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Experimental characteristics of a lower hybrid wave multi-junction coupler in the HT-7 tokamak

机译:HT-7托卡马克低杂波多结耦合器的实验特性

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A phase-controlled lower hybrid wave (LHW) multi-junction (MJ) coupler (3(rows) x 4(columns) x 4 (subwaveguides)) has been developed in the HT-7 tokamak. Simulations show that it is more effective for driving plasma current than an ordinary phase-controlled LHW antenna (3( rows) x 12(columns)) (traditional coupler). The plasma-wave coupling experiments show that the reflection coefficient (RC) is below 10%, implying that the MJ grill can launch the wave into the plasma effectively. The effect of power spectrum launched by the MJ coupler on RC indicates that an optimal condition is requisite for a better coupling in the lower hybrid current drive (LHCD) experiments. Studies indicate that the drive efficiency of the MJ antenna is higher than that of the traditional one, which is mainly ascribed to the discrepancy in impurity concentration, plasma temperature, and spectrum directivity. An improved confinement with an electron internal transport barrier is obtained by LHCD. The analysis shows that the modified negative (low) magnetic shear and the change of radial electric field pro. le due to LHCD are possible factors responsible for the eITB formation.
机译:在HT-7托卡马克中已经开发了一种相控下混合波(LHW)多结(MJ)耦合器(3(行)x 4(列)x 4(子波导))。仿真显示,它比常规的相控LHW天线(3(行)x 12(列))(传统耦合器)对驱动等离子体电流更有效。等离子体波耦合实验表明,反射系数(RC)低于10%,这表明MJ格栅可以有效地将波发射到等离子体中。 MJ耦合器发射的功率谱对RC的影响表明,在较低的混合电流驱动(LHCD)实验中,最佳条件是更好耦合的必要条件。研究表明,MJ天线的驱动效率高于传统天线,这主要归因于杂质浓度,等离子体温度和频谱方向性的差异。通过LHCD获得了具有电子内部传输势垒的改进的限制。分析表明,修正后的负(低)磁切变和径向电场的变化pro。由LHCD引起的1e可能是导致eITB形成的原因。

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