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Conceptual design of a collimated neutron flux monitor and spectrometer for DTT

机译:DTT准直中子磁通监测器和光谱仪的概念设计

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摘要

A conceptual design and performance studies for a collimated neutron flux monitor and neutron spectrometer for the Divertor Tokamak Test (DTT) facility are presented. This study is based on the single-null divertor configuration and for & ldquo;Half Power & rdquo; and & ldquo;Full power & rdquo; scenarios with 15 MW of negative-ion NBI, 29 MW of ECH and 3 MW of ICRF heating with a maximum neutron yield of 1.5 & times; 1017 s-1. Fast ion distributions (both from auxiliary heating systems and fusion born) have been simulated in TRANSP/NUBEAM and the corresponding neutron energy spectra have been calculated using DRESS. Synthetic diagnostics have been implemented to determine the neutron fluxes and spectra at the detector location. Neutron emissivity profiles, plasma position, core ion temperature and the ratio of thermal and non-thermal D ion populations can be obtained with good accuracy and time resolution.
机译:提出了一种用于转移器Tokamak测试(DTT)设施的准直中子磁通监测器和中子光谱仪的概念性设计和性能研究。 本研究基于单零步偏移器配置和“半功率和rdquo; 和“全权力和rdquo; 具有15兆瓦的负离子NBI的情景,29 MW的ECH和3 MW的ICRF加热,最大中子产量为1.5和时间; 1017 S-1。 在Transp / Nubeam中模拟了快速离子分布(来自辅助加热系统和融合),并且使用连衣裙计算相应的中子能谱。 已经实施了合成诊断以确定探测器位置的中子丝量和光谱。 中子发射率分布,等离子体位置,芯离子温度和热和非热D离子群的比例可以以良好的精度和时间分辨率获得。

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