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Investigation of molecular penetration depth variation with SMBI fluxes

Investigation of molecular penetration depth variation with SMBI fluxes
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摘要 We study the molecular penetration depth variation with the SMBI fluxes.The molecular transport process and the penetration depth during SMBI with various injection velocities and densities are simulated and compared.It is found that the penetration depth of molecules strongly depends on the radial convective transport of SMBI and it increases with the increase of the injection velocity.The penetration depth does not vary much once the SMBI injection density is larger than a critical value due to the dramatic increase of the dissociation rate on the fueling path.An effective way to improve the SMBI penetration depth has been predicted,which is SMBI with a large radial injection velocity and a lower molecule injection density than the critical density. We study the molecular penetration depth variation with the SMBI fluxes.The molecular transport process and the penetration depth during SMBI with various injection velocities and densities are simulated and compared.It is found that the penetration depth of molecules strongly depends on the radial convective transport of SMBI and it increases with the increase of the injection velocity.The penetration depth does not vary much once the SMBI injection density is larger than a critical value due to the dramatic increase of the dissociation rate on the fueling path.An effective way to improve the SMBI penetration depth has been predicted,which is SMBI with a large radial injection velocity and a lower molecule injection density than the critical density.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第9期401-410,共10页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.11375053,11575055,11405022,and 11405112) the Chinese National Fusion Project for ITER(Grant Nos.2013GB107001 and 2013GB112005) the International S&T Cooperation Program of China(Grant No.2015DFA61760) the Funds of the Youth Innovation Team of Science and Technology in Sichuan Province of China(Grant No.2014TD0023)
关键词 plasma fueling SMBI flux neutral transport penetration depth plasma fueling SMBI flux neutral transport penetration depth
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