Practical Model for the Calculation of Lateral Electromagnetic Loads in Tokamaks at Asymmetric Vertical Displacement Events (AVDEs)

Plasma Pub Date : 2024-03-13 DOI:10.3390/plasma7010012
Sergey Sadakov, F. Villone, Daniel Iglesias, Luis Maqueda, Jesus Almenara-Rescalvo, G. Rubinacci, S. Ventre
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Abstract

This paper describes a new practical numerical model for the calculation of lateral electromagnetic (EM) loads in tokamaks during asymmetric vertical displacement events (AVDEs). The model combines key features of two recently reported trial models while avoiding their drawbacks. Their common basic feature is the superposition of two patterns of halo current: one perfectly symmetric and another perfectly anti-symmetric. This model combines the following features that have not been combined before (a) a helically distorted halo layer wrapping around core plasma, and (b) halo-to-wall interception belts slipping along plasma-facing walls. This combination almost doubles the lateral net forces. An AVDE creates significant lateral net moments. Being relatively modest at VDEs, the lateral moments become a dominant component of EM loads at AVDEs. The model carefully tracks the balance of net EM loads (zero total for the tokamak), as a necessary condition for the consequent numerical simulation of the tokamak’s dynamic response. This balance is needed as well for the development of tokamak monitoring algorithms and simulators. In order to decouple from the current uncertainties in the interpretation and simulation of AVDE physics, the model does not simulate AVDE evolution but uses it as an input assumption based on the existing interpretation and simulation of AVDE physics. This means the model is to be used in a manner of parametric study, at widely varied input assumptions on AVDE evolution and severity. Parametric results will fill a library of ready-for-use waveforms of asymmetric EM loads (distributed and total) at tokamak structures and coils, so that the physics community may point to specific variants for subsequent engineering analysis. This article presents the first practical contribution to this AVDE library.
非对称垂直位移事件 (AVDE) 时托卡马克侧向电磁载荷的实用计算模型
本文介绍了一种新的实用数值模型,用于计算非对称垂直位移事件(AVDE)期间托卡马克中的横向电磁(EM)载荷。该模型结合了最近报道的两个试验模型的主要特点,同时避免了它们的缺点。它们的共同基本特征是两种晕流模式的叠加:一种是完全对称模式,另一种是完全反对称模式。该模型结合了以下以前从未结合过的特征:(a)螺旋扭曲的晕层包裹着核心等离子体;(b)晕壁拦截带沿着等离子体面壁滑动。这种组合几乎使侧向净力增加了一倍。AVDE 会产生巨大的侧向净力矩。在 VDEs 时,横向力矩相对较小,而在 AVDEs 时,横向力矩成为电磁载荷的主要组成部分。该模型仔细跟踪了净电磁载荷的平衡(托卡马克的总载荷为零),这是随后对托卡马克动态响应进行数值模拟的必要条件。开发托卡马克监测算法和模拟器也需要这种平衡。为了与当前 AVDE 物理解释和模拟中的不确定性脱钩,该模型并不模拟 AVDE 的演变,而是将其作为基于现有 AVDE 物理解释和模拟的输入假设。这意味着该模型将以参数研究的方式,在对 AVDE 演化和严重程度的不同输入假设下使用。参数化结果将为托卡马克结构和线圈的非对称电磁载荷(分布式和总计式)提供一个随时可用的波形库,这样物理学界就可以为后续的工程分析指出特定的变体。本文是对该 AVDE 库的首次实际贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.30
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