首页> 外文期刊>Nuclear fusion >Thermal load distribution on the ALT-II limiter of TEXTOR-94 during RI mode operation and during disruptions
【24h】

Thermal load distribution on the ALT-II limiter of TEXTOR-94 during RI mode operation and during disruptions

机译:RI模式操作期间和中断期间,TEXTOR-94 ALT-II限制器上的热负荷分布

获取原文
获取原文并翻译 | 示例
       

摘要

Thermographic measurements using an IR scanner have been performed at the pump lim- iter ALT-II of TEXTOR-94 during RI mode discharges and during disruptions. The measurements on the RI mode discharges were done to complete the TEXTOR database which had shown a structured decay pattern of the deposited power. It was found that the underlying radial heat flux can be described by two exponential decay functions. This structure, which generates an unexpected heat component close to the tangent line, has been observed in all discharge conditions including the RI mode. During disruptions, the heat is released in short pulses with a typical duration of 0.01-0.1 ms. The radial decay length of these pulses has a similar shape to the heat flux during normal discharges: it consists again of a strong component close to the tangent line with a radial decay length of 2--5 mm and probably one with a decay length of the order of 1 cm. The heat is released at the time when the edge electron temperature of the plasma drops, when intense hydrogen and carbon fluxes occur near the walls, and when electrical currents in the limiter blades are excited. In a tentative interpretation, the temporal and spatial structure of the heat pulse is attributed to the presence and growth of a laminar zone at the plasma edge, which is connected with the ergodization of the plasma edge during a disruption.
机译:在RI模式放电期间和中断期间,已经在TEXTOR-94的泵限ALT-II上使用IR扫描仪进行了热成像测量。进行了RI模式放电的测量,以完成TEXTOR数据库,该数据库显示了沉积功率的结构化衰减模式。发现潜在的径向热通量可以通过两个指数衰减函数来描述。在包括RI模式在内的所有放电条件下都观察到这种结构会在切线附近产生意外的热分量。在中断期间,热量以短脉冲释放,典型持续时间为0.01-0.1 ms。这些脉冲的径向衰减长度与正常放电期间的热通量具有相似的形状:它又由靠近切线的强分量组成,其径向衰减长度为2--5 mm,并且可能衰减长度为1。 1厘米的量级。当等离子体的边缘电子温度下降时,在壁附近出现强烈的氢和碳通量以及限制器叶片中的电流被激发时,热量就会释放出来。在初步解释中,热脉冲的时间和空间结构归因于在等离子体边缘的层状区域的存在和增长,该层状区域在破裂过程中与等离子体边缘的麦芽糖化有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号