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141.
关于人造地球卫星的冻结轨道问题早已为人们所熟知,而且已有相应的卫星在轨运行。在考虑该冻结轨道形成时,主要依据地球扁率J3项与J2项的相对关系,这是由地球非球形引力场的特征所决定的,原理十分清楚,但其原理和结论不能随意地用于其他大行星(或月球)的轨道器。在一般情况下,对于低轨卫星形成冻结轨道的条件,非球形引力位中的奇次带谐项(J21 1,l≥1)将起重要作用。不仅仅是一个J3项,例如月球轨道器,J3,J5,J7和J9均有不可忽视的影响,而且与轨道倾角有一定的关系。为此,本文根据轨道理论对冻结轨道的存在性及其有关问题作进一步的分析,给将来的深空探测提供轨道设计的有关信息和依据。  相似文献   
142.
一种新颖的瞬时浮点放大器   总被引:2,自引:0,他引:2  
介绍了瞬时浮点放大器的原理及构成,并给出一种结构新的具有256阶的瞬时浮点放大器,可有效地提高数据采集系统的测量范围。  相似文献   
143.
This instrument is designed to make measurements of the full three-dimensional distribution of suprathermal electrons and ions from solar wind plasma to low energy cosmic rays, with high sensitivity, wide dynamic range, good energy and angular resolution, and high time resolution. The primary scientific goals are to explore the suprathermal particle population between the solar wind and low energy cosmic rays, to study particle accleration and transport and wave-particle interactions, and to monitor particle input to and output from the Earth's magnetosphere.Three arrays, each consisting of a pair of double-ended semi-conductor telescopes each with two or three closely sandwiched passivated ion implanted silicon detectors, measure electrons and ions above 20 keV. One side of each telescope is covered with a thin foil which absorbs ions below 400 keV, while on the other side the incoming <400 keV electrons are swept away by a magnet so electrons and ions are cleanly separated. Higher energy electrons (up to 1 MeV) and ions (up to 11 MeV) are identified by the two double-ended telescopes which have a third detector. The telescopes provide energy resolution of E/E0.3 and angular resolution of 22.5°×36°, and full 4 steradian coverage in one spin (3 s).Top-hat symmetrical spherical section electrostatic analyzers with microchannel plate detectors are used to measure ions and electrons from 3 eV to 30 keV. All these analyzers have either 180° or 360° fields of view in a plane, E/E0.2, and angular resolution varying from 5.6° (near the ecliptic) to 22.5°. Full 4 steradian coverage can be obtained in one-half or one spin. A large and a small geometric factor analyzer measure ions over the wide flux range from quiet-time suprathermal levels to intense solar wind fluxes. Similarly two analyzers are used to cover the wide range of electron fluxes. Moments of the electron and ion distributions are computed on board.In addition, a Fast Particle Correlator combines electron data from the high sensitivity electron analyzer with plasma wave data from the WAVE experiment (Bougeretet al., in this volume) to study wave-particle interactions on fast time scales. The large geometric factor electron analyzer has electrostatic deflectors to steer the field of view and follow the magnetic field to enhance the correlation measurements.  相似文献   
144.
The problem of locating a reference image within a larger image using a correlation technique is discussed. Although the particular application discussed is that of locating a reference image obtained from one video sensor or a photograph, within the larger field of view obtained from a second video sensor in real time (i.e., at the TV field rate), the results are general and useful for a number of applications. The tradeoffs necessary to obtain real time correlat are discussed and their effect on correlation accuracy is given.  相似文献   
145.
本文利用半固态搅拌铸造法制备了SiCp/ZL101复合材料,对其组织和某些性能进行了研究,结果表明:SiCp在基体中分布均匀,无严重团聚现象,与基体结合良好,与基体合金相比,耐磨性,硬度有显著提高。  相似文献   
146.
本文根据微波网络理论,提出了利用A参量求解高频阻抗的新方法,详细介绍了如何将该方法用于网络分析仪系统测量高频阻抗,并将其测试结果与美国惠普公司生产的专用高频阻抗分析仪HP4191A及该公司最新展出的频谱、网络、阻抗分析仪HP4195A的测试结果作了比较,实践证明,该方法与传统的S参量法相比,大大拓宽了阻抗测量范围,提高了测量精度(能自动地消除联接电缆的影响),且适用于被测件的同轴联接及非同轴联接。此方法对利用各种网络分析仪实现高阻测量具有普遍意义。  相似文献   
147.
直升机滑油换热器的结构优化设计   总被引:4,自引:1,他引:4  
在直升机肋管式滑油换热器的初步热力性能设计计算基础上,应用数值优化原理,对滑油换热器结构的优化设计进行了研究,建立了结构优化程序.该程序以滑油换热器的重量为目标函数,采用正弦法去约束并结合单纯形加速法寻优.实例计算表明,将滑油换热器的热力性能计算程序同结构优化程序结合起来,可以建立自动匹配的换热器设计及优化程序系统.应用该软件,输入设计要求,就可获得既满足性能要求,且重量最轻的肋管式滑油换热器.该软件可推广应用于各种类型肋管式换热器.  相似文献   
148.
Future space missions aiming at the accurate measurement of cold plasmas and DC to very low frequency electric fields will require that the potential of their conductive surfaces be actively controlled to be near the ambient plasma potential. In the near-Earth space these spacecraft are usually solar-cell powered; consequently, parts of their surface are most of the time exposed to solar photons. Outside the plasmasphere, a positive surface potential due the dominance of surface-emitted photoelectrons over ambient plasma electrons is to be expected. Photo- and ambient electrons largely determine the potential and positive values between a few Volts up to 100 V have been observed. Active ion emission is the obvious solution of this problem. A liquid metal ion emitter and a saddle field ion emitter are nearing the stage of flight unit fabrication. We will attempt to clamp the spacecraft potential to values close to the plasma potential. We present first results from vacuum chamber tests and describe the emission behaviour and characteristics of emitters producing, respectively, In+ and N2+ beams with an energy of ≥ 5 keV.  相似文献   
149.
The northward and southward orientation of the interplanetary magnetic field (IMF) is usually considered as providing the external boundary conditions in the solar wind interaction with the Earth's magnetopause but it is the magnetic field in the magnetosheath that interacts with the Earth's magnetic field. In this paper, we consider the possibility that the wave activity in the foreshock region may affect the magnetic field orientation in the magnetosheath with time scales that might be geomagnetically effective. If magnetosheath magnetic field becomes disturbed on plasma streamlines which are connected to the quasi-parallel bow shock and foreshock, the magnetic field orientation on the inner magnetosheath may differ significantly from the undisturbed IMF. We present a model of dayside reconnection which may occur when the IMF northward and illustrate its effects on the erosion of the magnetopause.  相似文献   
150.
After initial emphasis on large-scale baseline crop tests, the Kennedy Space Center (KSC) Breadboard project has begun to evaluate long-term operation of the biomass production system with increasing material closure. Our goal is to define the minimum biological processing necessary to make waste streams compatible with plant growth in hydroponic systems, thereby recycling nutrients into plant biomass and recovering water via atmospheric condensate. Initial small and intermediate-scale studies focused on the recycling of nutrients contained in inedible plant biomass. Studies conducted between 1989-1992 indicated that the majority of nutrients could be rapidly solubilized in water, but the direct use of this crop "leachate" was deleterious to plant growth due to the presence of soluble organic compounds. Subsequent studies at both the intermediate scale and in the large-scale Biomass Production Chamber (BPC) have indicated that aerobic microbiological processing of crop residue prior to incorporation into recirculating hydroponic solutions eliminated any phytotoxic effect, even when the majority of the plant nutrient demand was provided from recycled biomass during long term studies (i.e. up to 418 days). Current and future studies are focused on optimizing biological processing of both plant and human waste streams.  相似文献   
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