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Laforge-2 Generating Station
The Laforge-2 is a hydroelectric generating station on the Laforge River, a tributary of the La Grande River, and is part of Hydro-Québec's James Bay Project. The station can generate 319 MW and was commissioned in 1996. It is considered a "run of the river" generating station since the Laforge-2 Reservoir is located much farther upstream. Together with La Grande-1, they are the only two generating stations of the James Bay Project that use a reservoir without any major waterlevel fluctuations. Thus, the amount of electricity generated by the station depends almost entirely on the waterflow of the river, which is largely controlled by upstream reservoirs and generating stations. See also * List of power stations in Canada * Reservoirs and dams in Canada This is a list of dams and water reservoirs in Canada. Alberta * Bassano Dam * Bearspaw Dam *Bighorn Dam * Brazeau Dam * Cascade Dam *Dickson Dam * Ghost Dam *Glenmore Reservoir * Interlakes Dam *Milk River Ridge Reservoi ...
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Laforge River
La Grande River (french: La Grande Rivière; cr, Chisasibi, script=latn; both meaning "great river") is a river in northwestern Quebec, Canada, which rises in the highlands of north central Quebec and flows roughly west to drain into James Bay. It is the second largest river in Quebec, surpassed only by the Saint Lawrence River. Originally, the La Grande River drained an area of and had a mean discharge of . Since the 1980s when hydroelectric development diverted the Eastmain and Caniapiscau rivers into the La Grande, its total catchment area has increased to about , and its mean discharge increased to more than . In November 2009, the Rupert River was also partially diverted, adding another to the basin. At one time, this river was known as the "Fort George River". The Hudson's Bay Company operated a trading post on the river at Big River House from 1803 to 1824. In 1837, a large trading post was established at Fort George on an island at the mouth of the river. In the earl ...
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Run Of River
Run-of-river hydroelectricity (ROR) or run-of-the-river hydroelectricity is a type of hydroelectricity, hydroelectric generation plant whereby little or no water storage is provided. Run-of-the-river power plants may have no water storage at all or a limited amount of storage, in which case the storage reservoir is referred to as pondage. A plant without pondage is subject to seasonal river flows, thus the plant will operate as an intermittent energy source. Conventional hydro uses reservoirs, which regulate water for flood control, dispatchable generation, dispatchable electrical power, and the provision of fresh water for agriculture. Concept Run-of-the-river, or ROR, hydroelectricity is considered ideal for streams or rivers that can sustain a minimum flow or those regulated by a lake or reservoir upstream. A small dam is usually built to create a headpond ensuring that there is enough water entering the penstock pipes that lead to the turbines, which are at a lower elevat ...
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Dams Completed In 1996
A dam is a barrier that stops or restricts the flow of surface water or underground streams. Reservoirs created by dams not only suppress floods but also provide water for activities such as irrigation, human consumption, industrial use, aquaculture, and navigability. Hydropower is often used in conjunction with dams to generate electricity. A dam can also be used to collect or store water which can be evenly distributed between locations. Dams generally serve the primary purpose of retaining water, while other structures such as floodgates or levees (also known as dikes) are used to manage or prevent water flow into specific land regions. The earliest known dam is the Jawa Dam in Jordan, dating to 3,000 BC. The word ''dam'' can be traced back to Middle English, and before that, from Middle Dutch, as seen in the names of many old cities, such as Amsterdam and Rotterdam. History Ancient dams Early dam building took place in Mesopotamia and the Middle East. Dams were used ...
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Dams In Quebec
A dam is a barrier that stops or restricts the flow of surface water or underground streams. Reservoirs created by dams not only suppress floods but also provide water for activities such as irrigation, human consumption, industrial use, aquaculture, and navigability. Hydropower is often used in conjunction with dams to generate electricity. A dam can also be used to collect or store water which can be evenly distributed between locations. Dams generally serve the primary purpose of retaining water, while other structures such as floodgates or levees (also known as dikes) are used to manage or prevent water flow into specific land regions. The earliest known dam is the Jawa Dam in Jordan, dating to 3,000 BC. The word ''dam'' can be traced back to Middle English, and before that, from Middle Dutch, as seen in the names of many old cities, such as Amsterdam and Rotterdam. History Ancient dams Early dam building took place in Mesopotamia and the Middle East. Dams were used ...
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Reservoirs And Dams In Canada
This is a list of dams and water reservoirs in Canada. Alberta * Bassano Dam * Bearspaw Dam *Bighorn Dam * Brazeau Dam * Cascade Dam *Dickson Dam * Ghost Dam *Glenmore Reservoir * Interlakes Dam *Milk River Ridge Reservoir * Old Man River Dam * Three Sisters Dam * Coal Lake DamFish & Wildlife Compensation Program
. Bchydro.com (2012-11-30). Retrieved on 2013-07-24. * () * Wahleach Dam a.k.a. Jones Lake Dam (

List Of Power Stations In Canada
Canada is home to a wide variety of power stations (or generating stations). The lists below outline power stations of significance by type, or by the province/territory in which they reside. By type The following pages lists the power stations in Canada by type: * List of largest power stations in Canada ;Non-renewable energy * Coal in Canada § List of coal-fired power stations * List of natural gas-fired power stations in Canada * Nuclear power in Canada § Power reactors ;Renewable energy * Geothermal power in Canada § Recent developments * List of hydroelectric power stations in Canada * List of photovoltaic power stations in Canada * List of wind farms in Canada By province or territory The following pages lists the power stations in Canada by province or territory: * List of generating stations in Alberta * List of generating stations in British Columbia * List of generating stations in Manitoba * List of generating stations in New Brunswick * List of generating stat ...
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Reservoir (water)
A reservoir (; from French ''réservoir'' ) is an enlarged lake behind a dam. Such a dam may be either artificial, built to store fresh water or it may be a natural formation. Reservoirs can be created in a number of ways, including controlling a watercourse that drains an existing body of water, interrupting a watercourse to form an embayment within it, through excavation, or building any number of retaining walls or levees. In other contexts, "reservoirs" may refer to storage spaces for various fluids; they may hold liquids or gasses, including hydrocarbons. ''Tank reservoirs'' store these in ground-level, elevated, or buried tanks. Tank reservoirs for water are also called cisterns. Most underground reservoirs are used to store liquids, principally either water or petroleum. Types Dammed valleys Dammed reservoirs are artificial lakes created and controlled by a dam constructed across a valley, and rely on the natural topography to provide most of the basin of the re ...
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La Grande-1 Generating Station
The La Grande-1 (LG-1) is a hydroelectric power station on the La Grande River that is part of Hydro-Québec's James Bay Project. The station can generate 1,436 MW and was commissioned in 1994–1995. A run of the river generating station, it is one of only two generating stations of the James Bay Project that use a reservoir without any major water-level fluctuations (the Laforge-2 generating station is the other). Thus, the amount of electricity generated by the station depends almost entirely on the water-flow of the river, which is largely controlled by upstream reservoirs and generating stations. __NOTOC__ See also * List of largest power stations in Canada * List of electrical generating stations in Quebec * Reservoirs and dams in Canada * Hydro-Québec * James Bay Project * Chisasibi, Quebec Chisasibi ( cr, ᒋᓵᓰᐲ, translit=Cisâsîpî; meaning Great River) is a village on the eastern shore of James Bay, in the Eeyou Istchee equivalent territory (ET) in n ...
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James Bay Project
The James Bay Project (french: projet de la Baie-James) refers to the construction of a series of hydroelectric power stations on the La Grande River in northwestern Quebec, Canada by state-owned utility Hydro-Québec, and the diversion of neighbouring rivers into the La Grande watershed. It is located between James Bay to the west and Labrador to the east, and its waters flow from the Laurentian Plateau of the Canadian Shield. The project covers an area the size of New York State and is one of the largest hydroelectric systems in the world. It has cost upwards of US$20 billion to build and has an installed generating capacity of 16,527 megawatts. If fully expanded to include all of the original planned dams, as well as the additional James Bay II projects, the system would generate a total of 27,000 MW, making it the largest hydroelectric system in the world. It has been built since 1974 by James Bay Energy () for Hydro-Québec. Located in a region inhabited by Cree and Inuit ...
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Baie-James
The Municipality of Baie-James (french: Municipalité de Baie-James) was a municipality in northern Quebec, Canada, which existed from 1971 to 2012. Located to the east of James Bay, Baie-James covered of land, making it the largest incorporated municipality in Canada — only eight Unorganized area (Canada), unorganized territories were larger. Its territory almost entirely (about 98%) covered the administrative region of Jamésie, although it contained less than five percent of the population. Essentially, it was the remainder of the Jamésie Territory's land after all of the major population centres were removed. On July 24, 2012, the Quebec government signed an accord with the Cree that would result in the abolition of Baie-James and the creation of a regional government known as Eeyou Istchee James Bay Territory. The hydroelectric power plants of the James Bay Project, La Grande Complex were all located within the municipal boundaries of Baie-James, making the municipalit ...
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La Grande River
La Grande River (french: La Grande Rivière; cr, Chisasibi, script=latn; both meaning "great river") is a river in northwestern Quebec, Canada, which rises in the highlands of north central Quebec and flows roughly west to drain into James Bay. It is the second largest river in Quebec, surpassed only by the Saint Lawrence River. Originally, the La Grande River drained an area of and had a mean discharge of . Since the 1980s when hydroelectric development diverted the Eastmain and Caniapiscau rivers into the La Grande, its total catchment area has increased to about , and its mean discharge increased to more than . In November 2009, the Rupert River was also partially diverted, adding another to the basin. At one time, this river was known as the "Fort George River". The Hudson's Bay Company operated a trading post on the river at Big River House from 1803 to 1824. In 1837, a large trading post was established at Fort George on an island at the mouth of the river. In the earl ...
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Hydroelectricity
Hydroelectricity, or hydroelectric power, is Electricity generation, electricity generated from hydropower (water power). Hydropower supplies one sixth of the world's electricity, almost 4500 TWh in 2020, which is more than all other Renewable energy, renewable sources combined and also more than nuclear power. Hydropower can provide large amounts of Low-carbon power, low-carbon electricity on demand, making it a key element for creating secure and clean electricity supply systems. A hydroelectric power station that has a dam and reservoir is a flexible source, since the amount of electricity produced can be increased or decreased in seconds or minutes in response to varying electricity demand. Once a hydroelectric complex is constructed, it produces no direct waste, and almost always emits considerably less greenhouse gas than fossil fuel-powered energy plants.
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