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   627篇
  免费   223篇
  国内免费   85篇
航空   529篇
航天技术   105篇
综合类   44篇
航天   257篇
  2023年   14篇
  2022年   35篇
  2021年   25篇
  2020年   31篇
  2019年   19篇
  2018年   25篇
  2017年   24篇
  2016年   31篇
  2015年   33篇
  2014年   38篇
  2013年   42篇
  2012年   52篇
  2011年   52篇
  2010年   21篇
  2009年   40篇
  2008年   33篇
  2007年   55篇
  2006年   34篇
  2005年   28篇
  2004年   25篇
  2003年   29篇
  2002年   20篇
  2001年   28篇
  2000年   19篇
  1999年   32篇
  1998年   31篇
  1997年   43篇
  1996年   18篇
  1995年   16篇
  1994年   20篇
  1993年   11篇
  1992年   4篇
  1991年   4篇
  1990年   2篇
  1987年   1篇
排序方式: 共有935条查询结果,搜索用时 156 毫秒
81.
空气辅助喷射闪急沸腾喷雾特性试验   总被引:1,自引:2,他引:1  
在定容弹内利用高速相机和相位多普勒粒子分析仪(PDPA)研究了环境压力和燃油温度对空气辅助喷射系统喷雾特性的影响。试验环境压力的变化范围为0.01MPa到0.1MPa,燃油温度的变化范围为25℃到100℃。试验结果表明:随着环境压力的减小,燃油喷雾逐渐从冷态过渡到闪急沸腾状态,在喷嘴出口处喷雾气泡急剧增加。当环境压力小于0.02MPa时,喷雾处于闪急沸腾状态,液滴速度增加,粒径减小,在喷雾近端出现喷雾膨胀现象;随着燃油温度的上升,液滴表面张力减小,液滴易于破碎。当燃油温度达到100℃时,喷雾处于闪急沸腾状态,喷雾远端出现喷雾膨胀现象。   相似文献   
82.
介绍了大力神-4改进型固体助推器的研制情况、结构特点及主要性能,阐述了地面试验失败的原因及改进措施,并联系卡斯托Ⅱ研制中出现的类似失败情况,就发动机内流场气流的相互作用及药柱变形对发动机工作的影响进行了扼要分析,并提出了值得重视的几点启示。  相似文献   
83.
本文建立跃变型介质中原油渗流的数学模型,可用来描述油层(尤其是低渗透层)超高压注水条件下的不稳定渗流过程及其特征。用Galerkin有限元法进行了数值计算,讨论了介质跃变的影响。  相似文献   
84.
火箭发动机基于神经网络非线性辨识的故障检测   总被引:1,自引:0,他引:1  
应用神经网络方法,提出了一种液体火箭发动机故障实时检测算法。神经网络采用非线性辨识技术贴近发动机的工作过程,并输出包合发动机故障信息的辨识误差信号。若辨识误差变大超过一定阈值,检测逻辑就预报发动机故障。在发动机启动阶段离线训练神经网络,在发动机稳态过程可以采用离线或在线学习算法。实验研究表明神经网络可以成功地应用于大型泵压式液体火箭发动机的故障检测。  相似文献   
85.
本文提出了基于Gauss核函数的SVM故障诊断技术,并利用grid法对SVM中参数进行寻优,以保证得到最高分类精度.通过对某航空公司ERJ145的右发AE3007发动机进行故障诊断研究后,证明基于Gauss核函数的SVM在小样本故障诊断中有着较好的适用性和可信性,能够为飞机发动机故障诊断提供有效的参考.  相似文献   
86.
张海滨  白博峰 《航空学报》2020,41(11):123927-123927
为了更好地理解和认识空心锥形喷雾射流与横向气流的掺混过程,基于可视化实验测量,针对空心锥形喷雾的初始雾化状态、喷射角度和雾化锥角以及横流速度等因素对空心锥形喷雾射流在横流中的扩散特性进行了系统分析。研究结果表明,随着横流速度的提高,流场中对称反旋涡对(CVP)结构变小,但其稳定性及产生的卷吸气流则是先增强而后减小;提高喷雾初始液滴的动量和数流率,均可以增大射流剪切层的贯穿深度和射流尾迹的伸展高度,同时使流场中CVP的涡量强度增大。基于实验测量结果,建立了空心锥形喷雾垂直入射横流条件下掺混流场液滴群CVP结构特征尺寸和剪切层轨迹的预测关联式。另外针对喷嘴雾化锥角和喷射角度的分析表明,当喷雾初始雾化状态相近时,随着雾化锥角的减小,流场中CVP的水平尺度减小但竖直方向尺度增大且结构更为稳定,同时喷雾液滴的贯穿深度增大;相比喷雾垂直于横流入射,当喷嘴以一定角度逆向横流入射时,CVP结构稳定性减弱,流场剪切层涡结构变大且剪切层区域液滴富集现象减弱,射流尾迹紊乱程度增加,反之,则流场剪切层涡拟序结构变小,射流尾迹现象减弱,CVP结构变小。  相似文献   
87.
《中国航空学报》2020,33(2):439-447
Fault diagnosis is vital in manufacturing system. However, the first step of the traditional fault diagnosis method is to process the signal, extract the features and then put the features into a selected classifier for classification. The process of feature extraction depends on the experimenters’ experience, and the classification rate of the shallow diagnostic model does not achieve satisfactory results. In view of these problems, this paper proposes a method of converting raw signals into two-dimensional images. This method can extract the features of the converted two-dimensional images and eliminate the impact of expert’s experience on the feature extraction process. And it follows by proposing an intelligent diagnosis algorithm based on Convolution Neural Network (CNN), which can automatically accomplish the process of the feature extraction and fault diagnosis. The effect of this method is verified by bearing data. The influence of different sample sizes and different load conditions on the diagnostic capability of this method is analyzed. The results show that the proposed method is effective and can meet the timeliness requirements of fault diagnosis.  相似文献   
88.
In the face of harsh natural environment applications such as earth-orbiting and deep space satellites, underwater sea vehicles, strong electromagnetic interference and temperature stress,the circuits faults appear easily. Circuit faults will inevitably lead to serious losses of availability or impeded mission success without self-repair over the mission duration. Traditional fault-repair methods based on redundant fault-tolerant technique are straightforward to implement, yet their area, power and weight cost can be excessive. Moreover they utilize all plug-in or component level circuits to realize redundant backup, such that their applicability is limited. Hence, a novel selfrepair technology based on evolvable hardware(EHW) and reparation balance technology(RBT) is proposed. Its cost is low, and fault self-repair of various circuits and devices can be realized through dynamic configuration. Making full use of the fault signals, correcting circuit can be found through EHW technique to realize the balance and compensation of the fault output-signals. In this paper, the self-repair model was analyzed which based on EHW and RBT technique, the specific self-repair strategy was studied, the corresponding self-repair circuit fault system was designed, and the typical faults were simulated and analyzed which combined with the actual electronic devices. Simulation results demonstrated that the proposed fault self-repair strategy was feasible. Compared to traditional techniques, fault self-repair based on EHW consumes fewer hardware resources, and the scope of fault self-repair was expanded significantly.  相似文献   
89.
Aero-engine gas path health monitoring plays a critical role in Engine Health Management(EHM). To achieve unbiased estimation, traditional filtering methods have strict requirements on measurement parameters which sometimes cannot be measured in engineering. The most typical one is the High-Pressure Turbine(HPT) exit pressure, which is vital to distinguishing failure modes between different turbines. For the case of an abrupt failure occurring in a single turbine component, a model-based sensor measurement reconstruction method is proposed in this paper. First,to estimate the missing measurements, the forward algorithm and the backward algorithm are developed based on corresponding component models according to the failure hypotheses. Then,a new fault diagnosis logic is designed and the traditional nonlinear filter is improved by adding the measurement estimation module and the health parameter correction module, which uses the reconstructed measurement to complete the health parameters estimation. Simulation results show that the proposed method can well restore the desired measurement and the estimated measurement can be used in the turbofan engine gas path diagnosis. Compared with the diagnosis under the condition of missing sensors, this method can distinguish between different failure modes, quantify the variations of health parameters, and achieve good performance at multiple operating points in the flight envelope.  相似文献   
90.
为研究驻涡燃烧室在前钝体燃料喷射状况下的燃烧性能,采用3维数值仿真模拟方法,对驻涡燃烧室前钝体燃料喷射 状况下的燃烧效率及燃烧室性能与无前钝体燃料喷射状况下的燃烧性能进行了对比分析,并对驻涡燃烧室的冷流以及燃烧状态 下的燃烧室性能进行了系统研究。燃烧室温度分布表明:前钝体顶部燃料喷射在0.2~0.7的喷射系数范围内,缩短了燃烧室火焰 长度,提高了燃烧室在相同轴向长度下的燃烧效率,使燃烧室更加紧凑;驻涡燃烧室前钝体顶部燃料喷射孔的孔径在一定范围内 的变化对燃烧室的燃烧效率、出口温度分布系数以及总压损失影响较小。  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