of the largest artificial lakes in the world, created by the dam’s construction. The potential energy of the stored water is converted into mechanical energy as it flows through turbines, which then drive generators to produce electricity. This renewable energy source is crucial for reducing reliance on fossil fuels and contributes significantly to Egypt’s efforts to diversify its energy portfolio.

In terms of environmental impact, the High Dam presents both advantages and challenges. On one hand, it provides a substantial amount of clean energy, reducing greenhouse gas emissions associated with fossil fuel combustion. The availability of hydroelectric power has enabled Egypt to improve its energy self-sufficiency and support its growing population’s electricity needs. On the other hand, the dam has led to alterations in the natural flow of the Nile, affecting the river’s ecosystem and the livelihoods of communities downstream. The creation of Lake Nasser has also submerged archaeological sites and altered local habitats, prompting ongoing discussions about the balance between energy production and environmental stewardship.

Regionally, the High Dam holds significant geopolitical importance. It symbolizes Egypt’s ambitions for modernization and economic growth during the mid-20th century. The dam has transformed the landscape of energy generation in North Africa and serves as a model for other countries considering large-scale hydroelectric projects. Its capacity to store and manage water resources plays a vital role in the Nile Basin, influencing water-sharing agreements with neighboring countries. Consequently, the High Dam has become a focal point for discussions surrounding transboundary water management, particularly as climate change prompts shifts in water availability.

In conclusion, the High Dam is not merely a power plant; it is an integral part of Egypt’s energy sector, contributing to electricity generation, irrigation, and regional stability. Its long-standing operation since 1967 showcases the potential of hydroelectric power to support national development while simultaneously presenting challenges that necessitate careful management and environmental consideration.

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