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Fusion Power Measurement Using a Combined Neutron Spectrometer-Camera System at ITER

机译:融合功率测量使用在ITER的组合中子谱仪 - 相机系统

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A central task for fusion plasma diagnostics is to measure the 2.5 and 14 MeV neutron emission rate in order to determine the fusion power. A new method for determining the neutron yield has been developed at JET. It makes use of the magnetic proton recoil neutron spectrometer and a neutron camera and provides the neutron yield with small systematic errors. At ITER a similar system could operate if a high-resolution, high-performance neutron spectrometer similar to the MPR was installed. In this paper, we present how such system could be implemented and how well it would perform under different assumption of plasma scenarios and diagnostic capabilities. It is found that the systematic uncertainty for using such a system as an absolute calibration reference is as low as 3 % and hence it would be an excellent candidate for the calibration of neutron monitors such as fission chambers. It is also shown that the system could provide a 1 ms time resolved estimation of the neutron rate with a total uncertainty of 5 %.
机译:融合等离子体诊断的中心任务是测量2.5和14 MeV中子发射率,以确定融合功率。在射流中开发了一种确定中子产量的新方法。它利用磁性质子弧中子谱仪和中子摄像机,并提供了具有小系统误差的中子产量。在ITER中,如果安装了类似于MPR的高分辨率,高性能中子谱仪,则可以操作。在本文中,我们提出了如何实现此类系统以及在不同的等离子体情景和诊断功能的不同假设下执行的系统。结果发现,使用这种系统作为绝对校准基准的系统不确定性低至3%,因此它将是校准中子监测器(如裂变腔)的优异候选者。还表明系统可以提供1毫秒的时间分辨估计中子率,总不确定性为5%。

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