Preliminary compact torus injection experiments on the Keda Torus eXperiment reversed field pinch

Tao Lan, Chen Chen, C. Xiao, Weixing Ding, Jie Wu, W. Mao, Sen Zhang, Defeng Kong, Shoubiao Zhang, Zhengwei Wu, Qi Dong, Yongkang Zhou, Hangqi Xu, Jiaren Wu, Zian Wei, X. Wen, Chu Zhou, Adi Liu, Hong Li, Jinlin Xie, Wandong Liu, Zhuang Ge
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Abstract

A new compact torus injector (KTX-CTI) has been built for injection experiments on the Keda Torus eXperiment (KTX) reversed field pinch (RFP). The aim is to study the fundamental physics governing the compact torus (CT) central fueling processes. In experiments conducted under the sole influence of a 0.1 T toroidal magnetic field, the injected CT successfully penetrated the entire toroidal magnetic field, reaching the inner wall of the KTX vacuum vessel. Upon reaching the inner wall, the CT diffused both radially outward and toroidally within the vessel at a discernible diffusion speed. Moreover, the inherent helicity within the CT induced a modest KTX plasma current of 200A, consistent with predictions based on helicity conservation. CT injection demonstrated the capability to initiate KTX discharges at low loop voltages, suggesting its potential as a pre-ionization and current startup technique. During RFP discharges featuring CT injection, the central plasma density was found to exceed the Greenwald density limit, with more peaked density profiles, indicating the predominant confinement of CT plasma within the core region of the KTX bulk plasma.
在 Keda Torus eXperiment 反向磁场夹上进行的初步紧凑磁环注入实验
为在 Keda Torus eXperiment(KTX)反向磁场夹(RFP)上进行注入实验,建造了一个新的紧凑环形注入器(KTX-CTI)。其目的是研究控制紧凑环(CT)中心燃料注入过程的基本物理学。在仅受 0.1 T 环形磁场影响的实验中,注入的 CT 成功穿透整个环形磁场,到达 KTX 真空容器的内壁。到达内壁后,CT 以明显的扩散速度在容器内径向向外和环形扩散。此外,CT 内固有的螺旋性还诱发了 200A 的适度 KTX 等离子电流,这与基于螺旋守恒的预测相一致。CT 注入证明了在低回路电压下启动 KTX 放电的能力,这表明它具有作为预电离和电流启动技术的潜力。在以 CT 注入为特征的 RFP 放电过程中,发现中心等离子体密度超过了格林沃尔德密度极限,密度曲线更加峰值化,这表明 CT 等离子体主要被限制在 KTX 体积等离子体的核心区域内。
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