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Divertor concept for the W7-X stellarator and mode of operation

机译:W7-X恒星机的转向器概念和操作模式

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A favourable property of the stellarator concept is the potential of stationary operation within a magnetic configuration maintained by a superconducting coil system. For proof of principle the stellarator Wendelstein 7-X is presently under construction at Greifswald, Germany, and the start of operation is planned for 2007. The magnetic configuration of the confinement is a non-axisymetric three-dimensional configuration with a helix-like magnetic axis and five identical magnetic field periods. As a first-step divertor design, an open divertor structure has been chosen, which benefits from the inherent divertor property of the magnetic configuration. The system will allow an effective particle and energy exhaust for a wide range of plasma and magnetic parameters. Experimental tools, e.g. localized heating, various heating schemas, gas feed and pellet injection, impurity doping and variation of the pumping speed together with appropriate diagnostics are provided. The purpose is to investigate different modes of operation for the divertor system and to evaluate an extended database for further improvement of the divertor. The main heating method will be 140 GHz ECR as a cw heat source of 10 MW. Additional heating schemes are ICRF and NBI. [References: 18]
机译:恒星器概念的一个有利属性是在超导线圈系统保持的磁性配置下进行稳定运行的潜力。为证明原理,目前在德国格赖夫斯瓦尔德正在建造恒星器Wendelstein 7-X,并计划于2007年开始运行。禁闭区的磁结构是非轴心三维结构,具有类似螺旋的磁场轴和五个相同的磁场周期。作为第一步分流器设计,已选择了开放的分流器结构,该结构得益于磁性配置的固有分流器特性。该系统将为各种等离子体和磁性参数提供有效的颗粒和能量排放。实验工具,例如提供局部加热,各种加热模式,气体进料和颗粒注入,杂质掺杂和泵速变化以及适当的诊断。目的是研究偏滤器系统的不同操作模式,并评估扩展数据库以进一步改进偏滤器。主要加热方法将是140 GHz ECR作为10 MW的连续热源。其他加热方案是ICRF和NBI。 [参考:18]

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