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A new tungsten wire calorimeter for the negative ion source testbed BATMAN Upgrade

机译:用于负离子源测试台BATMAN Upgrade的新型钨丝热量计

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Within the framework of the ion source development for the ITER and DEMO Neutral Beam Injection (NBI) systems, IPP Garching has recently upgraded the radiofrequency-driven negative ion source testbed BATMAN. One of the requirements for the ITER NBI system is to produce a beam power density homogeneity above 90% over its large beam size extracted from an ion source of 1 x 2 m(2). The beam uniformity is going to be investigated, on a smaller scale, in BATMAN Upgrade with the new ITER-like beam optics. The testbed is equipped with several beam diagnostic tools to measure beam power, uniformity and divergence. A new tungsten wire calorimeter (TWC) has recently been developed to characterize the beam quantitatively and with an improved spatial and temporal resolution. The TWC consists of an array of thin tungsten wires with a diameter of 0.3 mm, placed in the beam path. The wires are heated by the beam up to 3000 degrees C and emit visible light, which is observed by an optical camera. While the existing TWC provides a qualitative impression of beam power characteristics and is placed at a distance of almost 2 m from the beam extraction system, the new TWC is positioned only 19 cm downstream from the extraction system and allows observation of the single beamlets for the first time in this testbed. In order to determine the correlation between the pixel intensity measured by the camera and the power density impinging on the wires, one wire is equipped with an ohmic heating system which allows heating up the wire with a known power, thus enabling calibration of the diagnostic tool.In this paper the design, including FEM simulations of the wire thermal behavior, manufacturing and installation of the new TWC inside the BATMAN Upgrade testbed are described and the first, very promising, observations of beamlet intensities are presented.
机译:在ITER和DEMO中性离子束注入(NBI)系统的离子源开发框架内,IPP Garching最近升级了射频驱动的负离子源试验台BATMAN。 ITER NBI系统的要求之一是,在从1 x 2 m(2)的离子源中提取出的大束径上,要产生大于90%的束功率密度均匀性。光束均匀度将在BATMAN Upgrade中使用类似ITER的新型光束光学器件进行较小规模的研究。该测试台配备了多种光束诊断工具,可测量光束功率,均匀度和发散度。最近开发了一种新的钨丝量热仪(TWC),以定量地表征光束,并具有改进的时空分辨率。 TWC由放置在光束路径中的直径为0.3 mm的细钨丝阵列组成。电线被光束加热到3000摄氏度,并发出可见光,这可以通过光学相机观察到。现有的TWC提供了光束功率特性的定性印象,并且与光束提取系统之间的距离几乎为2 m,而新的TWC则位于提取系统的下游仅19 cm处,从而可以观察到单个子束第一次在这个测试台上。为了确定相机测量的像素强度与撞击在电线上的功率密度之间的相关性,一根电线配备了欧姆加热系统,该系统可以用已知功率加热电线,从而可以对诊断工具进行校准本文描述了设计,包括线热行为的有限元模拟,BATMAN升级试验台内部新TWC的制造和安装,并提出了第一个非常有希望的小束强度观测结果。

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