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The ITER limiter support system with controlled position of the plasma facing modules

机译:ITER限流器支撑系统,等离子面对面模块的位置受控

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Two ITER limiters, located in two diametrically opposite equatorial ports, perform the specific functions of defining the plasma boundary and protecting other regions of the first wall and antennas from direct contact with the plasma during startup and ramp-down. The considerable thermal load in these phases (H.D. Pacher, G.W. Pacher, ITER Start-up Limiter Power Loads, INRS Energie et Materiaux, Varennes, Que., Canada, Report No. NRG-EM-00-676, February, 2001), and the expected high loads during abnormal events, call for a design using a special movable and separable part of the limiter assembly, comprising high-heat-flux components (the limiter module) that require very accurate alignment to the field contour in order to reduce the heat load peaking. Additionally, the design should allow relatively simple remote replacement and refurbishment of the module. Furthermore, uncertainties on the optimum plasma configuration require that the plasma-facing surface can be adjusted to match different plasma scenarios. An engineering design of the limiter port plug with a remotely controlled mechanical supporting and alignment system has been developed to meet all the requirements, providing safe and reliable operation with good margins. The conceptual design of 1998 with its engineering design of 2001 is considered as the current reference for ITER. The paper describes the design and layout of the system and its main components, the principles of operating and assembly.
机译:位于两个沿直径相对的赤道端口的两个ITER限制器执行特定功能,以定义等离子体边界并保护第一壁和天线的其他区域在启动和减速期间不直接与等离子体接触。在这些阶段中,相当大的热负荷(HD Pacher,GW Pacher,ITER启动限制器功率负荷,加拿大魁北克省瓦雷纳斯的INRS Energie et Materiaux,报告号NRG-EM-00-676,2001年2月),以及异常情况下预期的高负载,要求使用限制器组件的特殊可移动和可分离部件进行设计,该部件包括高通量组件(限制器模块),这些组件需要非常精确地对准磁场轮廓以减小热负荷达到峰值。此外,设计应允许相对简单的远程更换和翻新模块。此外,最佳等离子体配置的不确定性要求可以调整面向等离子体的表面以匹配不同的等离子体方案。为满足所有要求,已开发了带有遥控机械支撑和对准系统的限位器端口插头的工程设计,可提供安全可靠的操作,并具有良好的裕度。 1998年的概念设计及其2001年的工程设计被认为是ITER的当前参考。本文介绍了系统的设计和布局及其主要组件,操作和组装原理。

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