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Performance Issues for Actuators and Internal Components During Long Pulse Operation on Tore Supra

机译:Tore Supra长脉冲操作期间执行器和内部组件的性能问题

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In a fusion device, long pulse operation adds a set of specific constraints on actuators and internal components. Some of these issues are analyzed through the 20-year experience of Tore Supra which is, to date, the largest Tokamak that is able to run long-duration discharges (hundreds of seconds). Superconducting magnet operation, RF heating and current drive, and particle fuelling issues are discussed. The impact on operation of the actively cooled environment is also assessed. Material erosion and fuel retention results showed the limits of the carbon as armor material for a fusion reactor. Real-time survey of the surface temperature of critical components integrated into the plasma control systems allows for safe operation at ITER relevant heat fluxes and accurate scenario control close to the limits.
机译:在融合设备中,长脉冲操作对执行器和内部组件增加了一组特定的约束。其中一些问题是通过Tore Supra的20年经验进行分析的,Tore Supra是迄今为止最大的Tokamak,能够进行长时间的放电(数百秒)。讨论了超导磁体的运行,RF加热和电流驱动以及颗粒加油问题。还评估了对主动冷却环境的运行的影响。材料侵蚀和燃料滞留结果表明,碳作为聚变反应堆装甲材料的局限性。实时调查集成到等离子控制系统中的关键组件的表面温度,可以在ITER相关的热通量下安全运行,并在接近极限的情况下进行精确的方案控制。

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