首页> 外文期刊>Journal of instrumentation: an IOP and SISSA journal >Systematic errors in tokamak magnetic equilibrium reconstruction: a study of EFIT++ at tokamak COMPASS
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Systematic errors in tokamak magnetic equilibrium reconstruction: a study of EFIT++ at tokamak COMPASS

机译:Tokamak磁性平衡重建系统错误:Tokamak Compass的EFIT ++研究

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摘要

Uncertainties and errors in magnetic equilibrium reconstructions are a wide-spread problem in interpreting experimental data measured in the tokamak edge. This study demonstrates errors in EFIT++ reconstructions performed on the COMPASS tokamak by comparing the outer midplane separatrix position to the Velocity Shear Layer (VSL) position. The VSL is detected as the plasma potential peak measured by a reciprocating ball-pen probe. A subsequent statistical analysis of nearly 400 discharges shows a strong systematic trend in the reconstructed separatrix position relative to the VSL, where the primary factors are plasma triangularity and the magnetic axis radial position. This dependency is significantly reduced after the measuring coils positions as recorded in EFIT input are optimised to provide a closer match between the "synthetic" coil signal calculated by the Biot-Savart law in a vacuum discharge and the actual coil signal. In conclusion, we suggest that applying this optimisation may lead to more accurate and reliable reconstructions of the COMPASS equilibrium, which would have a positive impact on the accuracy of measurement analysis performed in the edge plasma.
机译:磁性平衡重建中的不确定性和误差是在解释在托卡马克边缘测量的实验数据中的广泛问题。该研究通过将外中间板分离位置与速度剪切层(VSL)位置进行比较,展示在罗盘Tokamak上执行的EFIT ++重建中的误差。 VSL被检测为通过往复式球笔探针测量的等离子体电位峰值。随后的近400个放电的统计分析显示了相对于VSL的重建分子位置的强系统趋势,其中主要因素是等离子体三角形和磁轴径向位置。在EFIT输入中记录的测量线圈位置之后优化该依赖性显着降低,以在真空放电和实际线圈信号中通过Biot-Savart Laver计算的“合成”线圈信号之间的近距离匹配。总之,我们建议应用这种优化可能导致罗盘平衡的更准确和可靠的重建,这将对在边缘等离子体中进行的测量分析的准确性产生正影响。

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