...
首页> 外文期刊>Plasma Science, IEEE Transactions on >A Real-Time Tracking for Optimal Wave Injection in Overdense Plasma Heating Experiments at 140 GHz in FTU
【24h】

A Real-Time Tracking for Optimal Wave Injection in Overdense Plasma Heating Experiments at 140 GHz in FTU

机译:在FTU中以140 GHz进行的过量等离子体加热实验中的最佳波注入的实时跟踪

获取原文
获取原文并翻译 | 示例
           

摘要

Experiments on overdense plasma heating through the mode-coupling scheme known as “O-X-B Double Mode Conversion” obtained launching a narrow beam of millimeter waves at 140-GHz frequency and 400-kW power are scheduled for the next experimental campaigns of the FTU tokamak. Such a scheme, not yet demonstrated at electron density higher than the critical one $(2.4 cdot 10^{20} hbox{m}^{-3})$ for the 140-GHz ordinary mode, and consequently at such a high frequency, exploits the conversion of an ordinary polarized wave (O) into the extraordinary (X) one, followed by a subsequent conversion to Bernstein (B) waves, which are then absorbed by the plasma. In the specific case of FTU, the overall efficiency of this scheme is mainly determined by the coupling efficiency between the O- and the X-wave, which can occur only for ordinary polarized radiation propagating in a very narrow angular range at the cutoff region. The simulations performed with a single ray tracing show that the required precision in the injection of the wave into the plasma is very high and an angular deviations of $pm 1^{circ}$ with respect to the optimal injection, in either vertical or horizontal direction, implies a 50% drop in the power transmitted to X-mode. Moreover, the application of models able to take into account the real shape of the incident beam shows that the maximum reachable efficiency, under optimal wave injection, is expected not to exceed 45% of the EC power injected, while the diameter of the angular window corresponding to 50% of power conversion keeps $leq 3^{circ}$ in both polidal and toroidal directions. The new E CH&CD launcher, now being installed in FTU, will be able to provide the angular precision required for the steering. The basic idea of a control-nalgorithm, aimed to track in real time the optimal angular window for the wave injection in experiments on O-X-B mode conversion, is presented in the paper. The control will use the stray gyrotron radiation as observable, which is detected by a set of sniffer probes located at different toroidal positions in the FTU vessel.
机译:通过FTU托卡马克的下一个实验活动,计划通过称为“ O-X-B双模式转换”的模式耦合方案进行过密等离子体加热的实验,该模式以140 GHz频率和400 kW功率发射毫米波的窄光束。这种方案尚未在140 GHz普通模式的电子密度高于临界值$(2.4 cdot 10 ^ {20} hbox {m} ^ {-3})$的情况下得到证实,因此在如此高的频率下,利用普通的偏振波(O)转换为非寻常的(X)波,随后转换为伯恩斯坦(B)波,然后被等离子体吸收。在FTU的特定情况下,该方案的总体效率主要取决于O波和X波之间的耦合效率,这仅对于在截止区域以非常窄的角度范围传播的普通偏振辐射才可能发生。用单射线跟踪进行的模拟表明,将波注入等离子体的精度非常高,并且相对于最佳注入,垂直或水平方向的角度偏差为$ pm 1 ^ {circ} $。方向,意味着传输到X模式的功率下降了50%。此外,能够考虑入射光束实际形状的模型的应用表明,在最佳波注入下,最大可达到的效率预计不会超过注入的EC功率的45%,而角窗的直径对应于50%的功率转换,可在polidal和环形方向上保持$ leq 3 ^ {circ} $。现在安装在FTU中的新型E CH&CD发射器将能够提供转向所需的角度精度。提出了一种控制算法的基本思想,旨在实时跟踪在O-X-B模式转换实验中用于波注入的最佳角度窗口。控件将使用可观察到的杂散回旋辐射,这是通过位于FTU容器中不同环形位置的一组嗅探探头检测到的。

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