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Trawsfynydd nuclear power station

Nuclear

The Trawsfynydd nuclear power station is a key infrastructure asset in United Kingdom's power generation grid, located on the continent of Europe. Designated as a low-carbon electricity generation station, the facility features an installed capacity of 0 MW. Its primary operation relies on harnessing nuclear energy resources to generate bulk electricity. Operational management and ownership of the facility are handled by the Magnox Ltd, which oversees daily maintenance and grid dispatch integration. The facility was officially connected to the commercial grid in 1965, since which it has maintained regular output, playing a structured role in domestic power supply security. In terms of domestic production capacity within United Kingdom, Trawsfynydd nuclear power station occupies the #19 position among all operational nuclear power plants. Its 0 MW capacity represents a 0.00% share of United Kingdom's total installed nuclear generating capacity, which currently stands at 18,850 MW. The largest operational nuclear installation in United Kingdom is the Torness Nuclear Power Station with an output of 1,364 MW, making the Trawsfynydd nuclear power station approximately 1.0 times smaller by comparison. Across all fuel types and electricity generation technologies country-wide, this facility accounts for 0.0000% of United Kingdom's aggregate generation capacity of 155,300 MW. Based on historical capacity factors characteristic of nuclear power plants (modeled at 90% for analysis), the facility's expected annual electricity generation is calculated at approximately 0 MWh. Applying domestic consumption statistics where an average household in United Kingdom consumes 4 MWh of electricity annually, this level of production is sufficient to meet the energy demands of roughly 0 homes. By utilizing traditional thermal power processes, the station delivers reliable dispatchable energy to the grid, supporting grid resilience during periods of low renewable resource availability and satisfying industrial base-load demands. The physical site of the station is located at geographic coordinates 52.9249° latitude and -3.9484° longitude. Analysis of local grid infrastructure shows a density of other assets within a 50-kilometer radius. These nearby facilities include the Dinorwig (hydroelectric, 1800 MW), the Dinorwig Power Station (hydroelectric, 1728 MW), the Ffestiniog (hydroelectric, 360 MW), representing a cluster of localized power assets. This geographic placement is vital for reinforcing regional distribution infrastructure and minimizing transmission line losses across this sector of United Kingdom.

Capacity
0 MW
Commissioning Year
1965

61 years old

Owner
Magnox Ltd
Location
52.9249°, -3.9484°

United Kingdom, Europe

Location

Coordinates:: 52.924900, -3.948440
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Carbon Footprint

Zero Direct Emissions

Trawsfynydd nuclear power station is a nuclear power plant producing approximately 0 GWh of clean electricity per year with zero direct CO₂ emissions during operation.

Lifecycle emissions: ~12 g CO₂/kWh (manufacturing, transport, decommissioning)

Technical Details

Primary Fuel Type
Nuclear
Energy Source
Non-Renewable
Country
United Kingdom
Continent
Europe
Data Source
Global Power Plant Database

United KingdomEnergy Profile

3,024
Total Plants
155.3 GW
Total Capacity
GasWindNuclearCoal
Top Fuels

Nuclear Power Generation: An Overview of Its Functionality and Impact

Nuclear power generation is a process that harnesses the energy released from nuclear fission to produce electricity. At its core, nuclear fission involves splitting the nuclei of heavy atoms, such as uranium-235 or plutonium-239, into lighter nuclei, which releases a significant amount of heat. This heat is used to produce steam, which drives turbines connected to generators, ultimately converting thermal energy into electrical energy. As of now, there are 243 nuclear power plants operating worldwide across 32 countries, with a total installed capacity of 534.0 gigawatts (GW). The United States leads with 68 plants generating 130.7 GW, followed by Japan with 26 plants at 72.8 GW, and France with 19 plants at 63.1 GW. Other notable contributors include South Korea and China, with 11 and 14 plants producing 49.8 GW and 45.2 GW, respectively.

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