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Exhaust properties of centre-column-limited plasmas on MAST

机译:MAST上中心柱受限等离子体的排气特性

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The lowest aspect ratio possible in a spherical tokamak is defined by limiting the plasma on its centre column, which might therefore maximize many physics benefits of this fusion approach. A key issue for such discharges is whether loads exhausted onto the small surface area of the column remain acceptable. A first series of centre-column-limited pulses has been examined on MAST using fast infra-red thermography to infer incident power densities as neutral-beam heating was scanned from 0 to 2.5 MW. Simple mapping shows that efflux distributions on the column armour are governed mostly by magnetic geometry, which moreover spreads them advantageously over almost the whole vertical length. Hence steady peak power densities between sawteeth remained low, < 1 MWm~(-2), comparable with the target strike-point value in a reference diverted plasma at lower power. Plasma purity and normalized thermal energy confinement through the centre-column-limited (CCL) series were also similar to properties of MAST diverted cases. A major bonus of CCL geometry is a propensity for exhaust to penetrate through its inner scrape-off layer connecting to the column into an expanding outer plume, which forms a 'natural divertor'. Effectiveness of this process may even increase with plasma heating, owing to rising Shafranov shift and/or toroidal rotation. A larger CCL device could potentially offer a simpler, more economic next-step design.
机译:球形托卡马克中可能的最低长宽比是通过限制等离子体在其中心列上定义的,因此可以最大程度地利用此融合方法获得许多物理优势。此类排放的关键问题是,排出到色谱柱小面积上的负载是否仍然可以接受。在MAST上使用快速红外热成像技术检查了第一批中心柱限制脉冲,以推断中性束加热从0到2.5 MW时的入射功率密度。简单的映射显示,圆柱装甲上的外排分布主要受磁几何形状的控制,此外,磁分布有利地将其分布在几乎整个垂直长度上。因此,锯齿之间的稳定峰值功率密度保持较低,<1 MWm〜(-2),与较低功率下的参考转向等离子体中的目标打击点值相当。通过中心柱限制(CCL)系列进行的血浆纯度和归一化热能限制也与MAST分流箱的性能相似。 CCL几何形状的一个主要优点是排气易于穿过其内部刮除层(与色谱柱相连)渗透到膨胀的外部羽状流中,从而形成“自然分流器”。由于上升的Shafranov位移和/或环形旋转,随着等离子体加热,此过程的效率甚至可能提高。较大的CCL器件可能会提供更简单,更经济的下一步设计。

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