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首页> 外文期刊>Microgravity science and technology >The Role of Gravity in the Motion of Plasma Arcs inside 'Plasma Balls': An Investigation in the NASA Reduced Gravity Student Flight Opportunities Program
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The Role of Gravity in the Motion of Plasma Arcs inside 'Plasma Balls': An Investigation in the NASA Reduced Gravity Student Flight Opportunities Program

机译:重力在“等离子球”内部等离子弧运动中的作用:对NASA降低重力的学生飞行机会计划的调查

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摘要

We present results of an investigation performed by undergraduates as part of the NASA Reduced Gravity Student Flight Opportunities Program. The goal was to determine the importance of buoyancy-driven convection on the motion of plasma streamers in commercially available 'plasma balls.' The motion of the plasma streamers was studied as a function of acceleration level provided by drop experiments and parabolic flights on NASA's KC-135. We determined that there were more than two contributing factors to the motion of plasma arcs: buoyancy-driven convection and magnetic fields from the Tesla coil that generated the high voltage in the plasma ball. When the plasma ball was isolated from the Tesla coil, the streamer velocities were higher. The velocities were nonzero at zero acceleration level and increased with increasing acceleration level. The nonzero velocity at zero acceleration could be the result of residual acceleration in the KC-135 or more likely an intrinsic aspect of this system.
机译:我们介绍了作为NASA降低重力学生飞行机会计划一部分的本科生的调查结果。目的是确定浮力驱动的对流对市售“等离子球”中等离子流的运动的重要性。研究了等离子拖缆的运动与NASA KC-135上的跌落实验和抛物线飞行所提供的加速度水平的关系。我们确定等离子弧运动有两个以上的影响因素:浮力驱动的对流和特斯拉线圈产生的等离子球中高电压的磁场。当等离子球与特斯拉线圈隔离时,拖缆速度会更高。在零加速水平下,速度为非零,并且随着加速水平的增加而增加。零加速度下的非零速度可能是KC-135中残余加速度的结果,或者更可能是该系统的固有方面。

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