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EDGE2D-EIRENE predictions of molecular emission in DIII-D high-recycling divertor plasmas

EDGE2D-EIRENE predictions of molecular emission in DIII-D high-recycling divertor plasmas
The contributions of deuterium molecular emission to the total deuterium radiation was assessed in DIII-D ohmically-confined plasmas in high-recycling divertor conditions. Radial profiles of the deuterium Ly-α line intensity across the low-field side divertor leg were obtained with the recently installed divertor Survey Poor Resolution, Extended Spectrometer [1]. A high-resolution spectrometer was used to measure the poloidal profiles of the deuterium Balmer-α and the deuterium Fulcher-α band intensity in the visible wavelength range. The scrape-off layer plasma and neutral distributions were simulated using the edge fluid EDGE2D-EIRENE [2], and the numerical solutions constrained utilizing Thomson scattering and Langmuir probe measurements at the low-field side midplane and the divertor target plate. The studies show that for these conditions molecular emission plays a negligible role in the total radiative power balance of the low-field side divertor, but molecular processes are important when evaluating deuterium Balmer-α line intensity for code-experiment validation.
- Lawrence Berkeley National Laboratory United States
- Lawrence Berkeley National Laboratory United States
- Helmholtz Association of German Research Centres Germany
- General Atomics (United States) United States
- Sandia National Laboratories United States
DIII-D, ta114, EDGE2D-EIRENE, TK9001-9401, Lyman-Werner and Fulcher band, Divertor edge fluid simulations, Deuterium atomic and molecular emission, EIRENE, Nuclear engineering. Atomic power, SDG 7 - Affordable and Clean Energy
DIII-D, ta114, EDGE2D-EIRENE, TK9001-9401, Lyman-Werner and Fulcher band, Divertor edge fluid simulations, Deuterium atomic and molecular emission, EIRENE, Nuclear engineering. Atomic power, SDG 7 - Affordable and Clean Energy
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