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Particle control and plasma performance in the Lithium Tokamak eXperiment

机译:托卡马克锂电池的颗粒控制和等离子体性能

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摘要

The Lithium Tokamak eXperiment is a small, low aspect ratio tokamak [Majeski, Nucl. Fusion 49, 055014 (2009)], which is fitted with a stainless steel-clad copper liner, conformal to the last closed flux surface. The liner can be heated to 350 °C. Several gas fueling systems, including supersonic gas injection and molecular cluster injection, have been studied and produce fueling efficiencies up to 35%. Discharges are strongly affected by wall conditioning. Discharges without lithium wall coatings are limited to plasma currents of order 10 kA, and discharge durations of order 5 ms. With solid lithium coatings discharge currents exceed 70 kA, and discharge durations exceed 30 ms. Heating the lithium wall coating, however, results in a prompt degradation of the discharge, at the melting point of lithium. These results suggest that the simplest approach to implementing liquid lithium walls in a tokamak - thin, evaporated, liquefied coatings of lithium - does not produce an adequately clean surface.
机译:托卡马克锂电池是一种小型,低纵横比的托卡马克[Majeski,Nucl。 [Fusion 49,055014(2009)],它装有一个不锈钢包层的铜衬套,与最后一个封闭的助焊剂表面保形。衬里可以加热到350°C。已经研究了几种气体供油系统,包括超音速气体注入和分子簇注入,其产生的燃料效率高达35%。墙壁调节会严重影响放电。无锂壁涂层的放电限于等离子电流10 kA,放电持续时间为5 ms。使用固态锂涂层时,放电电流超过70 kA,放电时间超过30 ms。然而,加热锂壁涂层在锂的熔点下导致放电的迅速降解。这些结果表明,在托卡马克中实施液态锂壁的最简单方法-薄的,蒸发的液化锂涂层-无法产生足够清洁的表面。

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