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Development and validation of a tokamak skin effect transformer model

机译:托卡马克集肤效应变压器模型的开发和验证

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摘要

A lumped parameter, state space model for a tokamak transformer including the slow flux penetration in the plasma (skin effect transformer model) is presented. The model does not require detailed or explicit information about plasma profiles or geometry. Instead, this information is lumped in system variables, parameters and inputs. The model has an exact mathematical structure built from energy and flux conservation theorems, predicting the evolution and non-linear interaction of plasma current and internal inductance as functions of the primary coil currents, plasma resistance, non-inductive current drive and the loop voltage at a specific location inside the plasma (equilibrium loop voltage). Loop voltage profile in the plasma is substituted by a three-point discretization, and ordinary differential equations are used to predict the equilibrium loop voltage as a function of the boundary and resistive loop voltages. This provides a model for equilibrium loop voltage evolution, which is reminiscent of the skin effect. The order and parameters of this differential equation are determined empirically using system identification techniques. Fast plasma current modulation experiments with random binary signals have been conducted in the TCV tokamak to generate the required data for the analysis. Plasma current was modulated under ohmic conditions between 200 and 300 kA with 30 ms rise time, several times faster than its time constant L/R ≈ 200 ms. A second-order linear differential equation for equilibrium loop voltage is sufficient to describe the plasma current and internal inductance modulation with 70% and 38% fit parameters, respectively. The model explains the most salient features of the plasma current transients, such as the inverse correlation between plasma current ramp rates and internal inductance changes, without requiring detailed or explicit information about resistivity profiles. This proves that a lumped parameter modelling approach can be used to predict the time evolution of bulk plasma properties such as plasma inductance or current with reasonable accuracy; at least under ohmic conditions without external heating and current drive sources.
机译:提出了托卡马克变压器的集总参数状态空间模型,其中包括在等离子体中的缓慢磁通渗透(集肤效应变压器模型)。该模型不需要有关等离子体轮廓或几何形状的详细信息或显式信息。相反,此信息集中在系统变量,参数和输入中。该模型具有根据能量和通量守恒定理建立的精确数学结构,预测了等离子体电流和内部电感随初级线圈电流,等离子体电阻,非感应电流驱动和环路电压的变化以及非线性相互作用。等离子体内部的特定位置(平衡回路电压)。等离子体中的环路电压曲线由三点离散化代替,并且使用常微分方程式来预测平衡环路电压作为边界和电阻环路电压的函数。这提供了平衡环路电压演化的模型,这使人联想到集肤效应。使用系统识别技术凭经验确定该微分方程的阶数和参数。已在TCV托卡马克中使用随机二进制信号进行了快速等离子体电流调制实验,以生成分析所需的数据。等离子体电流在200至300 kA的欧姆条件下以30 ms的上升时间进行调制,比其时间常数L / R≈200 ms快几倍。用于平衡环路电压的二阶线性微分方程足以描述分别具有70%和38%拟合参数的等离子体电流和内部电感调制。该模型解释了等离子电流瞬变的最显着特征,例如等离子电流斜率与内部电感变化之间的反相关,而无需有关电阻率曲线的详细信息。这证明集总参数建模方法可用于以合理的精度预测体等离子体特性(例如等离子体电感或电流)的时间演化;至少在没有外部加热和电流驱动源的欧姆条件下。

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  • 来源
    《Nuclear fusion》 |2012年第2期|p.023019.1-023019.17|共17页
  • 作者单位

    Laboratorio National de Fusion, Asociacion EURATOM/CIEMAT, 28040, Madrid, Spain;

    Centre de Recherches en Physique des Plasmas, Association EURATOM-Confederation Suisse, Ecole Polytechnique Federate de Lausanne, CRPP-EPFL, CH-1015 Lausanne, Switzerland;

    Centre de Recherches en Physique des Plasmas, Association EURATOM-Confederation Suisse, Ecole Polytechnique Federate de Lausanne, CRPP-EPFL, CH-1015 Lausanne, Switzerland;

    Centre de Recherches en Physique des Plasmas, Association EURATOM-Confederation Suisse, Ecole Polytechnique Federate de Lausanne, CRPP-EPFL, CH-1015 Lausanne, Switzerland;

    Euskal Herriko Unibertsitatea (EHU), Plaza Casilla 3, 48012 Bilbao, Spain;

  • 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
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