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Specific features of eddy current analysis with ANSYS® for fast plasma current decay event in W7-X

机译:在W7-X中使用ANSYS®的涡流分析的特定特征,用于快速等离子体电流衰减事件

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摘要

During the second operation phase (OP1.2) of the most advanced stellarator Wendelstein 7-X (W7-X), some events of fast plasma current decay with a time constant of about 1 ms were observed (for both toroidal and diamagnetic plasma currents). The events were triggered by Electron Cyclotron Current Drive (ECCD) and were much faster than the assumptions considered during the design phase of W7-X components: 100 kA and 2.7 MA plasma current discharge with the time constants of 140 and 50 ms for toroidal and diamagnetic currents respectively. During the observed 1 ms discharge of maximum expected plasma currents, significant eddy currents are expected to be induced in some components with resulting electro-magnetic (EM) forces.In order to avoid unnecessary changes on as-built components, evaluation of the eddy currents / EM forces with high accuracy is required, if the conservative simplified estimation shows criticality. As a result, a sophisticated EM model with plasma currents, superconducting (sc) coils, plasma vessel (PV) and multiple ports is developed in ANSYS (R) using the new element type SOLID236 / 237 (edge-based formulation), which is much more accurate than the legacy elements SOLID97 (vector potential formulation).The specific features of using SOLID236 elements for eddy current analysis are studied and presented in this paper. This includes the application of boundary conditions on sector EM model, modelling of excitation currents, field and eddy current accuracy, skin effect, shielding effect, voltage in conducting components, etc. Most of the issues are studied in comparison with SOLID97 elements. Finally, the pros and cons of SOLID236 and SOLID97 elements are summarized, and the experiences during the W7-X EM analyses are presented.Y
机译:在最先进的螺栓恒星Wendelstein 7-X(W7-X)的第二操作阶段(OP1.2)期间,观察到具有约1ms的时间常数的一些快速等离子体电流衰减的事件(对于环形和抗磁等离子体电流)。通过电子回旋电流驱动器(ECCD)触发事件,比W7-X部件的设计阶段考虑的假设快得多:100ka和2.7 mA等离子体电流,具有140和50 ms的Toroidal和50 ms的时间常数。分别是抗磁电流。在观察到的1ms的最大预期等离子体电流的放电期间,预期显着的涡流预计在一些组件中诱导,得到电磁(EM)力。为了避免因内置部件的不必要的变化,评估涡流的评估如果保守的简化估计显示临界,则需要高精度的力。结果,使用新的元素类型固体236/237(基于边缘的配方),在ANSYS(R)中开发了具有等离子体电流,超导(SC)线圈,等离子体容器(PV)和多个端口的复杂EM模型。比传统元素固体97(载体电位制剂)更准确。使用SIGHT236用于涡流分析的具体特征,并在本文中介绍。这包括在扇区EM模型上应用边界条件,激励电流的建模,现场和涡流精度,皮肤效应,屏蔽效果,导电部件中的电压等。与固体97元素相比,研究了大部分问题。最后,总结了固体236和固体97元素的优缺点,并提出了W7-X EM分析期间的经验.Y

著录项

  • 来源
    《Fusion Engineering and Design》 |2021年第2期|112136.1-112136.5|共5页
  • 作者单位

    Max Planck Inst Plasma Phys Greifswald Germany;

    Max Planck Inst Plasma Phys Greifswald Germany;

    LT Calcoli Srl Via Bergamo 60 I-23807 Merate LC Italy;

    LT Calcoli Srl Via Bergamo 60 I-23807 Merate LC Italy;

    Max Planck Inst Plasma Phys Greifswald Germany;

    Max Planck Inst Plasma Phys Greifswald Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wendelstein 7-X (W7-X); Stellarator; Electromagnetic analysis; ANSYS (R) SOLID236; SOLID97;

    机译:Wendelstein 7-X(W7-X);螺栓磨机;电磁分析;ANSYS(R)固体236;固体97;
  • 入库时间 2022-08-19 01:18:41
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