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1.
Gradual solar energetic particle (SEP) events are evidently accelerated by coronal/interplanetary shocks driven by coronal mass ejections. This talk addresses the different factors which determine the composition of the accelerated ions. The first factor is the set of available seed populations including the solar wind core and suprathermal tail, remnant impulsive events from preceding solar flares, and remnant gradual events. The second factor is the fractionation of the seed ions by the injection process, that is, what fraction of the ions are extracted by the shock to participate in diffusive shock acceleration. Injection is a controversial topic since it depends on the detailed electromagnetic structure of the shock transition and the transport of ions in these structured fields, both of which are not well understood or determined theoretically. The third factor is fractionation during the acceleration process, due to the dependence of ion transport in the turbulent electromagnetic fields adjacent to the shock on the mass/charge ratio. Of crucial importance in the last two factors is the magnetic obliquity of the shock. The form of the proton-excited hydromagnetic wave spectrum is also important. Finally, more subtle effects on ion composition arise from the superposition of ion contributions over the time history of the shock along the observer’s magnetic flux tube, and the sequence of flux tubes sampled by the observer.  相似文献   
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 离子注入抑制摩擦表面的温升,是减少粘着磨损、提高摩擦副耐磨性的新途径。本文采用离子注入技术抑制航空柱塞泵配流副试件摩擦表面的温升,获得显著的效果。当逐级改变负载时,离子注入试件摩擦表面的温度平均下降35℃;当逐级改变润滑油流率时,试件表面温度平均下降46℃。并初步探讨了离子注入抑制摩擦温升的机理。  相似文献   
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宋莹莹  王蒙  顾左  孔令轩 《推进技术》2019,40(7):1668-1675
目前Kaufman离子推力器主要有两种最具代表性的配电方式:屏栅极电源正端分别连接阳极电源正、负端的配电方式。为了研究配电方式对Kaufman离子推力器工作性能的影响,基于等离子体理论和推力器工作原理,分析两种主要配电方式下放电室电极电势及电流平衡关系,推导了放电室等离子体特性表达式,理论分析了配电方式对离子推力器多种性能参数的影响。结合兰州空间技术物理研究所自研的LIPS300离子推力器在两种配电方式下工作在3kW和5kW的性能试验,通过解析方法对离子推力器多种工作参数和性能参数进行分析,试验结果与理论分析结果具有良好的一致性。研究表明:采用屏栅极电源正端连接阳极电源负端的配电方式能够获得更大的推力和比冲,并能提高离子对栅极透明度,减少离子对屏栅极的溅射,从而提高栅极寿命,但束离子产生成本稍高。研究结果可为离子推力器配电方式的设计与优化提供依据。  相似文献   
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非重力阻尼的连续、快速、高精度补偿是实现重力梯度测量卫星精细重力场测量的关键技术之一,直接影响到整星工程任务的成败。针对重力梯度测量卫星在轨飞行期间对电推进系统宽范围连续变推力能力的应用需求,分析了10cm氙离子推力器推力调节响应特性。在此基础上,通过对阳极电流、励磁电流和阳极流率等推力高敏感响应参量的组合调节,开展了推力调节试验研究,验证了10cm氙离子推力器宽范围连续变推力调节能力,获得了1~20mN范围内的推力调节性能及其变化规律。试验结果表明:在采用地面供电、供气设备条件下,10cm氙离子推力器能够在100~597W的功率范围内实现0.98~20.29mN的推力宽范围调节,比冲175~3500s,推力分辨率优于50μN。研究为建立10cm氙离子电推进系统的推力控制数学模型及调节控制算法奠定基础。  相似文献   
6.
为了实现离子推力器多模式化,分析了离子推力器功率宽范围调节限制因素,提出了两种宽范围调节策略;针对我国小行星探测任务,完成了30cm多模式离子推力器研制、功率宽范围调节限制条件确定、以及两种调节策略下多模式工作点设计及对比研究。结果显示,通过降低放电室磁场强度可延伸离子推力器最小稳定工作功率,提高束流均匀性,实现离子推力器更宽功率范围多工作点设计;功率宽范围调节主要是屏栅电压和束电流的宽范围调节,二者通过栅极导流系数限制和交叉限制而约束;推力随功率增加呈线性增加关系,比冲随功率的增加总体上呈先快速增加后趋于稳定的趋势;30cm多模式离子推力器在0.25kW~5kW内稳定工作,推力10mN~186mN,比冲1522s~3586s。  相似文献   
7.
We present a novel instrument concept to measure the energy and mass spectra of ions incident on the lunar surface, based on the E-parallel–B or Thomson-parabola device used extensively as a diagnostic in the plasma fusion community. The Apollo-era Suprathermal Ion Detector Experiment (SIDE) was the first instrument package to perform in-situ measurements of ions incident on the lunar surface. The ions can originate from a variety of sources, including the solar wind, the Earth’s magnetotail, and photoionization of the thin lunar atmosphere. The species and energy distribution of ions arriving at the lunar surface depend in a complicated and poorly-understood fashion on the phase of the lunar day, the position of the Moon with respect to the Earth, and on the local plasma environment.  相似文献   
8.
Ion optics are crucial components of ion thrusters and the study of the different ion extraction solutions used since the beginning of the electric propulsion era is essential to understand the evolution of ion engines. This work describes ion engine grids' main functions, parameters and issues related to thermal expansion and sputter erosion, and then introduces a review of ion optics used for significant launched and tested ion thrusters since 1970. Configurations, geometries, materials and fabrication methods are analyzed to understand when typical ion thrusters use two or three grids, what are the thicknesses and aperture sizes of the screen, accelerator and decelerator grids, why molybdenum and carbon-based materials such as pyrolytic graphite and carbon–carbon are the best available options for ion optics and what is the manufacturing method for each material.  相似文献   
9.
We study the structure and kinetic properties of slow-mode shocks near the plasma sheet boundary layer (PSBL) associated with magnetic reconnection by Cluster observation. The presence of slow-mode shocks is confirmed by traditional Rankine–Hugoniot (RH) analysis and Monte-Carlo shock fitting method. The Walén analysis, applied to the tailward flow associated with slow-mode shocks, also supports that plasma was accelerated across a Petschek-type slow-mode shock connected to the diffusion region. Back-streaming ions were observed on the shock layer, and cold ions were accelerated and heated by slow-mode shocks. In addition, whistler and electrostatic solitary waves were observed around the slow-mode shocks. These waves might be excited by the observed field-aligned electron beams near the shocks.  相似文献   
10.
The transport processes of plasmas in grid systems of krypton (Kr) ion thrusters at different acceleration voltages were simulated with a 3D-PIC model, and the result was compared with xenon (Xe) ion thrusters. The variation of the screen grid transparency, the accelerator grid current ratio and the divergence loss were explored. It is found that the screen grid transparency increases with the acceleration voltage and decreases with the beam current, while the accelerator grid current ratio and divergence loss decrease first and then increase with the beam current. This result is the same with Xe ion thrusters. Simulation results also show that Kr ion thrusters have more advantages than Xe ion thrusters, such as higher screen grid transparency, smaller accelerator grid current ratio, larger cut-off current threshold, and better divergence loss characteristic. These advantages mean that Kr ion thrusters have the ability of operating in a wide range of current. Through comprehensive analyses, it can be concluded that using Kr as propellant is very suitable for a multi-mode ion thruster design.  相似文献   
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