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Comprehensive modeling of ELMs and their effect on plasma-facing surfaces during normal tokamak operation

机译:正常托卡马克操作期间ELM的综合建模及其对等离子体表面的影响

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During the normal operation of the high confinement regime (H-mode) in next generation tokamaks, edge-localized modes (ELMs) are a serious concern for divertor plasma-facing components. The periodic relaxation of edge pressure gradient results in pulses of energy and particles transported across the Separatrix to the scrape-off-layer (SOL) and eventually to the divertor surface. ELMs could, therefore, result in cyclic thermal stresses, excessive target erosion, and consequently shorter divertor lifetime. In this study a comprehensive two-fluid model has been developed to integrate SOL parameters during ELMs with divertor surface evolution (melting, vaporization, vapor cloud dynamics, and macroscopic spallation) for different ELM parameters. Calculations were performed using the HEIGHTS numerical simulation package. Initial results indicate that high-power ELMs in ITER-like machines can cause serious damage to divertor components, may terminate plasma in disruptions, and may affect subsequent plasma operations due to extensive contamination. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 7]
机译:在下一代托卡马克中的高限制状态(H模式)的正常运行期间,边缘偏向模式(ELM)是面向偏滤器面向等离子体的组件的重要问题。边缘压力梯度的周期性松弛会导致能量脉冲和粒子穿过Separatrix传输到刮除层(SOL),最后到达偏滤器表面。因此,ELM可能导致周期性的热应力,过度的目标腐蚀,并因此缩短分压器的使用寿命。在这项研究中,已经开发了一种综合的两流体模型,以将ELM期间的SOL参数与不同ELM参数的偏滤器表面演变(熔融,汽化,蒸气云动力学和宏观剥落)相集成。使用HEIGHTS数值模拟软件包执行计算。初步结果表明,类似ITER的机器中的大功率ELM可能会严重损坏滤光片组件,可能终止等离子体中断,并可能由于广泛的污染而影响后续的等离子体操作。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:7]

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