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Tomographic reconstruction of tokamak edge turbulence from single visible camera data and automatic turbulence structure tracking

机译:单个可见摄像机数据和自动湍流结构跟踪托卡马克边缘湍流断层切断

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摘要

Following the lead of Nguyen van Yen (2012 Nucl. Fusion 52 013005), this article tackles the problem of tomographic inversion with one camera assuming a constant emissivity of light along the magnetic field lines. In this way, the 3D problem reduces to 2D by helical symmetry, allowing for the reconstruction of any poloidal plane in the field of view of the camera. It is shown in this article that the complexity of using a wavelet basis for the reconstruction, as presented by Nguyen van Yen, is not necessary. The method is also validated by confronting it to 3D numerical data coming from the TOKAM3X code, for which the emissivity is slowly varying along the field lines (up to 20%), showing the robustness of the reconstruction. The technique is then applied to real camera data recorded during a D-shaped ohmic plasma shot realized in the COMPASS tokamak. The method is experimentally validated by comparing reconstructed data from camera and ion saturation currents measured by Langmuir probes in the divertor region. Finally, it is shown that automatic detection and tracking of structures visible in the reconstructed poloidal plane enables unique investigations of edge plasma physics and opens wide perspectives for this method.
机译:遵循Nguyen Van Yen的领先(2012 Nucl。Fusion 52 013005),本文通过沿磁场线的光的恒定发射率来解决一个摄像机的断层摄影反转问题。以这种方式,3D问题通过螺旋对称减少到2D,允许在照相机的视野中重建任何单个单向平面。在本文中示出了不需要Nguyen Van Yen所介绍的重建对重建的小波基础的复杂性。通过将其与来自Tokam3x码的3D数值数据构成,还验证了该方法,发射率沿着现场线(高达20%)慢慢变化,显示重建的鲁棒性。然后将该技术应用于在指南针托卡马克实现的D形欧姆等离子镜头期间记录的真实相机数据。通过比较来自转移器区域中的Langmuir探针测量的相机和离子饱和电流的重建数据来实验验证该方法。最后,示出了重建的圆形平面中可见的结构的自动检测和跟踪能够对边缘等离子体物理学的独特调查,并为该方法开放广泛的视角。

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