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一种用于测量反向场箍缩边缘三维流和磁场的八面体马赫B-dot探头。

An octahedral Mach B-dot probe for 3D flows and magnetic fields in the edge of reversed field pinches.

作者信息

Sellner A M, von der Linden J, Himura H, Reksoatmodjo R, Sears J, You S, Almagri A F, McCollam K J, Reyfman M, Rouda C C, Sarff J S

机构信息

Department of Physics, University of Wisconsin, Madison, Wisconsin 53706, USA.

Max-Planck-Institute für Plasmaphysik, 85748 Garching, Germany.

出版信息

Rev Sci Instrum. 2024 Jul 1;95(7). doi: 10.1063/5.0219516.

Abstract

Measurements and simulations show that plasma relaxation processes in the reversed field pinch drive and redistribute both magnetic flux and momentum. To examine this relaxation process, a new 3D Mach B-dot probe has been constructed. This probe collects ion saturation currents through six molybdenum electrodes arranged on the flattened vertices of an octahedron made of boron nitride (BN). The ion saturation current flows through configurable voltage dividers for measurement and returns through one of six selectable return electrodes equally spaced along the 12 cm BN probe arm. In addition, the probe arm houses three B-dot magnetic pickup coils in the BN stalk immediately below to the octahedron, to measure the local magnetic field. Inserted in the Madison Symmetric Torus (MST) during deuterium discharges with 220 kA plasma current, density of 0.8 × 1013 cm-3, the probe collects ion saturation currents with sawtooth-like peaks correlated with relaxation events. This compact octahedral design fitting six Mach electrode surfaces within a 1 cm3 cube will enable future multi-point, multi-field probes compatible with the 1.5 in. ports of MST. Such probes will allow for flow circulation, current, and canonical vorticity to be calculated in the center of the finite difference stencil formed by the measurement locations.

摘要

测量和模拟表明,反向场箍缩中的等离子体弛豫过程驱动并重新分布磁通量和动量。为了研究这种弛豫过程,构建了一种新型的三维马赫B点探针。该探针通过六个钼电极收集离子饱和电流,这些电极布置在由氮化硼(BN)制成的八面体的扁平顶点上。离子饱和电流通过可配置的分压器进行测量,并通过沿着12厘米BN探针臂等距分布的六个可选返回电极之一返回。此外,探针臂在八面体正下方的BN杆中容纳三个B点磁拾波线圈,以测量局部磁场。在氘放电期间,将该探针插入麦迪逊对称环面(MST),等离子体电流为220kA,密度为0.8×10¹³cm⁻³,探针收集到的离子饱和电流具有与弛豫事件相关的锯齿状峰值。这种紧凑的八面体设计在1立方厘米的立方体内容纳了六个马赫电极表面,将使未来的多点、多场探针能够与MST的1.5英寸端口兼容。这种探针将允许在由测量位置形成的有限差分模板中心计算流循环、电流和正则涡度。

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