论文标题
观察到刮擦层中的准共晶密度波动,增强了DIIII-D上高贝特杂种等离子体中的边界传输
Observation of quasi-coherent density fluctuation in scrape-off layer enhancing boundary transport in high-betaN hybrid plasmas on DIII-D
论文作者
论文摘要
我们报告了DOPPLER反向散射系统在DIII-D Tokamak的刮擦层(SOL)区域中观察到的准共晶密度波动(QCF)。在电子回旋加热期间,在高功率高性能杂种等离子体中观察到该QCF。该模式与陡峭的SOL密度剖面相关,并导致颗粒和热通量显着升高。 SOL QCF是一个长波长离子尺度的波动,并在等离子体框架中的离子磁磁方向传播。它的径向扩展约为1.5-2厘米,远远超出了DIII-D上典型的热通量宽度。同样,SOL QCF对有效的SOL碰撞没有任何明显的依赖性,因此可能会引发有关控制斑点诱导的传输的低碰撞等离子体中血浆材料相互作用的问题。使用BOUT ++与5场还原模型进行线性仿真,并将其与实验观察结果进行比较。在仿真结果中,互换的密度扰动可以由SOL密度梯度驱动,其峰位置和密度扰动的径向宽度与实验观察结果一致。
We report the observation of a quasi-coherent density fluctuation (QCF) by the Doppler backscattering system in the scrape-off layer (SOL) region of the DIII-D tokamak. This QCF is observed in high-power, high-performance hybrid plasmas with near double-null divertor (DND) shape during the electron cyclotron heating period. This mode is correlated with a steepened SOL density profile and leads to significantly elevated particle and heat fluxes between ELMs. The SOL QCF is a long-wavelength ion-scale fluctuation and propagates in the ion diamagnetic direction in the plasma frame. Its radial expanse is about 1.5-2 cm, well beyond the typical width of heat flux on DIII-D. Also, the SOL QCF does not show any clear dependence on the effective SOL collisionality and thus may raise issues on the control of plasma-material interactions in low collisionality plasmas in which the blob-induced transport is reduced. A linear simulation using BOUT++ with a 5-field reduced model is performed and compared with experimental observations. In simulation results, an interchange-like density perturbation can be driven by the SOL density gradient, and its peak location and the radial width of the density perturbation are in agreement with the experimental observations.