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中国物理学会期刊

CT-6B托卡马克装置反常电子热导测量

CSTR: 32037.14.aps.37.447

EXPERIMENTAL MEASUREMENTS OF ELECTRON ANOMALOUS HEAT CONDUCTIVITY ON CT-6B TOKAMAK

CSTR: 32037.14.aps.37.447
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  • 在CT-6B托卡马克装置上,使用软X射线探测器阵列,测量了磁流体内破裂引起的温度锯齿扰动。经对扰动信号的幅度、周期、相位等分析,计算出不同半径处的平均电子热导系数。实验结果比新经典理论值大一个数量级,证明了CT-6B装置等离子体电子热导的反常性。实验表明,磁流体扰动明显加速能量输运,电子热导随扰动幅度增加而增加。

     

    Experimental measurements of electron thermal condouctivity coefficient on the CT-6B device are reported here. With the help of MHD internal disruption, which specifies the temperature sawtooth perturbation, analysing the amplitudes, cycles and phases of the perturbation signals of soft x-ray detectors, we have calculated the average electron thermal coefficients in different radiuses. Experiment results are an order of magnitude larger than that predicted by neoclassical theory, showing that electron heat conductivity in the CT-6B plasma is an anomalous one. It is shown that MHD internal disruption can make the energy transport increases obviously. Electron heat conductivity increases with the amplitude of MHD perturbo-tion.

     

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