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Theoretical and numerical studies of plume flows in vacuum chambers.

机译:真空室内羽流的理论和数值研究。

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摘要

This thesis consists of three parts: a study of facility effects on the background flow in large vacuum chambers; an analytical study of free molecular flows out of exits with different shape representing thruster plumes; and particle simulations of plasma plume flows from a cluster of Hall thrusters.; The first part of this thesis discusses the facility effects on large vacuum chambers, which is quite important to the Electric Propulsion (EP) community. Based on the fact that the background flows in large vacuum chambers equipped with cryogenic pumps are free molecular, five models are proposed to study the average background pressure and flow velocity and their relation to several facility effects, such as pump sticking coefficient, pump size, wall and pump temperatures, and chamber sidewall length. The analysis are based on the mass flow rates into and out of the chamber, the fluxes along two directions and various number density relations at various stations such as chamber ends and vacuum pumps.; The second part of the thesis develops several sets of analytical solutions to free molecular flows out of exits with different shapes. It is demonstrated that the plasma plume flows expanding into vacuum can be studied analytically as a combination of several free molecular flows, if the electric field and collision effects are omitted. There exists a unique relation of velocity and positions.; The last part of the thesis presents several three-dimensional particle simulations of plasma plume flows from a cluster of Hall thrusters. A detailed electron fluid model is used to solve important electron properties such as plasma potential and electron temperature. A finite element solver is developed to solve the equations of the electron properties on unstructured meshes. Several important implementation issues are discussed and one significant finding is that the class of particle-to-node weighting schemes based on areas or volumes on an unstructured mesh is inaccurate. This problem is not obvious if the Boltzmann relation is used to determine the plasma potential: however, if the detailed electron model is used to calculate the plasma potential, especially when ionization effects are included in the simulation, then the class of allocation schemes yields invalid results. The other significant treatment that distinguishes these simulations is that background static particles representing the backpressure are assigned velocities sampled from a distribution that takes into consideration the facilities effects. (Abstract shortened by UMI.)
机译:本文共分三个部分:大型真空室中设施对背景流量的影响研究;对自由分子流出具有代表推进器羽流的不同形状的出口的分析研究;来自霍尔推力器群的等离子羽流的粒子模拟。本文的第一部分讨论了设施对大型真空室的影响,这对于电动推进(EP)社区非常重要。基于配备低温泵的大型真空室中的本底流是自由分子这一事实,提出了五个模型来研究平均本底压力和流速及其与泵粘系数,泵尺寸,壁和泵温度以及腔室侧壁长度。分析是基于流入和流出腔室的质量流率,沿两个方向的通量以及在各个位置(例如腔室末端和真空泵)处的各种数密度关系进行的。本文的第二部分开发了几套分析解决方案,以使具有不同形状的出口中的分子自由流出。结果表明,如果忽略电场和碰撞效应,可以将等离子体羽流扩展到真空中,并将其作为几种自由分子流的组合进行分析研究。速度和位置之间存在独特的关系。本文的最后一部分提出了来自霍尔推进器群的等离子羽流的三维三维粒子模拟。详细的电子流体模型用于解决重要的电子特性,例如等离子体电势和电子温度。开发了一种有限元求解器来求解非结构化网格上的电子特性方程。讨论了几个重要的实现问题,一个重要发现是基于非结构化网格上的面积或体积的粒子到节点加权方案的类型不准确。如果使用玻尔兹曼关系来确定等离子体电势,这个问题并不明显:但是,如果使用详细的电子模型来计算等离子体电势,尤其是当模拟中包括电离效应时,则分配方案的类别将无效结果。区别这些模拟的另一个重要方法是,将代表背压的背景静态粒子分配给从考虑了设施影响的分布中采样的速度。 (摘要由UMI缩短。)

著录项

  • 作者

    Cai, Chunpei.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Aerospace.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 212 p.
  • 总页数 212
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空、航天技术的研究与探索;
  • 关键词

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