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51.
以某型机底部蒙皮结构件中的铝基低密度和纸基蜂窝为例,阐述了蜂窝结构件数控加工中的机床选择、装夹定位方案、切削刀具选择、编程方法、切削参数选择以及加工过程中的产品保护等内容.  相似文献   
52.
热空腔-喷气流的组合辐射   总被引:7,自引:9,他引:7  
徐南荣  朱谷君 《航空动力学报》1995,10(3):295-298,315
讨论了热空腔(喷气发动机的加力筒)和喷气流的组合辐射问题, 推演了组合辐射的辐射传输微分方程, 导出了有边界辐射条件下的解。讨论了由多个温度不同的壁面组成且腔内充满高温燃气的热空腔辐射传输方程解的具体形式, 导出了它向后半球的光谱辐射强度的表达式;同时还推导了热空腔-喷气流组合辐射的光谱辐射强度的表达式。最后给出算例, 算例结果表明, 热空腔-喷气流组合辐射的空间分布具有与实测分布较一致的梨形包络, 其光谱分布也与实测的光谱分布的一致性较好。   相似文献   
53.
通过对气体注入压力激励法测量卫星液体推进剂剩余量系统的详细热力学过程分析,建立了能满足实际测量需求的等温和绝热两种热力学模型,对具体测量模型的选用及相关问题进行了分析。  相似文献   
54.
In July 2016, NASA’s Juno mission becomes the first spacecraft to enter polar orbit of Jupiter and venture deep into unexplored polar territories of the magnetosphere. Focusing on these polar regions, we review current understanding of the structure and dynamics of the magnetosphere and summarize the outstanding issues. The Juno mission profile involves (a) a several-week approach from the dawn side of Jupiter’s magnetosphere, with an orbit-insertion maneuver on July 6, 2016; (b) a 107-day capture orbit, also on the dawn flank; and (c) a series of thirty 11-day science orbits with the spacecraft flying over Jupiter’s poles and ducking under the radiation belts. We show how Juno’s view of the magnetosphere evolves over the year of science orbits. The Juno spacecraft carries a range of instruments that take particles and fields measurements, remote sensing observations of auroral emissions at UV, visible, IR and radio wavelengths, and detect microwave emission from Jupiter’s radiation belts. We summarize how these Juno measurements address issues of auroral processes, microphysical plasma physics, ionosphere-magnetosphere and satellite-magnetosphere coupling, sources and sinks of plasma, the radiation belts, and the dynamics of the outer magnetosphere. To reach Jupiter, the Juno spacecraft passed close to the Earth on October 9, 2013, gaining the necessary energy to get to Jupiter. The Earth flyby provided an opportunity to test Juno’s instrumentation as well as take scientific data in the terrestrial magnetosphere, in conjunction with ground-based and Earth-orbiting assets.  相似文献   
55.
At present, the Institute of Nuclear Physics of Moscow State University, in cooperation with other organizations, is preparing space experiments onboard the Lomonosov satellite. The main goal of this mission is to study extreme astrophysical phenomena such as cosmic gamma-ray bursts and ultra-high-energy cosmic rays. These phenomena are associated with the processes occurring in the early universe in very distant astrophysical objects, therefore, they can provide information on the first stages of the evolution of the universe. This paper considers the main characteristics of the scientific equipment aboard the Lomonosov satellite.  相似文献   
56.
在电子战对导弹防空系统性能影响的研究过程中,运用信息作战原理,构造基于概率的导弹防空系统性能评估模型,通过信息与火力分析平台获取电子战影响的仿真数据,对舰载导弹防空系统的信息与火力联合打击能力进行评估,初步的评估结果表明:信息和火力对打击能力的影响分别为61%和39%,信息因素比火力因素更为重要.  相似文献   
57.
The Mars Science Laboratory (MSL) has an instrument package capable of making measurements of past and present environmental conditions. The data generated may tell us if Mars is, or ever was, able to support life. However, the knowledge of Mars' past history and the geological processes most likely to preserve a record of that history remain sparse and, in some instances, ambiguous. Physical, chemical, and geological processes relevant to biosignature preservation on Earth, especially under conditions early in its history when microbial life predominated, are also imperfectly known. Here, we present the report of a working group chartered by the Co-Chairs of NASA's MSL Project Science Group, John P. Grotzinger and Michael A. Meyer, to review and evaluate potential for biosignature formation and preservation on Mars. Orbital images confirm that layered rocks achieved kilometer-scale thicknesses in some regions of ancient Mars. Clearly, interplays of sedimentation and erosional processes govern present-day exposures, and our understanding of these processes is incomplete. MSL can document and evaluate patterns of stratigraphic development as well as the sources of layered materials and their subsequent diagenesis. It can also document other potential biosignature repositories such as hydrothermal environments. These capabilities offer an unprecedented opportunity to decipher key aspects of the environmental evolution of Mars' early surface and aspects of the diagenetic processes that have operated since that time. Considering the MSL instrument payload package, we identified the following classes of biosignatures as within the MSL detection window: organism morphologies (cells, body fossils, casts), biofabrics (including microbial mats), diagnostic organic molecules, isotopic signatures, evidence of biomineralization and bioalteration, spatial patterns in chemistry, and biogenic gases. Of these, biogenic organic molecules and biogenic atmospheric gases are considered the most definitive and most readily detectable by MSL.  相似文献   
58.
The basic ideas to model the large solar flares are reviewed and illustrated. Some fundamental properties of potential and non-potential fields in the solar atmosphere are recalled. In particular, we consider a classification of the non-potential fields or, more exactly, related electric currents, including reconnecting current layers. The so-called ‘rainbow reconnection’ model is presented with its properties and predictions. This model allows us to understand main features of large flares in terms of reconnection. We assume that in the two-ribbon flares, like the Bastille-day flare, the magnetic separatrices are involved in a large-scale shear photospheric flow in the presence of reconnecting current layers generated by a converging flow.  相似文献   
59.
基于有限单元法,运用ANSYS商业软件包建立了7850铝合金直接水冷法半连续铸造过程的数值模型.根据现场铸造试验采集的温度数据,利用反算法确定了铸造过程的边界冷却条件.比较了数值模拟与试验结果的铸造温度场演化过程,以及稳定铸造阶段液穴深度的结果,证实数学模型与实验结果吻合较好.基于已证实合理的数值模型,研究了铸造过程刮水板的位置对铸锭温度场的影响.研究表明,该数值模型可以较好地模拟铝合金半连续铸造过程;刮水板会降低铸锭的冷却速度,导致铸锭表面温度出现回升的现象;刮水板的位置对铸锭冷却过程的温度场有显著影响.  相似文献   
60.
Feasibility studies on a multiband communication satellite antenna system and the key technologies involved in devising this system are described. The proposed multiband communication satellite utilizes four frequency bands: Ka (30/20 GHz), Ku (14/12 GHz), C (6/4 GHz), and S (2.6/2.5 GHz). It has six beam configurations, three multibeam and three shaped-beam. The following key technologies are presented: (1) a low-loss frequency selective subreflector (FSR) for compact feeds, (2) a low-loss and broadband frequency selective surface (FSS), and (3) a highly accurate and reliable mesh reflector  相似文献   
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