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Plasma turbulence, suprathermal ion dynamics and code validation on the basic plasma physics device TORPEX

机译:基本等离子体物理设备TORPEX上的等离子体湍流,超热离子动力学和代码验证

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The TORPEX basic plasma physics device at the Center for Plasma Physics Research (CRPP) in Lausanne, Switzerland is described. In TORPEX, simple magnetized toroidal configurations, a paradigm for the tokamak scrape-off layer (SOL), as well as more complex magnetic geometries of direct relevance for fusion are produced. Plasmas of different gases are created and sustained by microwaves in the electron-cyclotron (EC) frequency range. Full diagnostic access allows for a complete characterization of plasma fluctuations and wave fields throughout the entire plasma volume, opening new avenues to validate numerical codes. We detail recent advances in the understanding of basic aspects of plasma turbulence, including its development from linearly unstable electrostatic modes, the formation of filamentary structures, or blobs, and its influence on the transport of energy, plasma bulk and suprathermal ions. We present a methodology for the validation of plasma turbulence codes, which focuses on quantitative assessment of the agreement between numerical simulations and TORPEX experimental data.
机译:描述了位于瑞士洛桑的等离子体物理研究中心(CRPP)的TORPEX基本等离子体物理设备。在TORPEX中,产生了简单的磁化环形结构,托卡马克刮除层(SOL)的范例以及与融合直接相关的更复杂的磁几何形状。电子回旋加速器(EC)频率范围内的微波会产生并维持不同气体的等离子体。完全的诊断访问权限可以对整个血浆体积中的血浆波动和波场进行全面表征,从而为验证数字代码开辟了新途径。我们详细介绍了对等离子体湍流基本方面的理解的最新进展,包括其从线性不稳定静电模式的发展,丝状结构或斑点的形成及其对能量传输,等离子体体积和超热离子的影响。我们提出了一种验证等离子体湍流代码的方法,该方法侧重于定量评估数值模拟与TORPEX实验数据之间的一致性。

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