DOE OSTI · 2203203
SiC as a core-edge integrated wall solution in DIII-D
Abstract
Silicon carbide (SiC) is a promising material for use in a fusion reactor due to its low hydrogenic diffusivity, high temperature strength and resilience under neutron irradiation. To assess SiC as a main wall material in DIII-D, simulations with TRIM.SP and DIVIMP are performed on a well-diagnosed L-mode discharge. The effective charge, Z eff , across the separatrix is used as a figure of merit in comparing SiC to the current graphite walls. It is found that SiC is expected to reduce Z eff , potentially by as much as ~50%. It is discussed how SiC may be expected to "self-condition" and create wall conditions similar to siliconization, further lowering Z eff due to efficient oxygen gettering. Furthermore, the potential benefits are reviewed and a path towards SiC walls in DIII-D is presented.
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Zamperini, S., Abrams, T., Nichols, J., Unterberg, E., Lasa, A., Stangeby, P., Bringuier, S., Rudakov, D., Elder, J. D.. 2023-10-11. SiC as a core-edge integrated wall solution in DIII-D. https://doi.org/10.1016/j.nme.2023.101535
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