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Comparison of deuterium pellet injection from different locations on the DⅢ-D tokamak

机译:DⅢ-D托卡马克上不同位置注入氘丸的比较

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Deuterium pellets have been injected into plasmas in the DⅢ-D tokamak from the inner wall, top, and outer midplane port locations to investigate fuelling efficiency, mass deposition and interaction with edge localized modes (ELMs). Pellets injected from the outer midplane port (low field side (LFS)) show a large discrepancy in the mass deposition profile and fuelling efficiency from conventional pellet ablation theory, while the penetration depth compares favourably with theory. The mass deposition from pellets injected from inner wall and top locations is deeper than expected from ablation theory. The profile measurements indicate that pellet mass is deposited inside the measured penetration radius, thus verifying that a drift of the pellet ablatant is occurring in the major radius direction during the toroidal symmetrization process. The scaling of the measured drift magnitude in DⅢ-D is found to depend strongly on the pellet size and plasma pedestal temperature. Extrapolation to a burning plasma configuration on ITER is favourable for inner wall pellet fuel deposition depth well beyond the separatrix. Pellets injected into H-mode plasmas from all locations trigger ELMs with much larger ELM events induced by the outside midplane injected pellets. This suggests that the LFS is more sensitive to ELM triggering and may be the preferred location to inject very small pellets to trigger frequent small ELMs and thus minimize ELM induced damage to the divertor material surfaces.
机译:氘弹已从内壁,顶部和外部中平面端口位置注入DⅢ-D托卡马克等离子体中,以研究燃料效率,质量沉积以及与边缘局部模式(ELM)的相互作用。从外部中平面端口(低场侧(LFS))注入的球团与传统的球团烧蚀理论相比,在质量沉积轮廓和供油效率方面存在很大差异,而穿透深度与理论相比则更为有利。从内壁和顶部位置注入的颗粒的质量沉积比消融理论预期的要深。轮廓测量表明,颗粒团沉积在测得的穿透半径内,从而验证了在环形对称化过程中,在主半径方向上发生了颗粒团块的漂移。发现在DⅢ-D中测得的漂移幅度的标度在很大程度上取决于颗粒大小和血浆基座温度。外推至ITER上燃烧的等离子体构型有利于内壁颗粒燃料沉积深度远超过分离层。从所有位置注入到H模式等离子体中的药丸会触发ELM,并由外部中平面注入的药丸引发更大的ELM事件。这表明,LFS对ELM触发更敏感,并且可能是注射非常小的药丸以触发频繁的小ELM的首选位置,从而最小化ELM对分流器材料表面的损坏。

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