论文标题
磁扰动对L-H转变对DIII-D的湍流流动动力学的影响
Effect of magnetic perturbations on turbulence-flow dynamics at the L-H transition on DIII-D
论文作者
论文摘要
DIII-D TOKAMAK的详细2D湍流测量结果提供了一个解释谐振磁扰动(RMPS)提高L-H功率阈值$ p_ \ textrm {lh} $ [P. Gohil等人,Nucl。 Fusion 51,1030(2011)]与ITER相关,低旋转,iTer类似形状等离子体,具有良好的离子$ \ nabla b $方向。 RMPS同时提高了湍流去相关率$ΔΩ_d$,并在L-H转换之前的固定L模式状态下降低流量剪切速率$ω__\ textrm {剪切} $,从而破坏了湍流剪切抑制机制。 RMPs also reduce the Reynolds stress drive for poloidal flow, contributing to the reduction of $ω_\textrm{shear}$ On the ~100 μs timescale of the L-H transition, RMPs reduce Reynolds-stress-driven energy transfer from turbulence to flows by an order of magnitude, challenging the energy depletion theory for the L-H trigger mechanism.相比之下,没有显着影响$ p_ \ textrm {lh} $的非共振磁扰动不会影响$ΔΩ_d$,并且仅稍微降低$ω____________\ textrm {shear} $和reynolds surs trive驱动的驱动驱动的能量转移。
Detailed 2D turbulence measurements from the DIII-D tokamak provide an explanation for how resonant magnetic perturbations (RMPs) raise the L-H power threshold $P_\textrm{LH}$ [P. Gohil et al., Nucl. Fusion 51, 103020 (2011)] in ITER-relevant, low rotation, ITER-similar-shape plasmas with favorable ion $\nabla B$ direction. RMPs simultaneously raise the turbulence decorrelation rate $Δω_D$ and reduce the flow shear rate $ω_\textrm{shear}$ in the stationary L-mode state preceding the L-H transition, thereby disrupting the turbulence shear suppression mechanism. RMPs also reduce the Reynolds stress drive for poloidal flow, contributing to the reduction of $ω_\textrm{shear}$ On the ~100 μs timescale of the L-H transition, RMPs reduce Reynolds-stress-driven energy transfer from turbulence to flows by an order of magnitude, challenging the energy depletion theory for the L-H trigger mechanism. In contrast, non-resonant magnetic perturbations, which do not significantly affect $P_\textrm{LH}$, do not affect $Δω_D$ and only slightly reduce $ω_\textrm{shear}$ and Reynolds-stress-driven energy transfer.