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Repetitive transport bursts in simulations of edge-localized modes in tokamaks

机译:托卡马克中边缘定位模式的模拟中的重复传输突发

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The character of particle and energy transport in simulations of tokamak edge turbulence is determined by the magnitude of the density gradient. Edge turbulence becomes increasingly intermittent as the edge density gradient increases. Beyond a critical limit in the edge density gradient, the transport is dominated by short, repetitive bursts of particles and energy outward toward the wall. These bursts are extremely ballooning in character, strongly localized on the large major radius side of the torus. The duration of a burst is given by the ballooning mode growth time t(0)=(RLn)(1/2)/c(s), where c(s) is the sound speed, R is the major radius of the torus, and L-n is the density gradient scale length. The bursts are coherent in structure with a poloidal scale size L-0 that is proportional to the square root of the plasma resistivity eta. With further increases in the edge density gradient, the fluxes of energy and particles in the bursts become much larger in magnitude. The particle and energy bursts seen in the simulations are similar to the bursts in D-alpha radiation seen during edge-localized modes in tokamaks. (c) 2006 American Institute of Physics.
机译:托卡马克边缘湍流模拟中的粒子和能量传输的特性取决于密度梯度的大小。随着边缘密度梯度的增加,边缘湍流变得越来越间歇。除了边缘密度梯度的临界极限以外,这种传输以短而重复的粒子和能量的突然爆发为主,它们朝向壁向外传播。这些爆发的特征是极度膨胀,强烈地位于圆环的大半径半径一侧。爆破的持续时间由膨胀模式增长时间t(0)=(RLn)(1/2)/ c(s)给出,其中c(s)是声速,R是圆环的主半径,Ln是密度梯度标度长度。脉冲串在结构上是连贯的,其极小尺度尺度的大小L-0与等离子体电阻率eta的平方根成比例。随着边缘密度梯度的进一步增加,脉冲中的能量和粒子通量在大小上变得更大。在模拟中看到的粒子和能量爆发类似于在托卡马克的边缘定位模式期间看到的D-alpha辐射爆发。 (c)2006年美国物理研究所。

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