首页> 外文期刊>Physics of plasmas >Axial magnetic field and toroidally streaming fast ions in the dense plasma focus are natural consequences of conservation laws in the curved axisymmetric geometry of the current sheath. II. Towards a first principles theory
【24h】

Axial magnetic field and toroidally streaming fast ions in the dense plasma focus are natural consequences of conservation laws in the curved axisymmetric geometry of the current sheath. II. Towards a first principles theory

机译:轴向磁场和致密等离子体焦点中的环形流快速离子是当前护套的弯曲轴对称几何形状的保护规律的自然后果。 II。 走向第一个原则理论

获取原文
获取原文并翻译 | 示例
           

摘要

This paper continues earlier discussion [S. K. H. Auluck, Phys. Plasmas 21, 102515 (2014)] concerning the formulation of conservation laws of mass, momentum, and energy in a local curvilinear coordinate system in the dense plasma focus. This formulation makes use of the revised Gratton-Vargas snowplow model [S. K. H. Auluck, Phys. Plasmas 20, 112501 (2013)], which provides an analytically defined imaginary surface in three dimensions which resembles the experimentally determined shape of the plasma. Unit vectors along the local tangent to this surface, along the azimuth, and along the local normal define a right-handed orthogonal local curvilinear coordinate system. The simplifying assumption that physical quantities have significant variation only along the normal enables writing laws of conservation of mass, momentum, and energy in the form of effectively one-dimensional hyperbolic conservation law equations using expressions for various differential operators derived for this coordinate system. This formulation demonstrates the highly non-trivial result that the axial magnetic field and toroidally streaming fast ions, experimentally observed by multiple prestigious laboratories, are natural consequences of conservation of mass, momentum, and energy in the curved geometry of the dense plasma focus current sheath. The present paper continues the discussion in the context of a 3-region shock structure similar to the one experimentally observed: an unperturbed region followed by a hydrodynamic shock containing some current followed by a magnetic piston. Rankine-Hugoniot conditions are derived, and expressions are obtained for the specific volumes and pressures using the mass-flux between the hydrodynamic shock and the magnetic piston and current fraction in the hydrodynamic shock as unknown parameters. For the special case of a magnetic piston that remains continuously in contact with the fluid being pushed, the theory gives closed form algebraic results for the frac
机译:本文继续提前讨论[S. K. H. Auluck,Phy。关于致密等离子体焦点局部曲线坐标系中群体,动量和能量的制定的补体21,102515(2014)。该配方利用修订后的Gratton-Vargas Soilplow模型[S. K. H. Auluck,Phy。等离子体20,112501(2013)],其提供三维的分析定义的假想表面,其三维类似于等离子体的实验确定的形状。沿着局部与局部相切的单元向量,沿方位角,沿着局部正常定义右手正交的局部曲线坐标系。仅沿着正常的物理量具有显着变化的简化假设使得能够使用用于该坐标系的各种微分算子的表达式来编写物质,动量和能量的守恒定律。该配方展示了由多个着名实验室实验观察的轴向磁场和环形流媒体快速离子的高度差异结果是浓缩等离子体聚焦电流护套的弯曲几何形状中的质量,动量和能量的自然后果。本文继续在类似于实验观察到的3区域冲击结构的上下文中的讨论:不受干扰的区域,然后是含有一些电流的流体动力冲击,然后是磁性活塞。 rankine-hugoniot条件得出,使用在流体动力冲击和磁活塞之间的质量通量和流体动力冲击中的电流次数之间的质量通量作为未知参数的特定体积和压力来获得表达。对于磁性活塞的特殊情况,保持与推动的流体接触的持续接触,该理论为FRAC提供了封闭的形式代数结果

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号