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Staged cooling of a fusion-grade plasma in a tokamak thermal quench
by
Li, Jun
, Zhang, Yanzeng
, Tang, Xian-Zhu
in
Collisionless plasmas
/ conduction
/ convection
/ Cooling
/ Electron energy
/ Magnetic fields
/ Sound waves
/ staged cooling
/ thermal quench
/ Tokamak devices
/ tokamak disruption
/ Transit time
2023
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Staged cooling of a fusion-grade plasma in a tokamak thermal quench
by
Li, Jun
, Zhang, Yanzeng
, Tang, Xian-Zhu
in
Collisionless plasmas
/ conduction
/ convection
/ Cooling
/ Electron energy
/ Magnetic fields
/ Sound waves
/ staged cooling
/ thermal quench
/ Tokamak devices
/ tokamak disruption
/ Transit time
2023
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Do you wish to request the book?
Staged cooling of a fusion-grade plasma in a tokamak thermal quench
by
Li, Jun
, Zhang, Yanzeng
, Tang, Xian-Zhu
in
Collisionless plasmas
/ conduction
/ convection
/ Cooling
/ Electron energy
/ Magnetic fields
/ Sound waves
/ staged cooling
/ thermal quench
/ Tokamak devices
/ tokamak disruption
/ Transit time
2023
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Staged cooling of a fusion-grade plasma in a tokamak thermal quench
Journal Article
Staged cooling of a fusion-grade plasma in a tokamak thermal quench
2023
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Overview
In tokamak disruptions where the magnetic connection length becomes comparable to or even shorter than the plasma mean-free-path, parallel transport can dominate the energy loss and the thermal quench of the core plasma goes through four phases (stages) that have distinct temperature ranges and durations. The main temperature drop occurs while the core plasma remains nearly collisionless, with the parallel electron temperature T e ∥ dropping in time t as T e ∥ ∝ t − 2 and a cooling time that scales with the ion sound wave transit time over the length of the open magnetic field line. These surprising physics scalings are the result of effective suppression of parallel electron thermal conduction in an otherwise bounded, quasineutral, and collisionless plasma, which is different from what are known to date on electron thermal conduction along the magnetic field in a nearly collisionless and quasineural plasma.
Publisher
IOP Publishing
Subject
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