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SSX MHD plasma wind tunnel

机译:SSX MHD等离子风洞

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A new turbulent plasma source at the Swarthmore Spheromak Experiment (SSX) facility is described. The MHD wind tunnel configuration employs a magnetized plasma gun to inject high-beta plasma into a large, well-instrumented, vacuum drift region. This provides unique laboratory conditions approaching that in the solar wind: there is no applied background magnetic field in the drift region and has no net axial magnetic flux; the plasma flow speed is on the order of the local sound speed (M similar to 1), so flow energy density is comparable to thermal energy density; and the ratio of thermal to magnetic pressure is of order unity (plasma beta similar to 1) so thermal energy density is also comparable to magnetic energy density. Results presented here and referenced within demonstrate the new capabilities and show how the new platform is proving useful for fundamental plasma turbulence studies.
机译:在Swarthmore Spheromak实验(SSX)设施中描述了一种新的湍流等离子体源。 MHD风洞配置采用磁化等离子体枪将高β等离子体注入大型,仪器齐全的真空漂移区域。这提供了接近太阳风的独特实验室条件:在漂移区内没有施加的背景磁场,也没有净轴向磁通量;等离子体的流速约为局部声速(M近似于1),因此流能密度可与热能密度相媲美。并且热压与磁压之比为1阶(等离子体beta类似于1),因此热能密度也可与磁能密度相媲美。此处介绍并在其中引用的结果证明了该新功能,并证明了该新平台如何证明对基本等离子体湍流研究有用。

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