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ELM frequency enhancement and discharge modification through lithium granule injection into EAST H-modes

机译:通过将锂颗粒注入EAST H模式提高ELM频率并改善放电

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The injection of impurity granules into fusion research discharges can serve as a catalyst for ELM events. For sufficiently low ELM frequencies, and granule sizes above a threshold, this can result in full control of the ELM cycle, referred to as ELM pacing. For this research, we extend the investigation to conditions where the natural ELM frequency is too high for ELM pacing to be realized. Utilizing multiple sizes of lithium granules and classifying their effects by granule size, we demonstrate that ELM mitigation through frequency multiplication can be used at ELM triggering rates that nominally make ELM pacing unrealizable. We find that above a size threshold, injected granules promptly trigger ELMs and commensurately enhance the ELM frequency. Below this threshold size, injection of an individual granule does not always lead to the prompt triggering of an ELM; however, collective ablation in the edge pedestal region does enhance the ELM frequency. Specifically, Li granules too small to individually trigger ELMs were injected into EAST H-mode discharges at frequencies up to 2.3 kHz; collectively the granules were observed to enhance the natural ELM frequency up to 620 Hz, resulting in a similar to 2.4 x multiplication of the natural ELM frequency and a 50% decrease of the ELM size.
机译:将杂质颗粒注入聚变研究放电中可作为ELM事件的催化剂。对于足够低的ELM频率以及颗粒大小超过阈值的情况,这可以导致对ELM周期的完全控制,称为ELM起搏。对于本研究,我们将研究扩展到自然ELM频率过高而无法实现ELM起搏的条件。利用多种尺寸的锂颗粒并将其影响按颗粒大小分类,我们证明通过倍频进行ELM缓解可在ELM触发速率下使用,名义上使ELM起搏无法实现。我们发现,在大小阈值以上,注射的颗粒会立即触发ELM,并相应地提高ELM频率。低于此阈值大小,单个颗粒的注射并不总是导致ELM的迅速触发。但是,边缘基座区域的集体切除确实会提高ELM频率。具体而言,将太小而无法单独触发ELM的Li颗粒以高达2.3 kHz的频率注入到EAST H模式放电中。总的来说,观察到颗粒将天然ELM频率提高到620 Hz,从而导致天然ELM频率的2.4倍相乘,并且ELM尺寸减小了50%。

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