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Non linear model of the gas introduction module for plasma density control at JETNon linear model of the gas introduction module for plasma density control at JET

机译:JETN上用于等离子体密度控制的气体引入模块的非线性模型JET上用于等离子体密度控制的气体引入模块的非线性模型

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摘要

The gas introduction module (GIM) is the basic system used in Joint European Torus (JET) to provide the vacuum vessel with the amount of gas necessary for a successful plasma discharge. The plasma density feedback (PDF) system controls the GIM piezo-electric valve allowing the desired amount of gas to flow in the vacuum vessel. The unavailability of a flow measurement is the main reason for the development of an accurate flow model, able to predict and calculate the number of particles flowing within an acceptable error margin. This paper describes a GIM model that uses the control signal of the piezo-electric valve to compute the pressure evolution inside the GIM reservoir and, using the pressure estimation, obtains the particles flow considering also the dynamic heat exchange effect between the gas and the structure of the GIM.
机译:气体引入模块(GIM)是欧洲联合圆环(JET)中使用的基本系统,用于为真空容器提供成功进行等离子体放电所需的气体量。等离子体密度反馈(PDF)系统控制GIM压电阀,使所需量的气体在真空容器中流动。流量测量的不可用是开发精确流量模型的主要原因,该模型能够预测并计算在可接受的误差范围内流动的粒子数量。本文介绍了一种GIM模型,该模型使用压电阀的控制信号来计算GIM储层内部的压力演化,并利用压力估计来获得考虑了气体与结构之间的动态热交换效应的颗粒流。 GIM。

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