Dependence of high-Z redeposition on the field-to-surface pitch angle and other sheath parameters in tokamaks

Author:

Easley D. C.1ORCID,Diaw A.2,Younkin T. R.2,Donovan D. C.1ORCID,Unterberg E. A.2ORCID,Nichols J. H.2ORCID,Johnson C. A.2,Kumar A.2ORCID

Affiliation:

1. The University of Tennessee-Knoxville 1 , Knoxville, Tennessee 37996, USA

2. Oak Ridge National Laboratory 2 , Oak Ridge, Tennessee 37830, USA

Abstract

Accurately predicting redeposition is vital for high-Z plasma-facing component (PFC) survivability in magnetic confinement fusion. In this study, we categorize high-Z redeposition into three mechanisms: geometric-driven (prompt), sheath-driven (local), and scrape-off-layer-driven (far) redeposition. To investigate these mechanisms, we employ Monte Carlo transport codes to simulate azimuthally symmetric tungsten source erosion and redeposition in a tokamak. By iteratively analyzing critical parameters, we evaluate redeposition scaling for each mechanism. Specifically, we investigate the impact of magnetic-field-to-PFC pitch angle assumptions on PFC losses into the scrape-off layer. Our findings reveal significant pitch angle sensitivity due to an asymmetric prompt vs local redeposition trade-off. These results enhance our understanding of redeposition phenomena in fusion plasma environments.

Funder

Office of Science

U.S. Department of Energy

Publisher

AIP Publishing

Reference40 articles.

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