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Copenhagen Atomics is a Danish molten salt technology company developing mass manufacturable molten salt reactors. The Copenhagen Atomics Waste Burner is a single-fluid, heavy water moderated, fluoride-based, thermal spectrum and autonomously controlled molten salt reactor. This is designed to fit inside of a leak-tight, foot, stainless steel shipping container. A molten lithium-7 deuteroxide 7 LiOD moderator version is also being researched.

The reactor utilizes the thorium fuel cycle using separated plutonium from spent nuclear fuel as the initial fissile load for the first generation of reactors, eventually transitioning to a thorium breeder. During operation, the fuel will not be replaced and will burn for the entire year reactor lifetime. The original MSR concept used the fluid salt to provide the fission materials and also to remove the heat.

Thus it had problems with the needed flow speed. Using 2 different fluids in separate circles solves the problem. In , Indian researchers published a MSR design, [67] as an alternative path to thorium-based reactors, according to India’s three-stage nuclear power programme. A consortium including members from Japan, the U. The project would likely take 20 years to develop a full size reactor, [72] but the project seems to lack funding. It would be fueled by plutonium from reprocessed VVER spent nuclear fuel and fluorides of minor actinides.

It is expected to launch in at Mining and Chemical Combine. The Alvin Weinberg Foundation is a British non-profit organization founded in , dedicated to raising awareness about the potential of thorium energy and LFTR. It was formally launched at the House of Lords on 8 September Weinberg , who pioneered thorium MSR research. Idaho National Laboratory designed [ when?

Kirk Sorensen, former NASA scientist and chief nuclear technologist at Teledyne Brown Engineering , is a long-time promoter of the thorium fuel cycle , coining the term liquid fluoride thorium reactor.

It is easier to approve novel military designs than civilian power station designs in the US nuclear regulatory environment. Transatomic Power pursued what it termed a waste-annihilating molten salt reactor WAMSR , intended to consume existing spent nuclear fuel , [87] from until ceasing operation in and open-sourcing their research. Department of Energy announced plans to build the Molten Chloride Reactor Experiment, the first fast-spectrum salt reactor at the Idaho National Laboratory.

From Wikipedia, the free encyclopedia. Type of nuclear reactor cooled by molten material. Main article: Liquid fluoride thorium reactor. Main article: Stable salt reactor. Main article: Aircraft Reactor Experiment. Main article: Molten-Salt Reactor Experiment. Nuclear technology portal Energy portal Physics portal.

Aqueous homogeneous reactor Integral fast reactor Nuclear aircraft Nuclear waste. The fission products that are not soluble e. Xe, Kr are continuously removed from the molten fuel salt, solidified, packaged, and placed in passively cooled storage vaults”. Charles W. In this design, the gaseous fission byproducts Xe and Kr are separated by Helium sparge into holding tanks, where their radioactivity has decayed, after about a week.

Bibcode : Natur. PMID S2CID Retrieved 10 September Molten-salt reactors are considered to be relatively safe because the fuel is already dissolved in liquid and they operate at lower pressures than do conventional nuclear reactors, which reduces the risk of explosive meltdowns. File: GenIV. The gas flow continues to a cryogenic gas processing system to separate the gasses, storing stable Xe and radioactive Kr in gas bottles and returning He for reuse as a sweep gas”.

AIP Conference Proceedings. Bibcode : AIPC.. OSTI Archived from the original PDF on 28 February Popular Mechanics. Transatomic Power Inc. Archived from the original PDF on 5 July Retrieved 2 June San Francisco, CA. Critical issues of nuclear energy systems employing molten salt fluorides PDF. Archived from the original PDF on 13 April Retrieved 18 December Forsberg, Charles June Archived from the original PDF on 13 January Retrieved 12 September Progress in Nuclear Energy.

The Chemical Engineer. The Molten Salt Reactor option for beneficial use of fissile material from dismantled weapons. Annual meeting of the American Association for the Advancement of Science: earth science. Retrieved 2 September ISSN Annals of Nuclear Energy. American Scientist. JSTOR ProQuest Circular , U. Nuclear Science and Engineering. Mitchell 22 February Knowable Magazine. ISBN Retrieved 12 November GDP Then?

Retrieved 12 February The Technology pork barrel. Brookings Institution. Retrieved 28 February The Alvin Weinberg Foundation. Archived from the original on 5 March Retrieved 13 June Advanced Reactors with Innovative Fuels. Annual Review of Environment and Resources.

Retrieved 25 June Canadian Nuclear Safety Commission. Retrieved 10 November The Guardian. Weinberg Next Nuclear. Retrieved 9 June South China Morning Post.

Retrieved 4 May Roland Corporation requested that an acknowledgment be added to the ReBirth packaging and splash screen; the unofficial endorsement became a marketing boost for Propellerhead, and they have retained a close relationship with Roland ever since. ReWire was developed jointly between Propellerhead and Steinberg for use with their Cubase sequencer. Released in , it provided a virtual audio and synchronization connection between Cubase and ReBirth. In January the protocol was opened for general use by third parties without any license fee, [4] to allow communication between different sequencers.

Propellerhead soon focused their attention on their new product, the award-winning [5] Reason, released in Reason was an entire studio emulation complete with virtual cables and representations of a subtractive synthesizer, sampler and drum machine, alongside a REX file loop player, a pattern step sequencer and a multitude of effects units. Making Reason’s appeal even greater was the ability to create as many of each device as a computer could handle and a simple sequencer for notes and device automation.

Additionally, Reason could run on average spec computers and was extremely competitively priced. In May , Propellerhead announced a new product, Record. Record emulates a recording studio, with a mixing desk, a rack of virtual instruments and effects, and an audio sequencer similar to traditional MIDI sequencing.

It is also made to work alongside Reason; if Record is installed on a computer with Reason on it, the modules from Reason will be usable inside of Record. Released 9 September , Record has been praised for its stability, seamless integration with Reason, and sound quality, [8] and has received a number of awards, including Future Music’s Platinum Award, [9] Computer Music Editor’s Choice and Performance awards, [10] and the MusicTech Excellence award.

In July , Propellerhead announced plans for Reason version 6 which includes all the features of Record 1. This allowed Propellerhead to discontinue Record and create two different versions of Reason. In March , Propellerhead announced Rack Extensions and the Rack Extension store, a software architecture that will allow 3rd party developers to use their own instruments and effect devices inside of Reason. This technology was announced to appear alongside Reason 6.

Rack Extensions will be sold in an app store similar in a fashion in which Apple Inc. Hosted by Propellerhead Software, developers are free to use their own DSP and existing code to develop instruments and effects for use in Reason. When purchased, the Rack Extensions appear in Reason as a native Reason instrument or effect module and are privy to all of the features that Reason offers in its native instruments and effect devices.

The name propellerhead comes from the pejorative term used to deprecate science fiction fans and other technophiles , who are stereotypically drawn wearing propeller beanies.

The company is not related to the British electronic music duo Propellerheads. On 26 August , Propellerhead announced they would change their name to Reason Studios to have a name more closely tied to their core product: Reason. From early on, Propellerhead used the Internet as both a marketing tool and as a method to communicate with their user base. An alpha version of ReBirth was made available for free download on the Propellerhead website in December , and the company even searched the internet for active users of the TB and sent them invitation emails to try the new software.

The user forum has always been at the forefront of the Propellerhead community, with many employees checking them every day. In November , the forums were shut down indefinitely due to security concerns with the forum software. On 16 January , Propellerhead Software announced that they will close down the year-old Reason community forums, shifting online customer interaction to their social media accounts instead.

The second test, deliberate shut-off of the secondary coolant loop that supplies the generators, caused the primary circuit to undergo the same safe shutdown. This test simulated the case of a water-cooled reactor losing its steam turbine circuit, perhaps by a leak. This is a list of the major reactor failures in which damage of the reactor core played a role: [26]. The China syndrome loss-of-coolant accident is a nuclear reactor operations accident characterized by the severe meltdown of the core components of the reactor, which then burn through the containment vessel and the housing building, then figuratively through the crust and body of the Earth until reaching the opposite end, presumed to be in “China”.

Moreover, any tunnel behind the material would be closed by immense lithostatic pressure. Furthermore, the antipodes of the continental US are, in fact, located in the Indian Ocean , not China. Complete melt-through can occur in several days, even through several meters of concrete; the corium then penetrates several meters into the underlying soil, spreads around, cools, and solidifies. The real scare, however, came from a quote in the film The China Syndrome , which stated, “It melts right down through the bottom of the plant—theoretically to China, but of course, as soon as it hits ground water, it blasts into the atmosphere and sends out clouds of radioactivity.

The number of people killed would depend on which way the wind was blowing, rendering an area the size of Pennsylvania permanently uninhabitable. Release of the fission products was less than normal background radiation, thus no radioactive related injuries or illnesses. Radioactivity and its related injuries and illnesses were tracked over a 30 year period in the surrounding area with no significant findings.

Though there was public confusion due to several miscommunications, there was no evacuation. A similar concern arose during the Chernobyl disaster: after the reactor was destroyed, a liquid corium mass from the melting core began to breach the concrete floor of the reactor vessel, which was situated above the bubbler pool a large water reservoir for emergency pumps, also designed to safely contain steam pipe ruptures.

The RBMK-type reactor had no allowance or planning for core meltdowns, and the imminent interaction of the core mass with the bubbler pool would have produced a considerable steam explosion, increasing the spread and magnitude of the radioactive plume. It was therefore necessary to drain the bubbler pool before the corium reached it. The initial explosion, however, had broken the control circuitry which allowed the pool to be emptied.

Three station workers volunteered to manually operate the valves necessary to drain this pool, and later images of the corium mass in the pipes of the bubbler pool’s basement reinforced the prudence of their actions. The system design of the nuclear power plants built in the late s raised questions of operational safety , and raised the concern that a severe reactor accident could release large quantities of radioactive materials into the atmosphere and environment.

By , there were doubts about the ability of the emergency core cooling system of a nuclear reactor to cope with the effects of a loss of coolant accident and the consequent meltdown of the fuel core; the subject proved popular in the technical and the popular presses.

From Wikipedia, the free encyclopedia. Severe nuclear reactor accident that results in core damage from overheating. Inlet 2B Inlet 1A Cavity Loose core debris Crust Previously molten material Lower plenum debris Possible region depleted in uranium Ablated incore instrument guide Hole in baffle plate Coating of previously molten material on bypass region interior surfaces Upper grid damage.

This section does not cite any sources. Please help improve this section by adding citations to reliable sources. Unsourced material may be challenged and removed. April Learn how and when to remove this template message. Main article: Chernobyl disaster. For the film, see The China Syndrome. See also: Core catcher. The New York Times. Nuclear Regulatory; Rasmussen, Norman C.

Commercial Nuclear Power Plants”. Hein — via Google Books. ISBN Retrieved 17 August Retrieved 3 October Introduction to nuclear power.

Retrieved 5 June Archived from the original PDF on 3 January Retrieved 25 May Managing water addition to a degraded core. OSTI Beltsville, MD: U. Nuclear Regulatory Commission. Retrieved 23 November Retrieved 24 December Archived from the original on 30 October International Atomic Energy Agency. Retrieved 24 February United States Nuclear Regulatory Commission. Retrieved 1 December Samuel Vij Books India Pvt Ltd. Howieson; H. Shapiro; J.

Rogers; P. Mostert; R. Nuclear Safety. J Arias. Retrieved 9 September Archived from the original on 10 October Archived from the original PDF on 15 February Retrieved 26 January Archived from the original on 20 May Retrieved 20 May Retrieved 11 December ABC World News.

Elements of nuclear safety. And how do scientists measure its temperature? Scientific American. PM Explains “. Popular Mechanics. Nuclear safety. Exposing the Chornobyl Myths in Russian. Archived from the original on 8 November Retrieved 8 November Post Chernobyl in Russian. Archived from the original on 26 April Retrieved 3 May Look up China syndrome in Wiktionary, the free dictionary.

Nuclear and radioactive disasters, former facilities, tests and test sites. Crimes involving radioactive substances Criticality accidents and incidents Nuclear meltdown accidents List of milestone nuclear explosions Military nuclear accidents Nuclear and radiation accidents and incidents Nuclear and radiation accidents by death toll Nuclear and radiation fatalities by country Nuclear weapons tests China France India North Korea Pakistan South Africa Soviet Union United Kingdom in Australia in the United States United States Sunken nuclear submarines List of orphan source incidents Nuclear power accidents by country.

Nuclear technology portal Category. Categories : Nuclear safety and security Nuclear reactor safety Civilian nuclear power accidents. Namespaces Article Talk. Views Read Edit View history. Help Learn to edit Community portal Recent changes Upload file. Download as PDF Printable version.

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