论文标题

通过舷外移动Langmuir探针的刮擦层粒子通量宽度的实验缩放尺度,东方具有有利的BT配置

Experimental scaling of the scrape-off layer particle flux width by outboard divertor Langmuir probes with favorable Bt configuration on EAST

论文作者

Liu, X., Meng, L. Y., Xu, J. C., Wang, L., Li, J., Team, the EAST

论文摘要

刮擦层(SOL)功率宽度(λ_Q)对于预测未来磁性限制设备的分离目标上的热负载很重要。目前,尚不完全了解λ_Q缩放的基础物理。本文扩展了先前的板内溶胶粒子通量宽度(λ_{js})缩放[Liu et al 2019等离子体物理。控制。融合61 045001]到东方的舷外侧,这可以为λ_Q研究​​提供更多的实验证据。已经开发了一种系统的方法来纠正及其更可靠的邻近测量值,以纠正较不可靠的上部外部(UO)langmuir探针(DIV-LP)测量值,以降低λ_JS的测量不确定性。对于2019年实验活动中有良好的BT和上部单零配置的排放,通过某些标准选择了约260次排放,以确保良好的λ_JS测量值。已经构建了三个H模式,L模式和欧姆数据库,并用于λ_JS量表。发现H模式和L模式等离子体的外侧λ_JS缩放为,λ_(js,uo)= 1.52(w_ {mhd}/n_e)^( - 0.61)p_ {tot}^0.19,其中w_ {mhd}是w_ {mhd},n _ is n _e int ins n _e is the int intective,n _e int in topity inter-putive dipaties and-pertive distective distective distective。 力量。此缩放比例类似于内侧λ_JS缩放率,除了可能是由于三角形的缩放幅度。对于W_ {MHD}/N_E的可重复缩放依赖性,即使回归质量相对较差,也证实了此依赖性的可靠性。还讨论了BP上仅λ_Q/λ_{JS}的仅缩放不足以包括所有溶胶热传输的物理。

The scrape-off layer (SOL) power width (λ_q) is important for predicting the heat load on divertor targets for future magnetically confined devices. Currently, the underlying physics for λ_q scaling is not fully understood. This paper extends the previous inboard SOL particle flux width (λ_{js}) scaling [Liu et al 2019 Plasma Phys. Control. Fusion 61 045001] to the outboard side in EAST, which can provide more experimental evidence for λ_q study. A systematic method has been developed to correct the less reliable upper outer (UO) divertor Langmuir probe (Div-LP) measurements with their more reliable neighboring measurements to reduce the measurement uncertainty of λ_js. For the discharges with the favorable Bt and upper single null configurations in the 2019 experiment campaign, about 260 discharges have been selected by certain criteria to ensure good λ_js measurements. Three H-mode, L-mode, and Ohmic databases have been constructed and are used for λ_js scalings. It is found that the outboard λ_js for the H-mode and L-mode plasmas scales as, λ_(js,UO)=1.52(W_{MHD}/n_e)^(-0.61) P_{tot}^0.19, where W_{MHD} is the stored energy, n_e is the line-averaged density, and P_{tot} is the total input power. This scaling is similar to the inboard λ_js scaling except for the scaling amplitude that is probably due the triangularity. The repeatable scaling dependence on W_{MHD}/n_e confirms the reliability of this dependence even though the regression quality is relatively poor. It is also discussed that the solely scaling of λ_q/λ_{js} on Bp is not enough to include all the physics of SOL heat transports.

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