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Effects of magnetic field and target plasma on the penetration behaviour of compact toroid plasma by heat load measurements in CPD

机译:磁场和目标等离子体对CPD中热负荷测量对致密环形等离子体渗透行为的影响

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Compact toroid (CT) injection experiments have recently been carried out in a compact plasma wall interaction experimental device (CPD) in the presence of toroidal as well as poloidal magnetic field and low density RF target plasma. Spectroscopic studies have been carried out using an IR camera, an IR spectrometer and an H_α monitor to estimate the heat load deposition on the target and also to study the magnetic field as well as RF target plasma effects on CT plasma penetration behaviour. Using IR camera imaging of the target plate, heat load deposition on it has been estimated from the observed temperature rise of the plate and has been compared with the energy content of CT plasma. The estimation suggests that nearly 700 J of energy is uniformly deposited on the target plate under vacuum condition without any magnetic field. On the other hand, post exposure analysis of target plate using scanning electron microscopy has indicated local melting of the target plate. It has been observed that radial penetration of CT towards the target plate is reduced with the increase in the external magnetic field, both toroidal and poloidal. Moreover, the presence of RF target plasma in external magnetic fields seems to change the CT penetration behaviour significantly.
机译:最近在紧凑型等离子体壁相互作用实验装置(CPD)中进行了紧凑型环形(CT)注射实验,同时存在环形磁场,多极磁场和低密度RF目标等离子体。已经使用红外摄像机,红外光谱仪和H_α监视器进行了光谱研究,以估算沉积在靶材上的热负荷,并研究磁场以及RF靶材等离子体对CT等离子体穿透行为的影响。使用红外热像仪对靶板进行成像,可以根据观察到的靶板温度升高估算靶板上的热负荷,并将其与CT等离子体的能量含量进行比较。估计表明在真空条件下没有任何磁场的情况下,将近700 J的能量均匀地沉积在目标板上。另一方面,使用扫描电子显微镜对靶板进行曝光后分析表明靶板局部熔化。已经观察到,随着环形和多面体的外部磁场的增加,CT向靶板的径向穿透减小。而且,外部磁场中RF目标等离子体的存在似乎显着改变了CT穿透行为。

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