Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor

In according to a present understanding of Scrape-Off Layer (SOL) physics, future thermonuclear devices like ITER, DEMO and beyond, require high radiation regimes in order to reduce heat loads on tokamak divertor. Recent experiments at ASDEX Upgrade, JET and other tokamaks demonstrated that such reg...

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Main Authors: Sorokina Daria, Senichenkov Ilya, Vekshina Elena, Rozhansky Vladimir
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201824513003
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spelling doaj-e66fb55b497a4b61a74c16d3b6c51ba72021-02-02T08:46:54ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-012451300310.1051/matecconf/201824513003matecconf_eece2018_13003Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertorSorokina Daria0Senichenkov Ilya1Vekshina Elena2Rozhansky Vladimir3Peter the Great Saint Petersburg Polytechnic UniversityPeter the Great Saint Petersburg Polytechnic UniversityPeter the Great Saint Petersburg Polytechnic UniversityPeter the Great Saint Petersburg Polytechnic UniversityIn according to a present understanding of Scrape-Off Layer (SOL) physics, future thermonuclear devices like ITER, DEMO and beyond, require high radiation regimes in order to reduce heat loads on tokamak divertor. Recent experiments at ASDEX Upgrade, JET and other tokamaks demonstrated that such regimes might be achieved by the seeding of the radiative impurities. In the present paper the modeling of the high radiation regimes and the transition to the detachment at the Globus-M2 spherical tokamak is performed by the SOLPS-ITER transport code. The obtained modeling results for GLobus-M2 tokamak demonstrate the trend similar to what is observed at larger machines, e.g. AUG and JET. The significant reduction of peak power density at the outer target plate and transition to the detachment with High Field Side High Density (HFSHD) formation at the inner plate was achieved with impurity seeding rate almost equal to the deuterium puff (in el/sec). However, unlike AUG, further increasing of the seeding rate leads not to a formation of the radiative X-point, but to a radiative collapse. This is caused by smaller machine size, which allows the impurity neutrals to penetrate easier into the confined region. It was noticed that starting with attached divertor the inner target transits to the detachment earlier than the outer one.https://doi.org/10.1051/matecconf/201824513003
collection DOAJ
language English
format Article
sources DOAJ
author Sorokina Daria
Senichenkov Ilya
Vekshina Elena
Rozhansky Vladimir
spellingShingle Sorokina Daria
Senichenkov Ilya
Vekshina Elena
Rozhansky Vladimir
Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor
MATEC Web of Conferences
author_facet Sorokina Daria
Senichenkov Ilya
Vekshina Elena
Rozhansky Vladimir
author_sort Sorokina Daria
title Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor
title_short Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor
title_full Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor
title_fullStr Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor
title_full_unstemmed Testing of the SOLPS-ITER code at Globus-M2 spherical tokamak with detached divertor
title_sort testing of the solps-iter code at globus-m2 spherical tokamak with detached divertor
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description In according to a present understanding of Scrape-Off Layer (SOL) physics, future thermonuclear devices like ITER, DEMO and beyond, require high radiation regimes in order to reduce heat loads on tokamak divertor. Recent experiments at ASDEX Upgrade, JET and other tokamaks demonstrated that such regimes might be achieved by the seeding of the radiative impurities. In the present paper the modeling of the high radiation regimes and the transition to the detachment at the Globus-M2 spherical tokamak is performed by the SOLPS-ITER transport code. The obtained modeling results for GLobus-M2 tokamak demonstrate the trend similar to what is observed at larger machines, e.g. AUG and JET. The significant reduction of peak power density at the outer target plate and transition to the detachment with High Field Side High Density (HFSHD) formation at the inner plate was achieved with impurity seeding rate almost equal to the deuterium puff (in el/sec). However, unlike AUG, further increasing of the seeding rate leads not to a formation of the radiative X-point, but to a radiative collapse. This is caused by smaller machine size, which allows the impurity neutrals to penetrate easier into the confined region. It was noticed that starting with attached divertor the inner target transits to the detachment earlier than the outer one.
url https://doi.org/10.1051/matecconf/201824513003
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AT vekshinaelena testingofthesolpsitercodeatglobusm2sphericaltokamakwithdetacheddivertor
AT rozhanskyvladimir testingofthesolpsitercodeatglobusm2sphericaltokamakwithdetacheddivertor
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