Chaku Khola Hydropower Station
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Chaku Khola Hydropower Station
Chaku Khola Hydropower Station is a run-of-the-river hydroelectric power station with an installed capacity of 3 MW. The power station is located in Sindhupalchok District, Nepal. The plant is operated by Alliance Power Nepal, an IPP. Accidents *2015 October: The project was severely damaged due to aftershock of the Gorkha Earthquake The April 2015 Nepal earthquake (also known as the Gorkha earthquake) killed 8,964 people and injured 21,952 more. It occurred at on Saturday, 25 April 2015, with a magnitude of 7.8 Mw or 8.1 Ms and a maximum Mercalli Intensity of X (''Extreme .... *2019 July: Two staffs were killed due to flood in the river. See also * Nepal Electricity Authority * List of power stations in Nepal References Hydroelectric power stations in Nepal Run-of-the-river power stations Buildings and structures in Sindhupalchowk District {{Nepal-stub ...
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Sindhupalchok District
Sindhupalchowk District ( ne, :ne:सिन्धुपाल्चोक जिल्ला, सिन्धुपाल्चोक जिल्ला ) is a part of Bagmati Province and one of the seventy-seven districts of Nepal, with an area of . The district's headquarters is in Chautara. In 2006, 336,478 people resided in 79 Vdc nepal, village development committees, in 2011 there were 287,798.Household and population by districts, Central Bureau of Statistics (CBS) Nepal


Geography

The climatic zones found in the district comprise:


Demographics

At the time of the 2011 Nepal census, Sindhupalchok District had a population of 287,798. Of these, 53.4% spoke Nepali language, Nepali, 32.6% Tamang language, ...
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Run-of-the-river
Run-of-river hydroelectricity (ROR) or run-of-the-river hydroelectricity is a type of 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 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 elevation. Projects with pondage, as opposed to ...
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Hydroelectric
Hydroelectricity, or hydroelectric power, is 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 sources combined and also more than nuclear power. Hydropower can provide large amounts of 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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Nepal
Nepal (; ne, नेपाल ), formerly the Federal Democratic Republic of Nepal ( ne, सङ्घीय लोकतान्त्रिक गणतन्त्र नेपाल ), is a landlocked country in South Asia. It is mainly situated in the Himalayas, but also includes parts of the Indo-Gangetic Plain, bordering the Tibet Autonomous Region of China to the north, and India in the south, east, and west, while it is narrowly separated from Bangladesh by the Siliguri Corridor, and from Bhutan by the Indian state of Sikkim. Nepal has a diverse geography, including fertile plains, subalpine forested hills, and eight of the world's ten tallest mountains, including Mount Everest, the highest point on Earth. Nepal is a multi-ethnic, multi-lingual, multi-religious and multi-cultural state, with Nepali as the official language. Kathmandu is the nation's capital and the largest city. The name "Nepal" is first recorded in texts from the Vedic period of the India ...
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April 2015 Nepal Earthquake
The April 2015 Nepal earthquake (also known as the Gorkha earthquake) killed 8,964 people and injured 21,952 more. It occurred at on Saturday, 25 April 2015, with a magnitude of 7.8 Mw or 8.1 Ms and a maximum Mercalli Intensity of X (''Extreme''). Its epicenter was east of Gorkha District at Barpak, Gorkha, roughly northwest of central Kathmandu, and its hypocenter was at a depth of approximately . It was the worst natural disaster to strike Nepal since the 1934 Nepal–Bihar earthquake. The ground motion recorded in Kathmandu, capital of Nepal, was of low frequency, which, along with its occurrence at an hour where many people in rural areas were working outdoors, decreased the loss of property and human lives. The earthquake triggered an avalanche on Mount Everest, killing 22, the deadliest incident on the mountain on record. The earthquake triggered another huge avalanche in the Langtang valley, where 250 people were reported missing. Hundreds of thousands of Nepalese wer ...
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Nepal Electricity Authority
Nepal Electricity Authority (NEA), founded on 16 August 1985, is the parent generator and distributor of electric power under the supervision of the government of Nepal Nepal (; ne, नेपाल ), formerly the Federal Democratic Republic of Nepal ( ne, सङ्घीय लोकतान्त्रिक गणतन्त्र नेपाल ), is a landlocked country in South Asia. It is mai .... NEA owns Hydroelectric Plants connected to the grid amounting to 480 Megawatts. It also buys power from Independent Power Producers (IPP) amounting to 230 Megawatts. It operates two fuel operated plants generating 53 Megawatts of Electricity. The total capacity of the Integrated Nepal Power System (INPS) which NEA operates stands at 1095 Megawatts. Various projects are underway to help meet the electricity demand but these have been plagued by delays. However after many such delays Nepal has seen a positive change in electricity production and distribution. For the ...
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List Of Power Stations In Nepal
The following is a list of the power stations in Nepal. Hydroelectric Solar Power Stations Diesel Power Stations Hydropower stations under construction Other Power Stations * Solar power stations ** Simikot 50 kW ** Gamgadhi 50 kW ** Dhobighat Oxidaizing Pond 680.4 kW, Owner:KUKL, Dedicated 11 kV feeder connecting to Teku Substation * 10 other small hydropower stations (total: 2460 * 29 small isolated hydropower stations (total: 5.676 MW) Upcoming Hydro-power Projects in Nepal Source: Bidhyut Magazine/Semi- Annual Report – NEA, Bhadra 2063; NEA Annual Report 2073 B.S. See also *List of largest power stations in the world *List of dams and reservoirs in Nepal References {{DEFAULTSORT:Power stations in Nepal Nepal Economy of Nepal-related lists Energy in Nepal * Power stations A power station, also referred to as a power plant and sometimes generating station or generating plant, is an industrial facility for the generation of ...
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Hydroelectric Power Stations In Nepal
Hydroelectricity, or hydroelectric power, is 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 sources combined and also more than nuclear power. Hydropower can provide large amounts of 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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Run-of-the-river Power Stations
Run-of-river hydroelectricity (ROR) or run-of-the-river hydroelectricity is a type of 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 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 elevation. Projects with pondage, as opposed t ...
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