首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   349篇
  免费   8篇
  国内免费   46篇
航空   134篇
航天技术   231篇
综合类   23篇
航天   15篇
  2023年   11篇
  2022年   4篇
  2021年   14篇
  2020年   13篇
  2019年   16篇
  2018年   17篇
  2017年   3篇
  2016年   5篇
  2015年   7篇
  2014年   15篇
  2013年   15篇
  2012年   20篇
  2011年   23篇
  2010年   15篇
  2009年   33篇
  2008年   28篇
  2007年   14篇
  2006年   16篇
  2005年   16篇
  2004年   3篇
  2003年   19篇
  2002年   7篇
  2001年   8篇
  2000年   6篇
  1999年   7篇
  1998年   10篇
  1997年   13篇
  1996年   10篇
  1995年   8篇
  1994年   12篇
  1993年   5篇
  1992年   3篇
  1991年   1篇
  1990年   2篇
  1988年   1篇
  1986年   2篇
  1984年   1篇
排序方式: 共有403条查询结果,搜索用时 31 毫秒
71.
给出了驻波处理的简便方法,考察了有关的理论,给出了新的计算公式。  相似文献   
72.
本文使用由WKB近似得到的Alfven波传播的张量表达式,具体计算和讨论了一种太阳子午面内含盔形-电流片磁位形的流场中Alfven波的传播特征,主要结果是:(1)Alfven波磁场起伏随日心距离的增加而衰减,其中极开区的衰减远快于赤道区,但随着距离的增大,这种纬度关系将迅速变弱,以致在较远空间,磁起伏相差很小,衰减很慢;(2)Alfven波的相对磁场起伏b/B随着距离的增加而迅速增大,在几个太阳半径之后变化不再明显,达到所谓的"饱和";在大日心距离的盔形电流片附近,Alfven波将成为重要的磁场组成部分;(3)Alfven波速度起伏纬度关系较为明显,相对速度起伏。u/U随着距离增大而衰减,电流片区衰减得较快,但这种纬度差别将变弱.与黄道面内Alfven波传播特征的具体比较表明,磁场涨落的变化特征与背景场位形存在着十分密切的关系,但速度涨落与背景场没有这种明显关系.  相似文献   
73.
电磁场对航空电子设备干扰的预测研究   总被引:2,自引:0,他引:2  
论述飞机内部辐射电磁通过电缆线感应耦合,形成对电子设备干扰的机理,分析这种干扰模式既有辐射,又有传导的复合特点。应用孔缝衍射、场对线激励、含分布源传输线和网络分析等理论与方法,逐层剖析描述了预测数学模型,并给出了能够对电子设备电子元件级进行可靠性和安全性评估的实用预测软件。  相似文献   
74.
紧缩平面场扫描架系统研制   总被引:3,自引:0,他引:3  
紧缩平面场(CATR)是在较小的微波暗室里模拟远场的电磁环境,以行进各种天线的测量和研究.其最终性能指标要由紧缩平面场扫描架评定.根据紧缩平面场扫描测量原理,及其对扫描架平面度、直线度、定位精度及自动化程度的要求,研制了极坐标型紧缩场扫描架系统,通过采用高精度直线导轨、平面度微调方式和基于工业控制计算机的数字控制技术,达到了所要求的检测精度,满足了紧缩平面场扫描测量的要求.  相似文献   
75.
在直升机机内照明调光领域,国外军机已广泛采用脉冲宽度调制(PWM)调光方式。PWM调光方式相比传统线性调光方式具有以下明显优点:效率高,调光范围宽,功耗小,带载能力强,附加损耗小等。但PWM调光系统的不足是电磁辐射,尤其会对机内通话系统产生音频干扰,在机通耳机中会出现明显干扰声,影响机内通话质量。本方案能有效抑制PWM...  相似文献   
76.
The paper presents a summary of results from two different simulations which study the tearing, coalescence and fragmentation of current sheets, the associated production of energetic electrons and of plasma waves from these electrons which could explain drifting pulsation structures observed at radio wavelengths. Using a 2.5-D particle-in-cell (PIC) model of the current sheet it is shown that due to the tearing mode instability the current sheet tears into plasmoids and these plasmoids later on coalesce into larger ones. During these processes electrons are accelerated and they produce observable electromagnetic waves. Furthermore, the 3-D PIC model with two current sheets extended in the electric current direction shows their fast fragmentation associated with the exponential dissipation of the free magnetic field energy. An example of the drifting pulsating structure which is considered to be a radio signature of the above mentioned processes in solar flares is shown.  相似文献   
77.
A new and original stereo imaging method is introduced to measure the altitude of the OH nightglow layer and provide a 3D perspective map of the altitude of the layer centroid. Near-IR photographs of the OH layer are taken at two sites separated by a 645 km distance. Each photograph is processed in order to provide a satellite view of the layer. When superposed, the two views present a common diamond-shaped area. Pairs of matched points that correspond to a physical emissive point in the common area are identified in calculating a normalized cross-correlation coefficient (NCC). This method is suitable for obtaining 3D representations in the case of low-contrast objects. An observational campaign was conducted in July 2006 in Peru. The images were taken simultaneously at Cerro Cosmos (12°09′08.2″ S, 75°33′49.3″ W, altitude 4630 m) close to Huancayo and Cerro Verde Tellolo (16°33′17.6″ S, 71°39′59.4″ W, altitude 2272 m) close to Arequipa. 3D maps of the layer surface were retrieved and compared with pseudo-relief intensity maps of the same region. The mean altitude of the emission barycenter is located at 86.3 km on July 26. Comparable relief wavy features appear in the 3D and intensity maps. It is shown that the vertical amplitude of the wave system varies as exp (Δz/2H) within the altitude range Δz = 83.5–88.0 km, H being the scale height. The oscillatory kinetic energy at the altitude of the OH layer is comprised between 3 × 10−4 and 5.4 × 10−4 J/m3, which is 2–3 times smaller than the values derived from partial radio wave at 52°N latitude.  相似文献   
78.
We calculate the maximum energy that a particle can obtain at perpendicular interplanetary shock waves by the mechanism of diffusive shock acceleration. The influence of the energy range spectral index of the two-dimensional modes of the interplanetary turbulence is explored. We show that changes in this parameter lead to energies that differ in at least one order of magnitude. Therefore, the large scale structure of the turbulence is a key input if the maximum particle energy is calculated.  相似文献   
79.
The transport of energetic particles in the presence of magnetic turbulence can exhibit a variety of regimes different from the standard quasilinear diffusion. Here we discuss a number of solar and space problems where nonquasilinear diffusion is found, and then we illustrate anomalous transport regimes, for which the mean square deviation grows nonlinearly with time. In particular, we concentrate on superdiffusive regimes, and show what is the theoretical framework which is to be used to describe superdiffusion. We discuss the results of numerical simulations which show that superdiffusive and subdiffusive regimes are possible, and describe data analyses which allow to single out the superdiffusive transport from the observation of energetic particle profiles upstream of interplanetary shocks. The implications of superdiffusion on the efficiency of wave particle interactions are also discussed.  相似文献   
80.
The linear mechanism of generation, intensification and further nonlinear dynamics of internal gravity waves (IGW) in stably stratified dissipative ionosphere with non-uniform zonal wind (shear flow) is studied. In case of the shear flows the operators of linear problem are non-selfadjoint, and the corresponding Eigen functions – nonorthogonal. Thus, canonical – modal approach is of less use studying such motions. Non-modal mathematical analysis becomes more adequate for such problems. On the basis of non-modal approach, the equations of dynamics and the energy transfer of IGW disturbances in the ionosphere with a shear flow is obtained. Exact analytical solutions of the linear as well as the nonlinear dynamic equations of the problem are built. The increment of shear instability of IGW is defined. It is revealed that the transient amplification of IGW disturbances due time does not flow exponentially, but in algebraic – power law manner. The effectiveness of the linear amplification mechanism of IGW at interaction with non-uniform zonal wind is analyzed. It is shown that at initial linear stage of evolution IGW effectively temporarily draws energy from the shear flow significantly increasing (by an order of magnitude) own amplitude and energy. With amplitude growth the nonlinear mechanism turns on and the process ends with self-organization of nonlinear solitary, strongly localized IGW vortex structures (the monopole vortex, the transverse vortex chain or the longitudinal vortex street). Accumulation of these vortices in the ionospheric medium can create the strongly turbulent state.  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号