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Study of External Kink Modes in Shaped HBT-EP Plasmas

机译:HBT-EP成型等离子体的外部扭结模式研究

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摘要

The first study of magnetohydrodynamic (MHD) equilibria and external kink modes in shaped plasmas on the High Beta Tokamak - Extended Pulse (HBT-EP) is described. A new poloidal field coil and high-current, low-voltage capacitive power supply was designed and installed. The new coil significantly modifies the shape of the plasma cross section and provides a new research tool for the study of kink mode structure and control. When fully energized, the coil creates a magnetic separatrix, which defines the boundary between confined and unconfined plasma. The separatrix is set by a poloidal field null called an "X-point", which is on the inboard side of the torus, above the midplane. Several arrays of magnetic sensors observe and characterize the plasma equilibrium and the MHD fluctuations from kink modes. Free-boundary plasma equilibria are reconstructed using standard methods that minimize the mean-square error between the numerically reconstructed equilibria and various measurements. Reconstructions of shaped plasma equilibria show the creation of fully diverted plasmas with shaped outer boundaries. The reconstructions are confirmed by direct measurements using arrays of magnetic sensors and a moveable Langmuir probe to measure the outermost closed flux surface. Measurements of individual kink modes are obtained from the magnetic fluctuations using a technique known as biorthogonal decomposition. External kink modes that naturally arise in shaped plasmas are observed and described. The poloidal structure of modes in shaped plasmas are found to be similar to those that arise in circular plasmas, except near the X-point. The magnetic signature of kink modes on the surface of the plasma are calculated using the ideal MHD code DCON. For plasmas with an X-point, DCON shows a short-wavelength, low amplitude structure near the X-point. The code VALEN is used to calculate the perturbed magnetic field measured at the sensors due to the DCON mode at the plasma surface. VALEN includes the effects of sensor/plasma separation and eddy currents induced in conducting structures by rotation of the modes. Good agreement is found between the measured mode structures and the ideal kink mode structures calculated at the sensors by VALEN. A distributed array of forty active control coils was used to perturb the plasma equilibria, and for both shaped and circular equilibria, the structure of the response to the perturbation was found to be the same as the that of the dominant naturally occurring mode in that equilibrium. Finally, the magnitude of the plasma's response to applied magnetic perturbations was found to be comparable between shaped and unshaped plasmas, even though separation between the sensors and the boundary of the shaped plasmas increases relative to circular plasmas with the same plasma current and radial positions. In addition to demonstrating a new research tool for study of kink modes on HBT-EP, this research demonstrates the importance of accurate electromagnetic calculations, including eddy currents, when comparing measured and predicted mode structure.
机译:描述了在高Beta托卡马克-扩展脉冲(HBT-EP)上的定型等离子体中磁流体动力学(MHD)平衡和外部扭结模式的首次研究。设计并安装了新的极向场线圈和大电流,低压电容式电源。新的线圈极大地改变了等离子体截面的形状,并为扭结模式结构和控制的研究提供了新的研究工具。完全通电后,线圈会产生一个磁分离线,该磁分离线定义了受限等离子体和未受限等离子体之间的边界。分隔线是由称为“ X点”的多倍体场设置的,它位于圆环的内侧,在中平面上方。几个磁传感器阵列观察并表征了扭折模式下的等离子体平衡和MHD波动。使用标准方法重建自由边界血浆平衡,该方法将数值重建的平衡与各种测量之间的均方误差最小化。重构的等离子等离子体平衡表明,具有等离子外部边界的完全转移的等离子的产生。通过使用磁传感器阵列和可移动的Langmuir探针测量最外面的封闭磁通量表面进行直接测量,可以确认重建。使用称为双正交分解的技术从磁涨落中获取各个扭结模式的测量值。观察并描述了成型等离子体中自然产生的外部扭结模式。除了在X点附近,已发现成形等离子体中的模态的倍体结构与圆形等离子体中的模态类似。使用理想的MHD代码DCON计算等离子体表面上的扭结模态的磁性特征。对于具有X点的等离子体,DCON在X点附近显示出短波长,低幅度的结构。代码VALEN用于计算由于等离子表面的DCON模式而在传感器处测得的扰动磁场。 VALEN包括通过模式旋转在导电结构中感应的传感器/等离子体分离和涡流的影响。在测得的模式结构与VALEN在传感器处计算出的理想扭结模式结构之间找到了很好的一致性。使用40个有源控制线圈的分布式阵列来扰动血浆平衡,并且对于形状和圆形平衡,发现对扰动的响应结构与该平衡中自然主导模式的响应结构相同。 。最后,即使相对于具有相同等离子体电流和径向位置的圆形等离子体,传感器和成形等离子体的边界之间的距离增加,等离子体在成形和非成形等离子体之间的响应大小也可以比较。除了演示一种用于研究HBT-EP扭结模式的新研究工具外,该研究还证明了在比较测得的模式结构和预测的模式结构时,进行精确的电磁计算(包括涡流)的重要性。

著录项

  • 作者

    Byrne, Patrick J.;

  • 作者单位

    Columbia University.;

  • 授予单位 Columbia University.;
  • 学科 Plasma physics.
  • 学位 Ph.D.
  • 年度 2017
  • 页码 145 p.
  • 总页数 145
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:54:25

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