首页> 外文会议>International Conference on Dense Z-Pinches >Gas Puff Radiation Performance As a Function of radial Mass Distribution
【24h】

Gas Puff Radiation Performance As a Function of radial Mass Distribution

机译:气体浮气辐射性能作为径向质量分布的函数

获取原文

摘要

The basic concept of a z-pinch, that JxB forces implode a shell of mass, creating a hot dense plasma on-axis, is coming under closer scrutiny. Wire arrays may start with an initial cold mass in a near "ideal" shell, but in fact they appear to develop complex radial mass distributions well before the final x-ray output [1,2]. We consider here the situation for gas puff z-pinches. While the ideal of a gas "shell" has been the nominal objective for many years, detailed measurements of gas flow show that nozzles used for plasma radiation sources (PRS) also have complex radial distributions. In particular, there are significant data [3] showing that the best x-ray yield comes from the least shell-like distributions. Recent experiments on the Double Eagle generator with argon have further enhanced this view [4]. For those tests with a double "shell" nozzle, there was a factor of almost 4 increase in yield when the relative mass (outer:inner) in the two shells was changed from 2:1 to less than 1:1. We suggest the following explanation. A configuration with most of its mass at large radii is subject to severe disruption by instabilities during the implosion. A more continuous radial mass distribution with dp/dr < 0 may mitigate instability development (via the "snowplow stabilization" [5] mechanism) and thus enhance the thermalization of the kinetic energy of the imploding mass. In addition, the appropriate balance of outer to inner mass maximizes the formation of a strong shock in the core of the pinch that heats the plasma and leads to x-ray emission.
机译:JXB力的基本概念,JXB力妨碍了质量,在轴上产生热密等离子体,仔细审查。电线阵列可以从近的“理想”壳体中的初始冷块开始,但实际上它们似乎在最终X射线输出之前良好地开发出复杂的径向质量分布[1,2]。我们考虑在这里燃气痘痘的情况。虽然气体“壳”的理想是多年的标称目标,但是气流的详细测量表明,用于等离子体辐射源(PRS)的喷嘴也具有复杂的径向分布。特别地,存在有关的数据[3]显示最佳的X射线产量来自最不壳种的分布。最近具有氩气的双鹰发生器的实验进一步增强了这一观点[4]。对于具有双“壳”喷嘴的测试,当两个壳中的相对质量(外部:内部)从2:1变为小于1:1时,屈服率几乎增加了4倍。我们建议以下解释。在大型线索下具有大多数质量的配置受到在爆炸期间不稳定性的严重破坏。具有DP / DR <0的更加连续的径向质量分布可以减轻不稳定的开发(通过“雪地稳定”[5]机构),从而提高爆发质量的动能的热化。此外,外部到内部质量的适当平衡最大化了在加热等离子体中加热的夹具的核心的强冲击的形成,并导致X射线发射。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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