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European super grid

From Wikipedia, the free encyclopedia

A conceptual plan of a European super grid linking renewable energy projects like DESERTEC & Medgrid across North Africa, the Middle East and Europe and could serve as the backbone for the hypothetical supersmart grid.
  Existing links
  Under construction
  Proposed
See also the List of HVDC projects in Europe, which would eventually be part of European Supergrid.

The European super grid is a possible future super grid that would ultimately interconnect the various European countries and the regions around Europe's borders – including North Africa, Kazakhstan, and Turkey – with a high-voltage direct current (HVDC) power grid.[1]

It is envisaged that a European super grid would:[1]

  • lower the cost of power in all participating countries by allowing the entire region to share the most efficient power plants;
  • pool load variability and power station unreliability, reducing the margin of inefficient spinning reserve and standby that have to be supplied;
  • allow for wider use of renewable energy, particularly wind energy, from the concept that "it is always windy somewhere" – in particular it tends to be windy in the summer in North Africa, and windy in the winter in Europe;
  • allow wide sharing of the total European hydro power resource, which is about 6 weeks of full load European output;
  • decrease Europe's dependence on imported fuels.

A recent study from the University College Dublin (UCD) Energy Institute indicates that implementing a pan-European 'supergrid' could lead to a 32% reduction in energy costs across the continent.[2]

Proposed schemes

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The most comprehensive study has been carried out by Dr Gregor Czisch, of Kassel University.[3][1] His study optimised a vast grid covering North Africa, Eastern Europe, Norway, and Iceland. His study ran a number of scenarios, wind, concentrating solar power (CSP), nuclear etc., and the optimisation showed that all European power could largely come from wind energy, with relatively low amounts of combustion plant needed during universal low wind periods. Furthermore, the study showed that no new storage would be required; existing hydro would be sufficient. The total cost, including for new combustion plant, fuelled by biomass, the cost of the interconnections, the inefficiency of starting and stopping the combustion plant, all indicated a power price at the same as Germany was paying in 2005.

A number of other specific schemes have been proposed to create super grids of varying extent within Europe. These include:

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On 24 November 2011, a memorandum of understanding (MoU) was signed between Medgrid and Desertec Industry Initiative (Dii) to study, design and promote an interconnected electrical grid with Desertec & Medgrid projects.[10][11][12][13] The medgrid together with Desertec would serve as the backbone of the European super grid and the benefits of investing in HVDC technology are being assessed to reach the final goal – the supersmart grid.[14]

Evaluations

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A report by Pöyry stated that a super grid would only partially reduce the problems from intermittent renewable energy production. While it found that spreading renewables across Europe produced a smoothing effect, large scale weather patterns would impact many European countries at similar times. This still results in large highs and lows of energy output. However this report does not consider the super grid covering the much larger area as the Czisch study, which would further smooth energy output to some extent.[15][16]

See also

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References

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  1. ^ a b c Andrews, Dave (19 June 2009). "Why Do We Need The Supergrid, What Is Its Scope And What Will It Achieve?". Claverton Energy Group. Retrieved 24 July 2011.
  2. ^ "Pan-European 'supergrid' could cut 32% from energy costs, says new UCD study". www.ucd.ie. Retrieved 14 February 2024.
  3. ^ Andrews, Dave (22 June 2009). "Talk by Dr Gregor Czisch at the 5th Claverton Energy Conference, House of Commons, June 19th 2009". Claverton Group.
  4. ^ a b c "A European Supergrid". Energy and Climate Change Select Committee. September 2011. Retrieved 3 October 2011.
  5. ^ Communication from the Commission to the European Parliament, the Council, the European Economic and Social Committee and the Committee of the Regions - Second Strategic Energy Review: an EU energy security and solidarity action plan (PDF) (Report). European Commission. November 2008. pp. 4–6. {SEC(2008) 2870} {SEC(2008) 2871} {SEC(2008) 2872}. Retrieved 31 January 2010.
  6. ^ a b "Battle of the grids". Greenpeace International. 18 January 2011. Archived from the original on 21 January 2011. Retrieved 3 October 2011.
  7. ^ "Abengoa signs Medgrid agreement in Paris". energetica-india.net. 20 December 2010. Retrieved 27 November 2011.[dead link]
  8. ^ Patel, Tara (10 December 2010). "Medgrid to Study Developing a Mediterranean Power Grid for Solar Energy". Bloomberg. Retrieved 27 November 2011.
  9. ^ "Medgrid – the new French Desertec". renewablesinternational.net. 13 December 2010. Archived from the original on 23 December 2011. Retrieved 27 November 2011.
  10. ^ "Huge medgrid joins giant solar desertec plan". greenprophet.com. 24 November 2011. Retrieved 27 November 2011.
  11. ^ "EU Commission welcomes Desertec and Medgrid cooperation on solar energy in North Africa and the Middle East". europa.eu. 24 November 2011. Retrieved 27 November 2011.
  12. ^ "Presentation from DII website: Medgrid Co developmental plan with Desertec project Secretary" (PDF). dii-eumena.com. 2011. Archived from the original (PDF) on 8 June 2012. Retrieved 27 November 2011.
  13. ^ Lewis, Barbara (24 November 2011). "Arab Spring a short-term problem for solar-Medgrid". Reuters. Retrieved 27 November 2011.
  14. ^ "Desertec and Medgrid: Competitive or compatible?". social.csptoday.com. 11 March 2011. Archived from the original on 3 February 2012. Retrieved 27 November 2011.
  15. ^ "The challenges of intermittency in North West European power markets. The impacts when wind and solar deployment reach their target levels" (PDF). Pöyry. March 2011. Archived from the original (PDF) on 30 October 2013. Retrieved 12 April 2012.
  16. ^ "New Study Confirms REF Intermittency Findings" (Press release). Renewable Energy Foundation. 1 April 2011. Retrieved 12 April 2012.
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