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Overview of confinement and MHD stability in the Large Helical Device

机译:大型螺旋装置的限制和MHD稳定性概述

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The Large Helical Device is a heliotron device with L = 2 and M = 10 continuous helical coils with a major radius of 3.5-4.1 m, a minor radius of 0.6m and a toroidal field of 0.5-3 T, which is a candidate among toroidal magnetic confinement systems for a steady state thermonuclear fusion reactor. There has been significant progress in extending the plasma operational regime in various plasma parameters by neutral beam injection with a power of 13 MW and electron cyclotron heating (ECH) with a power of 2 MW. The electron and ion temperatures have reached up to 10keV in the collisionless regime, and the maximum electron density, the volume averaged beta value and stored energy are 2.4 x 10~(20) m~(-3), 4.1% and 1.3MJ, respectively. In the last two years, intensive studies of the magnetohydrodynamics stability providing access to the high beta regime and of healing of the magnetic island in comparison with the neoclassical tearing mode in tokamaks have been conducted. Local island divertor experiments have also been performed to control the edge plasma aimed at confinement improvement. As for transport study, transient transport analysis was executed for a plasma with an internal transport barrier and a magnetic island. The high ion temperature plasma was obtained by adding impurities to the plasma to keep the power deposition to the ions reasonably high even at a very low density. By injecting 72 kW of ECH power, the plasma was sustained for 756 s without serious problems of impurities or recycling.
机译:大型螺旋装置是具有L = 2和M = 10个连续螺旋线圈的日光电子装置,其长半径为3.5-4.1 m,短半径为0.6m,环形场为0.5-3 T,在其中稳态热核聚变反应堆的环形磁约束系统。在通过以13兆瓦的功率进行中性束注入和以2兆瓦的功率进行电子回旋加速器加热(ECH)的情况下,在各种等离子体参数中扩展等离子体工作方式方面已取得了重大进展。在无碰撞状态下,电子和离子温度已达到10ke​​V,最大电子密度,体积平均β值和储能为2.4 x 10〜(20)m〜(-3),4.1%和1.3MJ,分别。在过去的两年中,与托卡马克人的新古典撕裂模式相比,对磁流体动力学稳定性进行了深入研究,从而提供了进入高β态和磁岛修复的途径。还已经进行了局部岛偏滤器实验,以控制边缘等离子体,以改善密封性。至于运输研究,对具有内部运输壁垒和磁性岛的等离子体进行了瞬态运输分析。通过将杂质添加到等离子体中来保持离子的高功率沉积,即使在非常低的密度下,也能获得较高的离子温度等离子体。通过注入72 kW的ECH功率,等离子体可以维持756 s,而不会出现严重的杂质或回收问题。

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