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Shattered pellet injection technology design and characterization for disruption mitigation experiments

机译:破碎颗粒注射技术的设计和表征,用于缓解干扰的实验

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The technology to form and shoot high-Z cryogenic solid pellets mixed with deuterium using a gas gun that are shattered upon injection into a plasma has been developed at Oak Ridge National Laboratory for mitigating disruptions. This technology has been selected as the basis for the baseline disruption mitigation system on ITER. The development of shattered pellet injection systems has progressed to be able to accelerate large pellets of pure argon and neon with or without including deuterium. Impact studies have been carried out at shallow angles to determine funnel performance in guiding pellets from multiple barrels into a common injection line and across pumping breaks. The characterization of the shattered spray has also progressed with fragment size measurements as a function of pellet speed showing a strong inverse relationship. Results of these studies are reported with implications for applications on existing and future tokamak devices.
机译:橡树岭国家实验室已开发出使用气枪形成和射击与氘混合的高Z低温固体颗粒并与氘混合的技术,该技术在注入等离子体后会破碎,以减轻干扰。该技术已被选为ITER基线缓解系统的基础。破碎丸粒注射系统的开发已经取得进展,能够在有或没有氘的情况下加速纯氩和氖气的大丸粒的生长。已经在较浅的角度进行了冲击研究,以确定漏斗性能,这些漏斗性能可将颗粒从多个桶中引导到一条共用的注入管线中,并贯穿整个泵送中断时间。破碎的喷雾的表征也随着碎片尺寸的测量而进行,该测量是颗粒速度的函数,显示出很强的反比关系。据报道,这些研究的结果对现有和未来的托卡马克装置的应用产生了影响。

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