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Comparison of an Electrothermal Plasma Source to a Light Gas Gun for Launching Large Cryogenic Pellets for Tokamak Disruption Mitigation

机译:比较电热等离子体源与轻型气枪发射大型深冷颗粒以降低托卡马克中断的能力。

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Future large tokamaks, such as ITER, will require a reliable technique for rapid energy dissipation to mitigate harmful effects from disruptions. Two main methods developed for disruption mitigation are massive gas injection and shattered pellet injection (SPI). Argon and neon are favorable materials for both injection methods. When launching pellets with SPI, it has proven difficult to launch intact pellets of pure argon and/or neon owing to their high material strength at cryogenic temperatures. In this work, we compare two methods of launching relatively high-Z pellets. An electrothermal plasma source is an experimental alternative to the fast opening, high-pressure, gas valve. The electrothermal source was used to launch Lexan (TM) pellets with approximately the same size and mass of comparable mixed gas (D-2 and Ne) cryogenic pellets launched by gas guns. We describe comparisons of achieved pellet velocities, energy efficiencies of each system, and the implications of implementing each respective method on an operating tokamak.
机译:未来的大型托卡马克(如ITER)将需要一种可靠的技术来快速耗能,以减轻干扰造成的有害影响。为缓解干扰而开发的两种主要方法是大量气体注入和破碎颗粒注入(SPI)。氩气和氖气是两种注入方法的有利材料。当使用SPI发射小球时,由于其在低温下的高材料强度,事实证明难以发射完整的纯氩气和/或氖气小球。在这项工作中,我们比较了发射相对较高Z的颗粒的两种方法。电热等离子体源是快速打开高压燃气阀的实验替代品。电热源用于发射Lexan(TM)粒料,其尺寸和质量与通过气枪发射的可比混合气体(D-2和Ne)低温粒料大致相同。我们描述了获得的颗粒速度,每个系统的能量效率以及在运行的托卡马克上实施每种方法的含义的比较。

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