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ELECTRON CYCLOTRON HEATING APPLIED TO THE JT-60U TOKAMAK

机译:电子回旋加热装置应用于JT-60U托卡马克

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The application of the electron cyclotron heating (ECH) and electron cyclotron current drive (ECCD) to the JT-60U tokamak started in 1999. Because the power deposition by the electron cyclotron wave is very localized and controllable, the application of ECH/ECCD has been very attractive for the following recent studies in the JT-60U: (a) the extension of plasma performance toward high normalized beta (β_N), (b) high bootstrap current fraction, and (c) long-pulse operation (65s). Plasma produced in the studies aiming at advanced steady tokamak is considered to be in a kind of "self-organized state" with external input power by joule heating plus additional heating. The internal transport barrier that develops by the additional heating enhances the local bootstrap current by steep pressure gradient, and then the modified plasma current profile establishes a different confining poloidal magnetic field configuration from the initial configuration. In such experimental research in the JT-60U, the ECH contributes as an active tool for the plasma control to study the physical mechanisms of high-β magnetohydrodynamic instability, internal transport barrier, current hole, and so on. Results of the ECH/ ECCD applications in the JT-60U are briefly reviewed.
机译:电子回旋加速器加热(ECH)和电子回旋加速器电流驱动(ECCD)在JT-60U托卡马克上的应用始于1999年。由于电子回旋加速器的功率沉积非常局部且可控,因此ECH / ECCD的应用具有对于JT-60U的以下最新研究非常有吸引力:(a)等离子体性能向高标准化β(β_N)的扩展,(b)高自举电流分数和(c)长脉冲操作(65s)。在研究中,针对先进的稳定托卡马克产生的等离子体被认为是一种“自组织状态”,通过焦耳加热加额外的加热而具有外部输入功率。通过额外加热产生的内部传输势垒通过陡峭的压力梯度增强了局部自举电流,然后修改后的等离子体电流曲线建立了与初始构型不同的约束极向磁场构型。在JT-60U的此类实验研究中,ECH作为等离子体控制的活跃工具,用于研究高β磁流体动力不稳定性,内部传输势垒,电流空穴等的物理机制。简要回顾了JT-60U中ECH / ECCD应用的结果。

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