...
首页> 外文期刊>Physics of plasmas >A numerical study of geometry dependent errors in velocity, temperature, and density measurements from single grid planar retarding potential analyzers
【24h】

A numerical study of geometry dependent errors in velocity, temperature, and density measurements from single grid planar retarding potential analyzers

机译:对单网格平面延迟电势分析仪在速度,温度和密度测量中与几何相关的误差的数值研究

获取原文
获取原文并翻译 | 示例

摘要

Planar retarding potential analyzers (RPAs) have been utilized numerous times on high profile missions such as the Communications/Navigation Outage Forecast System and the Defense Meteorological Satellite Program to measure plasma composition, temperature, density, and the velocity component perpendicular to the plane of the instrument aperture. These instruments use biased grids to approximate ideal biased planes. These grids introduce perturbations in the electric potential distribution inside the instrument and when unaccounted for cause errors in the measured plasma parameters. Traditionally, the grids utilized in RPAs have been made of fine wires woven into a mesh. Previous studies on the errors caused by grids in RPAs have approximated woven grids with a truly flat grid. Using a commercial ion optics software package, errors in inferred parameters caused by both woven and flat grids are examined. A flat grid geometry shows the smallest temperature and density errors, while the double thick flat grid displays minimal errors for velocities over the temperature and velocity range used. Wire thickness along the dominant flow direction is found to be a critical design parameter in regard to errors in all three inferred plasma parameters. The results shown for each case provide valuable design guidelines for future RPA development.
机译:平面阻滞电位分析仪(RPA)已在诸如通讯/导航中断预测系统和国防气象卫星计划等高端任务中多次使用,以测量血浆成分,温度,密度和垂直于飞机平面的速度分量。仪器光圈。这些仪器使用偏置栅格来逼近理想偏置平面。这些栅格在仪器内部的电势分布中会产生干扰,如果不加以考虑,则会导致所测量的血浆参数产生误差。传统上,RPA中使用的网格由编织成网格的细金属丝制成。以前对RPA中的网格引起的误差的研究已经近似了具有真正平坦网格的编织网格。使用商业离子光学软件包,可以检查由编织网格和平面网格导致的推断参数错误。平面网格的几何形状显示出最小的温度和密度误差,而双层厚度的平面网格显示在所使用的温度和速度范围内的速度误差最小。就所有三个推断的等离子体参数中的误差而言,沿着主要流动方向的导线厚度被认为是一个关键的设计参数。针对每种情况显示的结果为将来的RPA开发提供了有价值的设计指南。

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