KSTAR

E601270

KSTAR is a South Korean superconducting tokamak device designed to research and advance nuclear fusion as a potential source of clean, sustainable energy.

All labels observed (1)

Label Occurrences
KSTAR canonical 6

How this entity was disambiguated

Statements (47)

Predicate Object
instanceOf tokamak ⓘ
abbreviation KSTAR ⓘ
aimsFor demonstration of high-performance steady-state plasmas ⓘ
support for ITER physics basis ⓘ
collaboratesWith ITER Organization ⓘ
linked to: ITER project

international fusion research institutions ⓘ
constructionStartYear 1995 ⓘ
country South Korea ⓘ
designedFor long-pulse plasma discharges ⓘ
steady-state operation ⓘ
energyGoal clean energy ⓘ
sustainable energy ⓘ
energyTypeResearched magnetic confinement fusion ⓘ
firstPlasmaYear 2008 ⓘ
fullName Korea Superconducting Tokamak Advanced Research ⓘ
fundedBy Government of South Korea ⓘ
hasComponent diagnostic systems ⓘ
divertor ⓘ
neutral beam injection system ⓘ
radio-frequency heating systems ⓘ
superconducting poloidal field coils ⓘ
superconducting toroidal field coils ⓘ
vacuum vessel ⓘ
locatedInCountry South Korea ⓘ
locatedInFacility National Fusion Research Institute ⓘ
location Daejeon ⓘ
magneticFieldType toroidal magnetic field ⓘ
magnetTechnology niobium-tin superconductors ⓘ
majorRadius 1.8 m ⓘ
minorRadius 0.5 m ⓘ
notableAchievement sustained high-temperature plasma for tens of seconds ⓘ
operator National Fusion Research Institute ⓘ
plasmaCurrentType poloidal plasma current ⓘ
plasmaShape D-shaped cross-section ⓘ
purpose development of fusion energy ⓘ
nuclear fusion research ⓘ
researchFocus advanced tokamak scenarios ⓘ
divertor and plasma-facing components ⓘ
heat and particle transport in plasmas ⓘ
high-temperature plasma confinement ⓘ
plasma stability ⓘ
safetyGoal inherently safe fusion power ⓘ
scientificDiscipline nuclear fusion engineering ⓘ
plasma physics ⓘ
sector fusion energy research ⓘ
usesConfinementMethod tokamak configuration ⓘ
usesMagnetType superconducting magnets ⓘ

How these facts were elicited

Referenced by (6)

Full triples — surface form annotated when it differs from this entity's canonical label.