2017•Nuclear FusionRequires access

Dependence of pedestal properties on plasma parameters

S.K. Kim, Y.-S. Na, Samuli Saarelma, Oh‐Jin Kwon

Open publisher page 13 citations

Abstract

We have numerically investigated the dependence of pedestal properties such as the pedestal height and the pedestal width on various global parameters using the EURO-DEMO as the reference equilibrium. We have used EPED, a predictive model of the edge pedestal. Among global parameters, we have chosen to vary the triangularity, , the elongation, , and the poloidal beta, , which have larger effects on the pedestal properties. Improvement of pedestal properties can be achieved for more shaped plasma boundary. However, the increase in the pedestal height and the width with saturates around Also, the pedestal width saturates and the pedestal temperature starts to decrease for . Improvement of the pedestal properties due to is larger at higher poloidal beta. The pedestal width slightly increases with the electron density at the pedestal top and the effective charge number.

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What this paper is about

We have numerically investigated the dependence of pedestal properties such as the pedestal height and the pedestal width on various global parameters using the EURO-DEMO as the reference equilibrium. We have used EPED, a predictive model of the edge pedestal. Among global parameters, we have chosen to vary the triangularity, , the elongation, , and the poloidal beta, , which have larger effects on the pedestal properties. Improvement of pedestal properties can be achieved for more shaped plasma boundary. However, the increase in the pedestal height and the width with saturates around Also, the pedestal width saturates and the pedestal temperature starts to decrease for . Improvement of the pedestal properties due to is larger at higher poloidal beta. The pedestal width slightly increases with the electron density at the pedestal top and the effective charge number.

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OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

We have numerically investigated the dependence of pedestal properties such as the pedestal height and the pedestal width on various global parameters using the EURO-DEMO as the reference equilibrium. We have used EPED, a predictive model of the edge pedestal. Among global parameters, we have chosen to vary the triangularity, , the elongation, , and the poloidal beta, , which have larger effects on the pedestal properties. Improvement of pedestal properties can be achieved for more shaped plasma boundary. However, the increase in the pedestal height and the width with saturates around Also, the pedestal width saturates and the pedestal temperature starts to decrease for . Improvement of the pedestal properties due to is larger at higher poloidal beta. The pedestal width slightly increases with the electron density at the pedestal top and the effective charge number.

Key concepts: Pedestal, Materials science, Plasma, Enhanced Data Rates for GSM Evolution, Physics, Nuclear physics, Telecommunications, History

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