Ringhals Nuclear Power Plant
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Ringhals is a nuclear power plant in Sweden. It is situated on the Värö Peninsula (Swedish: Väröhalvön) in
Varberg Municipality Varberg Municipality (''Varbergs kommun'') is a municipality in Halland County, in southwest Sweden. Its seat is in Varberg. It was formed in 1971 through the amalgamation of the ''City of Varberg'' and the surrounding rural municipalities. ...
approximately 65 km south of Gothenburg. With a total power rating of 2,190 MWe, it is the second largest power plant in Sweden. It is owned 70% by Vattenfall and 30% by Uniper SE. The plant has two
pressurized water reactor A pressurized water reactor (PWR) is a type of light-water nuclear reactor. PWRs constitute the large majority of the world's nuclear power plants (with notable exceptions being the UK, Japan and Canada). In a PWR, the primary coolant (water) i ...
s (R3 and R4). A third pressurized water reactor, R2, was permanently shut down in 2019. On 31 December 2020 the R1
boiling water reactor A boiling water reactor (BWR) is a type of light water nuclear reactor used for the generation of electrical power. It is a design different from a Soviet graphite-moderated RBMK. It is the second most common type of electricity-generating nu ...
was also permanently shut down.


History


Planning and construction, 1965-1983

Planning and land procurement of the site started in 1965. Two reactors were ordered in 1968: one boiling water reactor from ABB-ATOM (R1) and one pressurized water reactor from Westinghouse (R2). Construction work started in 1969; commercial operation started for R2 in 1975, and for R1 in 1976. Two more pressurized water reactors, R3 and R4, were ordered from Westinghouse in 1971 and construction work started in 1972. So far the public and political opinion in Sweden was fairly positive to nuclear power. One reason was that until 1970 nearly all electricity came from a continuously increasing exploitation of the large and wild rivers in the north of Sweden, and the diminishing number of remaining, unexploited rivers created fierce opposition against further hydro power development. Opinion changed and in the parliamentary election of 1976 a new government was elected with a clear mandate to phase out nuclear power no later than 1985. Formally this was imposed through a new law, Villkorslagen which required proof of an "absolute safe" method for disposal of spent nuclear fuel before new reactors were allowed to be loaded with fresh nuclear fuel. The law went into force in spring 1977 and hindered the recently completed unit R3 from being loaded with nuclear fuel. The Swedish nuclear industry then developed a concept for disposal of high-level radioactive waste called KBS-1, later further developed to KBS-3. Based upon the KBS-1 concept R3 was, through a highly controversial process including a governmental crisis, granted permission to load fuel on 27 March 1979. The
Three Mile Island accident The Three Mile Island accident was a partial meltdown of the Three Mile Island, Unit 2 (TMI-2) reactor in Pennsylvania, United States. It began at 4 a.m. on March 28, 1979. It is the most significant accident in U.S. commercial nuclea ...
occurred the following day which triggered a referendum in Sweden about nuclear power. The referendum was held on 23 March 1980 and the result was interpreted as a "yes" to completion of construction and operation of the whole Swedish nuclear program with 12 reactors. Hence R3 could be loaded with fuel and started commercial operation on 9 September 1981, more than four years after essentially completed the construction phase in 1977. R4 was also somewhat delayed due to the referendum but also due to remediation of some technical problems identified at the start-up of the sister-plant R3, and started commercial operation on 21 November 1983.


Major modifications and upgrades

As a result of the Three Mile Island accident in 1979, all Swedish reactors were required to install FCVS -
Filtered Containment Venting System A Filtered Containment Venting System (FCVS) is an accident management system designed to minimize the release of fission products when releasing the pressure of the containment building in the case of a severe nuclear accident. As a Severe Acciden ...
- and ICSS - Independent Containment Spray System. In case of an accident with core degradation and loss of all cooling systems the ICSS can still limit the containment pressure, and should this fail the FCVS can relieve the containment pressure with limited releases of radioactivity. The systems went into operation at Barsebäck in 1985 and for the other plants in 1989. As a result of the Barsebäck strainer incident in 1992 the recirculation strainer capacity was significantly increased for R1 in 1992 and R2 in 1994. Units R3 and R4 made similar upgrades in 2005. During the 2005-2015 period, significant improvements were made regarding fire separation, redundancy and diversification of various safety systems, particularly for the older plants R1 and R2 . The original
steam generators A steam generator is a form of low water-content boiler, similar to a flash steam boiler. The usual construction is as a spiral coil of water-tube, arranged as a single, or monotube, coil. Circulation is once-through and pumped under pressure, ...
for the Ringhals PWRs had tubes of Inconel-600 and details in the construction that made them prone to cracks and corrosion. This triggered huge efforts for inspection, maintenance and repair. Although designed for 40 years of operation, both unit R2 and R3 replaced their steam generators after 14 years, i.e. 1989 and 1995. Unit R4, starting later, could take advantage of being aware of the problems, and due to high attention to water chemistry and maintenance efforts the R4 steam generators were replaced in 2011 after 28 years of operation. All the new steam generators have tubes of Inconel-690 and improved design, and have had very few problems and high availability. This is especially true for R2 which, as of 2017, had been operating 28 years with the new steam generators. As a result of analysis and observations from the Three Mile Island accident, the Ringhals PWR reactors installed PAR - Passive Autocatalytic hydrogen Recombiners in 2007. Each reactor contains a number of PAR units with catalytic plates, which after a severe core degradation can process the hydrogen emanating from the fuel cladding oxidation within a few hours and hence reduce the risk for violent hydrogen combustion. All European nuclear power plants including Ringhals had to perform stress-tests after the Fukushima accident 2011, where consequences of certain beyond-design-events should be assessed. The availability of FCVS - Filtered Containment Venting System, ICSS - Independent Containment Spray System and PAR - Passive Autocatalytic hydrogen Recombiners, turned out to be valuable capabilities in these beyond-design-events and no immediate plant modifications were proposed as a post-Fukushima-response. On the contrary Ringhals made significant upgrades in the emergency preparedness organization in the size, education and training of the staffing, and in the independence and durability (power supply, communications, etc.) for certain systems and buildings. In December 2014, the Swedish regulator required that all Swedish reactors should be equipped with an Independent Core Cooling System - ICCS - before 31 December 2020. The system should be able to cool the reactor during 72 hours without any supply of water, power, fuel or other consumables, and should survive external events (seismic events, hard weather etc.) with an estimated probability of exceedance of 10−6/yr. The requirements are influenced by the so-called "Forsmark-event" 25 July 2006 and the Fukushima accident. Design of and preparations for ICCS is (2017) already underway for R3 and R4, but will not be made for R1 and R2 since they were planned to be shut down before 2021. However, the
Swedish Radiation Safety Authority The Swedish Radiation Safety Authority ( sv, Strålsäkerhetsmyndigheten) is the Swedish government authority responsible for radiation protection. It sorts under the Ministry of the Environment. It was created on 1 July 2008 with the merging of ...
stated that in case that the reactors were to be shut down when they were originally planned to be closed, i.e. around 2025, they could be operated without additional upgrades after 2020.


Production cost 2018

In connection with the decision to close Ringhals 1 and Ringhals 2 in 2015, a write-down of the total fixed value of these was made in the annual report for 2015 of SEK 10,863 million. The production costs for all reactors at Ringhals can be obtained from the annual report for 2018 which shows a cost for goods sold of SEK 6,289 million. If all other costs including administrative costs and R&D are added with no adjustments for revenue for some of these costs the cost is SEK 6,379 million with a depreciation of SEK 576 million, i.e. the cost excluding these was SEK 5,803 million. The production of electricity was 30.1 TWh, which gives a production cost of 21.2 öre/kWh including depreciation and 19.3 öre/kWh without. This amount includes a fee to the Swedish Nuclear Waste Fund, Kärnavfallsfonden (KAF) of 5.2 öre / kWh. This gives an average production cost of 16.0 öre/kWh with and 14.1 öre/kWh without KAF and depreciations. The fees to the Nuclear Waste Fund are intended to finance future expenditures for managing and disposing of spent nuclear fuel and other waste products.


Incidents

Following a number of observations of deficiencies in the safety culture since 2005, the
Swedish Radiation Safety Authority The Swedish Radiation Safety Authority ( sv, Strålsäkerhetsmyndigheten) is the Swedish government authority responsible for radiation protection. It sorts under the Ministry of the Environment. It was created on 1 July 2008 with the merging of ...
decided in 2009 to put Ringhals under increased surveillance. Ringhals made certain efforts in order to improve traceability and transparency in decision making, internal audits and analyses of incidents and mistakes. The regulator acknowledged the improvements, and the increased surveillance was waived for 2013. In 2012 a small quantity of explosives, although without any firing device, was found during a routine check underneath a truck at the plant. For a short time all nuclear power plants in Sweden increased their alert level, but no more explosives were found, and no-one could be tied to the discovery. In October 2012, 20
anti-nuclear The anti-nuclear movement is a social movement that opposes various nuclear technologies. Some direct action groups, environmental movements, and professional organisations have identified themselves with the movement at the local, nationa ...
Greenpeace activists scaled the outer perimeter standard industrial fence, and there was also an incursion at Forsmark nuclear power plant. Greenpeace said that its non-violent actions were "intended to protest against the continuing operation of these reactors, which it argues were shown to be unsafe in European stress tests." The inner perimeter fence (with barbed wire, CCTV-surveillance, "no-go" zone etc.) around the reactors was not scaled. On 30 July 2018, Ringhals-2 was taken offline during the
2018 European heat wave The 2018 European drought and heat wave was a period of unusually hot weather that led to record-breaking temperatures and wildfires in many parts of Europe during the spring and summer of 2018. It is part of a larger heat wave affecting the ...
, since the sea water temperature exceeded the design limit 25 DegC. The reactor was restarted on 3 August. The other reactors R1, R3 and R4 were not affected since they are licensed for slightly higher temperatures.


Plans for operation and decommissioning

In October 2015, Vattenfall decided to close down Ringhals 1 by 2020 and Ringhals 2 by 2019 due to their declining profitability, instead of, as previously announced, around 2025. Ringhals 3 and 4 are still expected to continue in service until the 2040s. In January 2016, Vattenfall announced that all its Swedish nuclear power plants, including the newer reactors, were operating at a loss due to low electricity prices and Sweden's nuclear power tax ("effektskatt"). It warned that it may be forced to shut all the nuclear plants down, and argued that the nuclear output tax, which constituted over one third of the price, should be scrapped. Through an agreement 10 June 2016 the major part of the nuclear power tax was removed on 1 July 2017, but combined with prolonged and enhanced support for renewable electricity production. The removal of the nuclear power tax corresponds to a tax reduction of approximately 7 öre or 0.007 EUR/kWh which corresponds to around 25% of the generating cost. This is a significant cost reduction and has been important for Vattenfall's decision to operate R3 and R4 until the 2040s. On 30 December 2019, the R2 reactor was permanently shut down. In June 2020, a contract was signed between Svenska kraftnät (Swedish national grid operator) and Ringhals AB that would grant Ringhals an allowance of 300 million SEK (approximately 30 million US dollars) to keep R1 reactor connected to the grid from 1 July to 15 September 2020 in order to increase grid stability. Strictly Ringhals 1 is not required to produce any active power during the contract period, but the generators will be available for control of voltage and reactive power in a situation with large electricity generation in the north of Sweden and large consumption in the south. On 31 December 2020 the R1 reactor was permanently shut down.


References


External links

* * {{Energy in Sweden Nuclear power stations in Sweden Varberg Municipality Uniper Vattenfall nuclear power stations Buildings and structures in Halland County