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lhw

  • 网络低杂波
lhwlhw
  1. The coupling properties of EAST LHW launcher are analyzed by numerical simulation .

    采用数值模拟方法研究了EAST低杂波天线的耦合特性。

  2. In the case of high density , the plasma was heated greatly by the lower hybrid wave ( LHW ) .

    在高密度条件下,发现了低混杂波对离子的大幅度加热。

  3. A new phase-controlled multi-junction grill antenna for LHW on the HT-7 and measurement of its microwave characteristic

    HT-7装置新低杂波相控波导阵天线及其微波特性测量

  4. The LHW output power modes can be adjusted to meet the experimental requirements in HT-7 tokamak by controlling the PIN switches in the input power sub-system .

    实验中通过前级PIN开关控制不同的低杂波输出模式,满足了HT-7装置相应实验对低杂波的要求。

  5. The general exception to this is healing your Earth Shield target with glyphed LHW , usually the MT who would need a heal anyway .

    例外就是有次级治疗波铭文的情况下治疗有大地盾的目标,通常MT无论如何也要治疗。

  6. Experimental results show that LHW ( 2.45GHz ) does not cause great changes in the amplitude of electron density or poloidal electric field fluctuation , neither the correlativity between them .

    在加低杂波(245GHz)前、后,电子密度扰动和极向电场扰动的幅度及其关联性变化不大。

  7. During experiments of lower hybrid wave current drive , the change of LHW drive power will be accompanied by the change of the edge electric field , poloidal rotation velocity and Reynolds stress .

    在低杂波注入实验中,改变低杂波驱动功率,从而改变边缘电场、等离子体旋转速度和边缘静电雷诺胁强。

  8. Considering the balance between the energy deposition and the Joule heating effect of the LHW driven current , the profile of LHW driven current in tokamaks has been obtained .

    根据能量沉积与低杂波驱动电流的焦耳热效应之间的关系,求出了驱动电流在托卡马克中的径向分布。

  9. Considering the dependence of wave driving flux upon magnetic configuration , electron density profile and electron temperature profile , we have found the conductivity profile in LHW driven plasma by using the adjoint method .

    本文考虑了波驱动通量对磁场位形以及电子密度和温度的空间分布的依赖,应用伴随关系,计算了低混杂波驱动的等离子体电导率的空间分布。

  10. At both sides as the ion charge number is increased , the conductivity in LHW driven plasma decreases , but the ratio of this conductivity and the Spitzer-Harm conductivity increases .

    但是不论在外侧或内侧,随着离子电荷数增大,波驱动的等离子体电导率降低,而它与斯必泽-亥姆电导率之比却增大。

  11. The primary results from analyses of gamma spectrum and fluence data under Ohmic heating ( OH ), lower hybrid wave ( LHW ) heating , ion-cyclotron resonance frequency ( ICRF ) heating , ion Bernstein wave ( IBW ) and long pulse operation conditions are presented .

    针对欧姆加热、低杂波、离子回旋波、离子伯恩斯坦波、长脉冲等不同放电条件下的γ辐射行为进行了研究,结合其它相关诊断数据,给出了初步的分析结果。

  12. The power deposition profile of the lower hybrid wave ( LHW ) and the distribution of the current driven by LHW under the local synergistic interaction of LHW and ion Bernstein wave ( IBW ) have been studied using advanced ray-tracing and 2-D Fokker-Planck numerical code .

    利用改进的二维FokkerPlanck方程和低杂波射线轨迹程序研究了在低杂波和离子伯恩斯坦波协同作用下低杂波的功率沉积分布、驱动电流分布。