ITER disruption mitigation requirements and development of gas cartridge concept

S. Maruyama, S. Putvinski, M. Sugihara, G. Kiss, R. Marrs, B. Macdonald, P. Edwards
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引用次数: 3

Abstract

ITER is designed to withstand a certain number of full scale plasma disruptions. Each disruption event induces excessive thermal loads, electromagnetic (EM) loads and runaway electrons onto the vacuum vessel and in-vessel components; the consequences of unmitigated events are extremely serious in terms of component lifetimes. This paper describes the preliminary requirements for the disruption mitigation system (DMS), possible approaches to mitigate the disruption in ITER, the schemes compatible with ITER operation and an on-going pre-conceptual study on gas cartridge DMS, which is one of the massive gas injection DMS schemes.
ITER中断缓解要求和气体筒概念的发展
ITER被设计成能够承受一定数量的全尺寸等离子体破坏。每次破坏事件都会对真空容器和容器内组件产生过多的热负荷、电磁负荷和失控的电子;就组件生命周期而言,未缓解事件的后果极其严重。本文介绍了中断缓解系统(DMS)的初步要求,减轻ITER中断的可能方法,与ITER运行兼容的方案,以及正在进行的气体筒DMS的概念前研究,这是大规模气体注入DMS方案之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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