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Top>Science>Physics>Nuclear>Fusion>Magnetic>



1.  Nuclear reactor technology - Wikipedia, the free encyclopedia open in new window
Core of CROCUS, a small nuclear reactor used for research at the EPFL in Switzerland. ... Classification by type of nuclear reaction. 4.1.2 Classification by ...
en.wikipedia.org


2.  Wikipedia: Nuclear Weapons open in new window
Hyperlinked article about the development and history of nuclear weapons.
en.wikipedia.org


3.  Health and safety in the nuclear industry open in new window
... hazards industry with a legacy of nuclear technology development that currently ... Nuclear decommissioning. Miscellaneous. EIADR. LLC reports. Safeguards ...
www.hse.gov.uk



Alcator C-Mod open in new window
A research fusion experiment utilizing the world's highest magnetic field tokamak plasma confinement concept.
(http://www.psfc.mit.edu/cmod)

ASDEX Upgrade Fusion Experiment open in new window
Experimental tokamak facility at Max-Planck-Institut für Plasmaphysik, Germany.
(http://www.aug.ipp.mpg.de/aug.eng/)

CASTOR open in new window
A fusion research facility (a tokamak) of the Academy of Sciences of The Czech Republic, Institute of Plasma Physics.
(http://www.ipp.cas.cz/WWW/)

Compact Helical System (CHS) open in new window
Compact stellarator experiment with aspect ratio A ~ 5. Located at NIFS, Japan. Latest news and coming events.
(http://rd-w3server.nifs.ac.jp/chs/)

Compass-D open in new window
Highly flexible, medium-sized tokamak that has been specifically designed to address the key physics issues associated with magnetic confinement fusion. It plays a major role in the co-ordinated European fusion programme and is funded by the DTI and EURATOM, with additional support from EPSRC and various schemes for student grants.
(http://www.fusion.org.uk/culham/compass.htm)

Consorzio RFX open in new window
A fusion energy experiment in Padova, Italy. RFX is a toroidal device where a ring of high temperature ionized gas (plasma) is confined by a magnetic field in the Reversed Field Pinch configuration.
(http://www.igi.pd.cnr.it/)

DIII-D Relational Database open in new window
Contains information about fusion experiments at the DIII-D National Fusion Facility in San Diego, California.
(http://d3dnff.gat.com/D3DRDB)

FRC open in new window
An FRC (field reversed configuration) is a fusion concept where a toroidal plasma represents an elongated plasma ellipsoid conducting an azimuthal current which reverses the direction of an externally applied magnetic field.
(http://www.aa.washington.edu/AERP/RPPL/programs/frc_intro.ht)

Fusion Ignition Research Experiment (FIRE) open in new window
A proposed next-step fusion experiment to study burning plasma physics based on the tokamak concept. It would require about $1.2B to build. The site includes information related to FIRE, its engineering design, related publications and meetings.
(http://fire.pppl.gov/fire_program.htm)

H-1NF open in new window
Australian fusion experiment based on the H-1 Heliac concept.
(http://wwwrsphysse.anu.edu.au/prl/H-1NF.html)

HBT-EP Tokamak open in new window
Experiment at the Columbia University Plasma Physics Laboratory to demonstrate the feasibility of a high-beta tokamak stabilized by a combination of a close-fitting conducting wall, plasma rotation, and active feedback.
(http://www.seas.columbia.edu/apam/HBT-EP/)

Helicity Injected Torus open in new window
HIT-II is the experiment to develop a method of coaxial helicity injection as a means of producing current drive. Built at the University of Washington.
(http://www.aa.washington.edu/AERP/HIT/hit.html)

HSX open in new window
Helically Symmetric eXperiment is a university scale plasma experiment based on the large-aspect-ratio helically-symmetric stellarator approach. University of Wisconsin-Madison, USA.
(http://hsxa.ece.wisc.edu/home.html)

IGNITOR open in new window
A proposed next-step fusion experiment to study burning plasma physics in a relatively small device. This approach is based on the concept of a tokamak with very strong magnetic field, and is under development by an international team of plasma and fusion physicists.
(http://www.frascati.enea.it/ignitor/)

ITER open in new window
A proposed international experimental fusion reactor based on the tokamak concept. ITER's mission is to demonstrate the scientific and technological feasibility of fusion energy for peaceful purposes.
(http://www.iter.org)

Joint European Torus (JET) open in new window
The world's largest magnetic confinement fusion experiment; it is based on the tokamak concept.
(http://www.jet.efda.org/)

JT-60 Project at JAERI Naka Fusion Research Establishment open in new window
JT-60 is the largest fusion tokamak experiment in Japan, and one of the largest in the world.
(http://www-jt60.naka.jaeri.go.jp/)

KSTAR open in new window
Korean Superconducting Tokamak Advanced Research. Fusion experiment based on the tokamak concept.
(http://www.knfp.net/)

Large Helical Device (LHD) open in new window
The largest current fusion experiment based on the stellarator concept. Located at NIFS, Japan. The mission of the LHD project is to develop a scientific basis for stellarator fusion reactor. An important feature in the LHD design is a high magnetic field of 3-4 Tesla produced by superconducting magnets.
(http://www.lhd.nifs.ac.jp/)

Levitated Dipole Experiment open in new window
Device to expore the physics of plasma confinement in a magnetic dipole field.
(http://www.psfc.mit.edu/ldx)

Madison Symmetric Torus open in new window
MST is a research device based on the reversed field pinch concept. Built at the University of Wisconsin-Madison. Operation began in 1988.
(http://sprott.physics.wisc.edu/mst.htm)

MAST open in new window
Mega Amp Spherical Tokamak experiment at Culham, UK.
(http://www.fusion.org.uk/mast/index.html)

National Compact Stellarator Experiment open in new window
NCSX is a compact stellarator concept based on quasi-toroidal symmetry.
(http://www.pppl.gov/ncsx)

National Spherical Torus Experiment open in new window
NSTX is an experimental fusion device based on the spherical tokamak concept. Built at Princeton Plasma Physics Laboratory.
(http://www.pppl.gov/projects/pages/nstx.html)

Pegasus open in new window
Extremely low-aspect-ratio tokamak experiment at the Department of Engineering Physics, University of Wisconsin-Madison.
(http://silver.neep.wisc.edu/~pegasus/pegasus/)

QPS Project open in new window
A project to explore the quasi-poloidal approach to compact stellarators. Site includes project reports and reviews.
(http://qos.fed.ornl.gov/)

Spherical Stellarator open in new window
The SS is a low aspect ratio compact stellarator concept emphasizing effective use of the plasma (bootstrap) current to reach high plasma pressure operation and improved confinement. The concept is most advantageous at aspect ratios R/a < 3.5.
(http://www.highfactor.com/ss)

Spheromak open in new window
The spheromak is a toroidal magnetic confinement concept where no toroidal magnetic field coils link the torus. The magnetic field is generated primarily by plasma currents.
(http://www-ferp.ucsd.edu/PUBLIC/AC-PANEL/REC-DOCS/W-PAPERS/s)

START open in new window
Small Tight Aspect Ratio Tokamak fusion experiment at UKAEA Culham - it was a pioneering experiment based on the spherical tokamak concept. Operated 1991 - 1998. STARTs successor experiment is MAST.
(http://www.fusion.org.uk/culham/start.htm)

Stellarator News open in new window
An international newsletter containing online publications on stellarators and links to some other stellarator web pages.
(http://www.ornl.gov/fed/stelnews/stelnews.html)

Stellarator Spheromak open in new window
The stellarator-spheromak is a fusion concept with elements of spherical stellarator and spheromak configurations.
(http://www.highfactor.com/ssp)

STX open in new window
Star Thrust Experiment at the University of Washington is an FRC (field reversed configuration) plasma startup experiment via application of a rotating magnetic field.
(http://www.aa.washington.edu/AERP/RPPL/programs/stx.html)

Sustained Spheromak Physics Experiment (SSPX) open in new window
Spheromak now operating at the Lawrence Livermore National Laboratory with a minor radius of 0.23m.
(http://www.mfescience.org/sspx)

TCS Experiment open in new window
The translation, confinement and sustainment FRC (field reversed configuration) experiment at the University of Washington.
(http://www.aa.washington.edu/AERP/RPPL/programs/tcs.html)

TFTR open in new window
The Tokamak Fusion Test Reactor experiment that was a large US fusion experiment directed by the Princeton Plasma Physics Lab. Stopped operation and decomissioned by 2000.
(http://www.pppl.gov/projects/pages/tftr.html)

TJII Flexible Heliac open in new window
Euratom-SIEMAT fusion experiment based on the heliac concept.
(http://www-fusion.ciemat.es/fusion/TJII/TJII.html)

Wendelstein 7-X open in new window
Large fusion experimental machine currently under construction in Greifswald, Germany; based on the large-aspect-ratio advanced stellarator concept.
(http://www.ipp.mpg.de/ipp/w7x.html)


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