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  • Modeling of detachment expe...
    Canik, J.M.; Briesemeister, A.R.; Lasnier, C.J.; Leonard, A.W.; Lore, J.D.; McLean, A.G.; Watkins, J.G.

    Journal of nuclear materials, 08/2015, Letnik: 463
    Journal Article

    Edge fluid–plasma/kinetic–neutral modeling of well-diagnosed DIII-D experiments is performed in order to document in detail how well certain aspects of experimental measurements are reproduced within the model as the transition to detachment is approached. Results indicate, that at high densities near detachment onset, the poloidal temperature profile produced in the simulations agrees well with that measured in experiment. However, matching the heat flux in the model requires a significant increase in the radiated power compared to what is predicted using standard chemical sputtering rates. These results suggest that the model is adequate to predict the divertor temperature, provided that the discrepancy in radiated power level can be resolved.