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971.
夏风  杨旭  杨涤 《飞行力学》2008,26(1):20-23
依据美国伯克利大学对微型扑翼飞行器空气动力学的研究成果,对翼展处于10~25 mm(翼尖到翼尖)的扑翼微型飞行器的扑动模式进行了研究。设计了一种当飞行器处于悬停状态时,翼的扑动模式,使得飞行器可以通过改变扑动参数的大小来调节扑动力。仿真结果验证了设计方法的合理性。该研究为扑翼微型飞行器的飞行控制研究提供了一种手段和思路。  相似文献   
972.
随着信息化、网络化技术的不断发展,机上互连接口的数量和种类越来越多,在带来性能提升的同时也引入了安保风险,给民机安全性带来了挑战。梳理了新一代民机内部网络域、外部网络域的接口类型,总结了国际民航组织、美国联邦航空局、欧洲航空安全局等各机构针对网络安保问题的审定政策,分析机载网络安保相关的工业标准及审定要求,给出了在实际审定中的审定要素和要求。本研究可为我国民机机载系统网络的适航审定提供理论支撑。  相似文献   
973.
孙冰  王太平  刘迪  向纪鑫 《推进技术》2018,39(4):881-887
为了研究推力室内壁面与燃气间的传热特性,获得多喷嘴燃烧室内壁热载分布,从而为推力室设计及热结构分析提供参考,开展了热容燃烧室壁面热流测量方法研究。以位于距内壁一定距离位置的单点测量温度作为输入条件,文章提出了三种热流计算方法,并进行火箭发动机试验研究,得到了对应位置燃气对内壁的热流密度。可以看出,运用单点方法得到的热流密度与传统两点法结果符合较好,两者计算结果误差在10%以内。结果显示:不同点火时长工况下在同一位置相同时间点上重复性很好,在燃烧室圆柱段热流密度随着点火时长的增加而减小,而在喷管段变化规律则相反,热流密度随时间增加而增加。在提出的计算平均热流的三种方法中,热积累方法的计算结果最高,热平衡方法次之,瞬态法最低。在火箭发动机热容试验中,本文提出的方法可以用于测量燃烧室内壁面热流密度。  相似文献   
974.
前后缘型线同时可控的乘波体设计   总被引:2,自引:0,他引:2  
提出了一种前后缘型线同时可控的乘波体设计方法,在马赫数可控的外锥形曲面基准流场中,结合流线追踪技术和混合函数,实现了椭圆前缘转椭圆后缘的乘波体设计,并在设计点(Ma=6.0)和接力点(Ma=4.0)对其进行数值仿真研究。前后缘同时可控的乘波体在型面剧烈过渡处产生了较弱的激波,出口两侧存在高温高压区,后部对称面附近的激波形状由圆弧变为平直线且出口处流场基本均匀,非常有利于与进气道匹配设计。另外,该乘波体具有较高的容积率和预压缩效率,附面层修正后的容积率为0.24,设计点时乘波特性较好,接力点时前部完全乘波,具有较高的升阻比,有黏条件下设计点和接力点的升阻比分别为2.54和2.41。此外,与给定前缘的乘波体相比,其升力、阻力、俯仰力矩和出口增压比都有明显增加,但是升阻比和出口总压恢复系数有所降低,在设计点无黏升阻比由3.56降为3.00。以上研究表明,本文的设计方法可行且更加灵活,拓宽了乘波体的选择范围。  相似文献   
975.
Lauretta  D. S.  Balram-Knutson  S. S.  Beshore  E.  Boynton  W. V.  Drouet d’Aubigny  C.  DellaGiustina  D. N.  Enos  H. L.  Golish  D. R.  Hergenrother  C. W.  Howell  E. S.  Bennett  C. A.  Morton  E. T.  Nolan  M. C.  Rizk  B.  Roper  H. L.  Bartels  A. E.  Bos  B. J.  Dworkin  J. P.  Highsmith  D. E.  Lorenz  D. A.  Lim  L. F.  Mink  R.  Moreau  M. C.  Nuth  J. A.  Reuter  D. C.  Simon  A. A.  Bierhaus  E. B.  Bryan  B. H.  Ballouz  R.  Barnouin  O. S.  Binzel  R. P.  Bottke  W. F.  Hamilton  V. E.  Walsh  K. J.  Chesley  S. R.  Christensen  P. R.  Clark  B. E.  Connolly  H. C.  Crombie  M. K.  Daly  M. G.  Emery  J. P.  McCoy  T. J.  McMahon  J. W.  Scheeres  D. J.  Messenger  S.  Nakamura-Messenger  K.  Righter  K.  Sandford  S. A. 《Space Science Reviews》2017,212(1-2):925-984

In May of 2011, NASA selected the Origins, Spectral Interpretation, Resource Identification, and Security–Regolith Explorer (OSIRIS-REx) asteroid sample return mission as the third mission in the New Frontiers program. The other two New Frontiers missions are New Horizons, which explored Pluto during a flyby in July 2015 and is on its way for a flyby of Kuiper Belt object 2014 MU69 on January 1, 2019, and Juno, an orbiting mission that is studying the origin, evolution, and internal structure of Jupiter. The spacecraft departed for near-Earth asteroid (101955) Bennu aboard an United Launch Alliance Atlas V 411 evolved expendable launch vehicle at 7:05 p.m. EDT on September 8, 2016, on a seven-year journey to return samples from Bennu. The spacecraft is on an outbound-cruise trajectory that will result in a rendezvous with Bennu in November 2018. The science instruments on the spacecraft will survey Bennu to measure its physical, geological, and chemical properties, and the team will use these data to select a site on the surface to collect at least 60 g of asteroid regolith. The team will also analyze the remote-sensing data to perform a detailed study of the sample site for context, assess Bennu’s resource potential, refine estimates of its impact probability with Earth, and provide ground-truth data for the extensive astronomical data set collected on this asteroid. The spacecraft will leave Bennu in 2021 and return the sample to the Utah Test and Training Range (UTTR) on September 24, 2023.

  相似文献   
976.

A Time-Delay Integration (TDI) image acquisition and processing system has been developed to capture ICON’s Far Ultraviolet (FUV) Spectrographic Imager data. The TDI system is designed to provide variable-range motion-compensated imaging of Earth’s nightside ionospheric limb and sub-limb scenes viewed from Low Earth Orbit in the 135.6 nm emission of oxygen with an integration time of 12 seconds. As a pre-requisite of the motion compensation the TDI system is also designed to provide corrections for optical distortions generated by the FUV Imager’s optical assembly. On the dayside the TDI system is used to process 135.6 nm and 157.0 nm wavelength altitude profiles simultaneously. We present the TDI system’s design methodology and implementation as an FPGA module with an emphasis on minimization of on-board data throughput and telemetry. We also present the methods and results of testing the TDI system in simulation and with Engineering Ground Support Equipment (EGSE) to validate its performance.

  相似文献   
977.
Both heliophysics and planetary physics seek to understand the complex nature of the solar wind’s interaction with solar system obstacles like Earth’s magnetosphere, the ionospheres of Venus and Mars, and comets. Studies with this objective are frequently conducted with the help of single or multipoint in situ electromagnetic field and particle observations, guided by the predictions of both local and global numerical simulations, and placed in context by observations from far and extreme ultraviolet (FUV, EUV), hard X-ray, and energetic neutral atom imagers (ENA). Each proposed interaction mechanism (e.g., steady or transient magnetic reconnection, local or global magnetic reconnection, ion pick-up, or the Kelvin-Helmholtz instability) generates diagnostic plasma density structures. The significance of each mechanism to the overall interaction (as measured in terms of atmospheric/ionospheric loss at comets, Venus, and Mars or global magnetospheric/ionospheric convection at Earth) remains to be determined but can be evaluated on the basis of how often the density signatures that it generates are observed as a function of solar wind conditions. This paper reviews efforts to image the diagnostic plasma density structures in the soft (low energy, 0.1–2.0 keV) X-rays produced when high charge state solar wind ions exchange electrons with the exospheric neutrals surrounding solar system obstacles.The introduction notes that theory, local, and global simulations predict the characteristics of plasma boundaries such the bow shock and magnetopause (including location, density gradient, and motion) and regions such as the magnetosheath (including density and width) as a function of location, solar wind conditions, and the particular mechanism operating. In situ measurements confirm the existence of time- and spatial-dependent plasma density structures like the bow shock, magnetosheath, and magnetopause/ionopause at Venus, Mars, comets, and the Earth. However, in situ measurements rarely suffice to determine the global extent of these density structures or their global variation as a function of solar wind conditions, except in the form of empirical studies based on observations from many different times and solar wind conditions. Remote sensing observations provide global information about auroral ovals (FUV and hard X-ray), the terrestrial plasmasphere (EUV), and the terrestrial ring current (ENA). ENA instruments with low energy thresholds (\(\sim1~\mbox{keV}\)) have recently been used to obtain important information concerning the magnetosheaths of Venus, Mars, and the Earth. Recent technological developments make these magnetosheaths valuable potential targets for high-cadence wide-field-of-view soft X-ray imagers.Section 2 describes proposed dayside interaction mechanisms, including reconnection, the Kelvin-Helmholtz instability, and other processes in greater detail with an emphasis on the plasma density structures that they generate. It focuses upon the questions that remain as yet unanswered, such as the significance of each proposed interaction mode, which can be determined from its occurrence pattern as a function of location and solar wind conditions. Section 3 outlines the physics underlying the charge exchange generation of soft X-rays. Section 4 lists the background sources (helium focusing cone, planetary, and cosmic) of soft X-rays from which the charge exchange emissions generated by solar wind exchange must be distinguished. With the help of simulations employing state-of-the-art magnetohydrodynamic models for the solar wind-magnetosphere interaction, models for Earth’s exosphere, and knowledge concerning these background emissions, Sect. 5 demonstrates that boundaries and regions such as the bow shock, magnetosheath, magnetopause, and cusps can readily be identified in images of charge exchange emissions. Section 6 reviews observations by (generally narrow) field of view (FOV) astrophysical telescopes that confirm the presence of these emissions at the intensities predicted by the simulations. Section 7 describes the design of a notional wide FOV “lobster-eye” telescope capable of imaging the global interactions and shows how it might be used to extract information concerning the global interaction of the solar wind with solar system obstacles. The conclusion outlines prospects for missions employing such wide FOV imagers.  相似文献   
978.
软件体系结构的探讨   总被引:1,自引:0,他引:1  
软件体系结构是软件工程中的一个新兴研究领域,它与软件工程技术的发展有着密切的关系。首先,从软件工程技术的发展了解软件体系结构研究的必然性;然后,给出软件体系结构的概念描述,介绍有关体系结构研究的内容;最后,举出一个实例。  相似文献   
979.
陈密  房晓龙  朱荻 《航空学报》2019,40(8):422781-422781
航空航天难加工材料直纹面构件的高精度高表面完整性加工已经成为制造领域普遍关注和亟需解决的难题,电解线切割加工在高表面完整性要求加工场合上具有原理性优势。建立脉冲电流电解线切割加工模型,分析了工件厚度变化带来的影响。试验结果表明:随着工件厚度增加,电解液电阻减小,工件两端极间电压减小,加工缝宽变窄;双电层时间常数增大,脉宽时间内充电所能达到的电位降低,有效加工时间变短,平均电流密度较低;脉冲频率大于20 kHz时,最大进给速度随频率增加而快速减小,低于20 kHz时,最大加工速度差别较小。最后,采用脉冲频率20 kHz,以进给速度4 μm/s稳定加工出20 mm厚榫头/榫槽结构,表面粗糙度约为0.449 4 μm,表面质量、加工效率明显高于100 kHz加工效果。  相似文献   
980.
This paper presents an analytical solution for static analysis of thick rectangular beams with different boundary conditions.Carrera's Unified Formulation (CUF) is used in order to consider shear deformation theories of arbitrary order.The novelty of the present work is that a boundary discontinuous Fourier approach is used to consider clamped boundary conditions in the analytical solution,unlike Navier-type solutions which are restricted to simply supported beams.Governing equations are obtained by employing the principle of virtual work.The numerical accuracy of results is ascertained by studying the convergence of the solution and comparing the results to those of a 3D finite element solution.Beams subjected to bending due to a uniform pressure load and subjected to torsion due to opposite linear forces are considered.Overall,accurate results close to those of 3D finite element solutions are obtained,which can be used to validate finite element results or other approximate methods.  相似文献   
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