首页> 外文会议>Topical Conference on Radio Frequency Power in Plasmas >EC assisted start-up experiments reproduction in FTU and AUG for simulations of the ITER case
【24h】

EC assisted start-up experiments reproduction in FTU and AUG for simulations of the ITER case

机译:EC协助FTU的启动实验再现和八件拍摄的思考

获取原文

摘要

The breakdown and plasma start-up in ITER are well known issues studied in the last few years in many tokamaks with the aid of calculation based on simplified modeling. The thickness of ITER metallic wall and the voltage limits of the Central Solenoid Power Supply strongly limit the maximum toroidal electric field achievable (0.3 V/m), well below the level used in the present generation of tokamaks. In order to have a safe and robust breakdown, the use of Electron Cyclotron Power to assist plasma formation and current rump up has been foreseen. This has raised attention on plasma formation phase in presence of EC wave, especially in order to predict the required power for a robust breakdown in ITER. Few detailed theory studies have been performed up to nowadays, due to the complexity of the problems. A simplified approach, extended from that proposed in ref[l] has been developed including a impurity multispecies distribution and an EC wave propagation and absorption based on GRAY code. This integrated model (BKOD) has been benchmarked on ohmic and EC assisted experiments on,FTU and AUG, finding the key aspects for a good reproduction of data. On the basis of this, the simulation has been devoted to understand the best configuration for ITER case. The dependency of impurity distribution content and neutral gas pressure limits has been considered. As results of the analysis a reasonable amount of power (1-2 MW) seems to be enough to extend in a significant way the breakdown and current start up capability of ITER. The work reports the FTU data reproduction and the ITER case simulations.
机译:迭代中的崩溃和等离子体初创物是在许多基于简化建模的计算的迄今为止在许多托卡马克的众所周知的问题。浸渍金属壁的厚度和中心电磁电源的电压限制强烈限制可实现的最大环形电场(0.3V / m),远低于本发明的托卡马克斯的水平。为了具有安全且坚固的分解,已经预见了使用电子回旋电来辅助等离子体形成和电流振荡。这引起了EC波存在的等离子体形成阶段的注意力,特别是为了预测ITER中坚固故障所需的力量。由于问题的复杂性,现在已经达到了几乎没有详细的理论研究。已经开发了一种简化的方法,该方法已经开发出在REF [L]中提出的,包括杂质多数分布和基于格雷码的EC波传播和吸收。这种集成型号(BKOD)在欧姆和EC协助实验上是基准测试,FTU和Aug,找到了良好的数据再现的关键方面。在此基础上,模拟已经致力于了解ITER案例的最佳配置。已经考虑了杂质分布含量和中性气体压力限制的依赖性。随着分析结果的结果,合理量的功率(1-2mW)似乎足以以显着的方式延伸,击穿和电流启动迭代的能力。该工作报告了FTU数据再现和ITer案例模拟。

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