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Progress in development of ITER diagnostic pressure gauges and status of interfaces with ITER components

机译:ITER诊断压力表的开发进展以及与ITER组件的接口状态

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Neutral gas pressure is one of the main parameters for a basic control of ITER operation. Diagnostic Pressure Gauges (DPGs) shall provide pressure measurements in the range from 10(-4) Pa to 20 Pa with an accuracy of 20% and a time resolution of 50 ms. In total 52 DPG sensor heads will be installed in 4 lower ports, 4 divertor cassettes and 2 equatorial ports. The overall DPG system has 15 interfaces with various systems and components of ITER. The DPG system is being developed including sensor head and front-end electronics. A test campaign aiming at validation of the system baseline design is currently ongoing. The measurement performance of a DPG sensor head prototype has been investigated for various parameters, such as electrode potentials, transparency of the acceleration grid and electron emission current demonstrating the possibility to measure pressures up to 20 Pa. Emission properties of several material candidates for the filament (hot cathode) have been studied during approximately three months of continuous operation. Filament samples made of tungsten with 2% doping of ThO2 and tungsten alloy with 26% of rhenium coated with Y2O3 demonstrated most promising results. These cathodes required lowest heating currents for fixed electron emission current. Mechanical tests of these samples showed no detectable deformations for maximum heating currents in transient magnetic fields of up to 8 T. The already obtained as well as future test results will be used for further design optimization and integration of the DPG system into the ITER environment.
机译:中性气压是对ITER运行进行基本控制的主要参数之一。诊断压力计(DPG)应提供10(-4)Pa至20 Pa范围内的压力测量,精度为20%,时间分辨率为50 ms。总共52个DPG传感器头将安装在4个下部端口,4个分流器暗盒和2个赤道端口中。整个DPG系统具有与ITER的各种系统和组件的15个接口。 DPG系统正在开发中,包括传感器头和前端电子设备。目前正在进行旨在验证系统基线设计的测试活动。已对DPG传感器头原型的测量性能进行了各种参数研究,例如电极电势,加速栅的透明度和电子发射电流,这证明了可以测量高达20 Pa的压力。灯丝的几种材料的发射特性(热阴极)已在大约三个月的连续运行中进行了研究。由掺有2%ThO2的钨制成的细丝样品和掺有Y2O3的26%rh制成的钨合金样品显示出最有希望的结果。对于固定的电子发射电流,这些阴极需要最低的加热电流。这些样品的机械测试表明,在高达8 T的瞬变磁场中,最大加热电流均未检测到变形。已经获得的以及将来的测试结果将用于进一步的设计优化以及DPG系统与ITER环境的集成。

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