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From Wikipedia, the free encyclopedia

Kielder Reservoir
KielderDam.JPG
Kielder Dam in 2007
LocationNorthumberland
Coordinates55°11′N 2°30′W / 55.183°N 2.500°W / 55.183; -2.500
Lake typereservoir
Primary inflowsRiver North Tyne, Kielder Burn, Lewis Burn
Primary outflowsRiver North Tyne
Basin countriesEngland
Managing agencyNorthumbrian Water
Built1975–1981
First flooded1982
Max. length5.65 miles (9.09 km)
Max. width2 miles (3.2 km)
Surface area10.86 square kilometres (2,680 acres)
Water volume200 billion litres (44×10^9 imp gal)
Shore length127.5 mi (44.3 km)
Surface elevation184 m (604 ft)
Islands1
Sections/sub-basinsBakethin Reservoir
1 Shore length is not a well-defined measure.

Kielder Water is a large man-made reservoir in Northumberland in North East England. It is the largest artificial lake in the United Kingdom by capacity of water and it is surrounded by Kielder Forest, one of the biggest man-made woodlands in Europe. The scheme was planned in the late 1960s to satisfy an expected rise in demand for water to support a booming UK industrial economy.

Kielder Water is owned by Northumbrian Water, and holds 200 billion litres (44 billion gallons, or 0.2 cubic km), making it the largest artificial reservoir in the UK by capacity (Rutland Water is the largest by surface area). It has a 27.5-mile (44.3 km) shoreline, and is 24.6 miles (39.6 km) from the sea.[1]

Etymology

The name Kielder was first recorded in 1309 as Keldre.[2] Originating as a river name,[2] Kielder may have the same origin as the various rivers named Calder, such as the one in West Yorkshire.[2][3] The name may be derived from the Brittonic caleto-/ā, with the root sense of "hard" (Welsh caled),[3] suffixed with -duβr meaning "water" (Welsh dwr).[3]

Derivation from the Gaelic caol dobhar meaning "narrow stream" has also been suggested.[4]

Construction

Kielder Water under construction in the 1970s.
Kielder Water under construction in the 1970s.

After the scheme was approved by Parliament in 1974, work to build the reservoir and the dam at the hamlet of Yarrow in the Kielder Valley began in 1975. The reservoir and dam were designed for Northumbrian Water by consulting civil engineers Babtie, Shaw and Morton.[5][6][7] Sir Frederick Gibberd and Partners were responsible for architectural aspects.[8] Earth moving and infrastructure construction was undertaken in a joint venture with AMEC and Balfour Beatty.[9]

The design meant the loss of numerous farms and a school. The former permanent way of the Border Counties Railway was also taken away through the development of the reservoir.

Work was completed in 1981. Queen Elizabeth II officially opened the project the following year. The valley took a further two years to fill with water completely.

Hydroelectric plant

Kielder Water is also the site of England's largest hydroelectric plant. It was opened by Queen Elizabeth II on 26 May 1982 and is owned by Northumbrian Water. In December 2005, RWE Npower Renewables bought the rights to operate the plant and sell the electricity generated by it, with a contract lasting until 2025. Following the takeover, the turbines were refurbished in 2005–2006, which increased the efficiency of the electricity generation. Controls were also updated, meaning that the plant can be operated from Dolgarrog in Wales.

The plant generates electricity using dual turbines which produce 6 megawatts of electricity. This comes from a combination of a 5.5 MW Kaplan turbine, which generates electricity when water release takes place, and a 500 kW Francis turbine that generates constantly from the compensation flow of water from the reservoir into the North Tyne. This gives the reservoir an average production of 20,000 MWh of electricity per year, a saving of 8,500 tonnes of carbon dioxide per year compared to fossil fuel based methods of generation.[10]

Operations

The reservoir's main use is to provide compensating discharges into the River North Tyne to support abstractions of water further downstream. It also underpins the £167m Kielder Transfer Scheme, where water can be transferred to the Wear and the Tees rivers, to meet shortfalls in those areas. In recent years, Kielder Water has become increasingly important, with underground springs ensuring that it always remains at high levels, regardless of the prevailing climate condition. This means that while the south of England is often forced to implement drought strategies and hosepipe bans, north-east England enjoys plentiful water supplies.

There are two main visitor centres at Kielder Water – Leaplish waterside park and Tower Knowe visitor centre – and other facilities at Kielder, Falstone and Stannersburn villages. It is also one of the region's major tourist venues, attracting more than 250,000 visitors a year who come to enjoy the facilities.

Notes

Citations

  1. ^ "Kielder Water". British Lakes. Retrieved 1 December 2017.
  2. ^ a b c Mawer, Allen (1920). The Place-names of Northumberland and Durham. Cambridge: CUP Archive. p. 92.
  3. ^ a b c James, Alan. "A Guide to the Place-Name Evidence" (PDF). SPNS - The Brittonic Language in the Old North. Archived from the original (PDF) on 13 August 2017. Retrieved 25 November 2018.
  4. ^ "The place-names of England and Wales". Retrieved 17 July 2017.
  5. ^ Coats, D.J. and Ruffle, N.J. (1982) "The Kielder Water Scheme" Proc. Instn. Civ. Engrs, Part 1, Vol 72, May, 135-147.
  6. ^ Coats, D.J. and Rocke, G. (1982) "The Kielder Headworks" Proc. Instn. Civ. Engrs, Part 1, Vol 72, May, 149-176.
  7. ^ Coats, D.J., Berry, N.S.M.B. and Banks, D.J. (1982) "The Kielder Transfer Works" Proc. Instn. Civ. Engrs, Part 1, Vol 72, May, 177-208.
  8. ^ "North Tyne – Kielder Reservoir". Bridges on the Tyne. Retrieved 26 February 2013.
  9. ^ "Structure Images of the North East". University of Newcastle upon Tyne. Archived from the original on 13 June 2011.
  10. ^ "Water power on a large scale" (PDF). Tynedale Renewable Energy Trail. p. 1. Archived from the original (PDF) on 7 November 2015. Retrieved 7 November 2015.

References

External links

This page was last edited on 14 May 2020, at 03:08
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