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   20篇
  免费   16篇
  国内免费   11篇
航空   46篇
综合类   1篇
  2023年   3篇
  2022年   2篇
  2021年   2篇
  2020年   3篇
  2019年   4篇
  2018年   1篇
  2017年   1篇
  2016年   2篇
  2015年   3篇
  2014年   3篇
  2013年   2篇
  2012年   3篇
  2010年   2篇
  2009年   2篇
  2006年   2篇
  1999年   3篇
  1997年   1篇
  1996年   2篇
  1995年   2篇
  1994年   1篇
  1993年   3篇
排序方式: 共有47条查询结果,搜索用时 15 毫秒
1.
王维  李轩  卢金玲  罗兴锜  楚武利 《推进技术》2019,40(7):1505-1513
为了探索机匣处理作用下转/静子的轴向匹配方法以进一步提高压气机级的失速裕度,研究了静子的叶型安装角及"弯"、"掠"规律对压气机性能的影响,针对机匣处理与优化静子的组合结构进行了非定常数值模拟,阐述了该结构的扩稳机理以及压气机新的失速机制。研究结果表明,在机匣处理作用下,静子成为压气机失速的触发因素,通过对静子叶型安装角及"弯"、"掠"规律的优化均可进一步提高压气机级的失速裕度,其中改变静子"弯"型对压气机级失速裕度的改善最大。组合应用机匣处理与尖部反弯根部正弯静子后,压气机效率基本不变,失速裕度提升了80.2%,较单独使用机匣处理提升30.9%。在该组合结构作用下,压气机的失速由静子触发,静子叶根吸力面在激波作用下发生附面层分离,且与轮毂表面附面层相互作用形成角区涡,接近失速边界时,静子叶根形成"前缘溢流,尾缘反流"现象,造成静子通道的大范围堵塞,诱发压气机失速。压气机级的扩稳应充分考虑机匣处理的影响,对静子进行优化设计。  相似文献   
2.
周向总压畸变对对转压气机影响效应分析   总被引:2,自引:0,他引:2       下载免费PDF全文
王掩刚  先松川  国睿 《推进技术》2015,36(2):200-206
以对转压气机为研究对象,在数值方法校验的基础上,应用全通道定常流场分析手段计算了对转压气机不同周向畸变条件下的三维流场,获取了周向总压进气畸变对该压气机性能以及流场结构的影响效应,确定了对转压气机的临界畸变角,分析了不同畸变强度对压气机性能的影响规律,探讨了周向总压畸变在对转压气机中的发展演化过程。结果表明:(a)所研究的对转压气机临界畸变角约为72°,略高于传统动-静叶排交替的压气机临界畸变角;(b)相比均匀进气工况,当畸变指数为0.24时,对转压气机失速点压比和失速裕度分别下降3%和9.6%,当畸变指数为0.5时二者分别下降8.3%和19.8%;(c)未畸变区与畸变区流体之间存在的压力梯度影响转子叶片相对来流速度。进入畸变区叶片来流相对速度减小,负荷降低,退出畸变区叶片来流相对速度增大,负荷增大;(d)上游转子使得畸变水平提高,下游转子反向旋转效应抑制了来流相对速度变化趋势,增强了气流在其叶片通道中的掺混,使得畸变水平有所下降。  相似文献   
3.
基于对跨声速轴流压气机内部失稳触发机制的认识,设计了一种新型多圆柱孔式处理机匣结构。对带该处理机匣的跨声速轴流压气机转子Rotor-37的内部流动进行了全三维非定常数值模拟,结果表明该新型多圆柱孔式处理机匣结构可使压气机的综合裕度提高6.5%,而最高效率点效率仅降低0.19%。对多圆柱孔式处理机匣的扩稳机理进行了详细分析,结果表明处理机匣能有效消除低速流体团引起的通道阻塞现象,并将低速阻塞流体团抽吸进入处理机匣容腔,然后从前端喷口预旋喷出以抑制叶顶区域的流动分离,从而有效提高跨声速轴流压气机的失速裕度。  相似文献   
4.
This study numerically investigated a single stage centrifugal compressor ‘‘Radiver’’ with a wedge diffuser and several tandem-designed impellers to explore the flow phenomena within the tandem impeller and the potential to enhance compressor performance. The results demonstrate that tandem design and clocking fraction (λs) significantly affects the compressor performance. The compressor stage with tandem impellers of Series A of boundary layer growth interruption alone are observed to have a widely operating range but efficiency and total pressure ratio penalty compared with that of conventional impeller. The tandem impeller with at least the same impeller efficiency as the conventional design is considered as a critical design criteria so that further modification process based on the flow characteristic of tandem impeller is necessary. In order to restrain the inducer wake and exducer shock losses, parameters modification of blade angle and thickness distributions are necessary and the modified tandem impeller of Series B is obtained. The modified tandem impeller with 25% clocking arrangement shows an 8.45% stall margin increase and maintains the total pressure ratio and efficiency as the conventional design, which proves the potential of tandem impeller to improve compressor stage performance. It is noteworthy that the tandem impellers of Radiver have not shown obviously balanced exit flow field and the fundamental mechanism of stall margin extending of tandem impeller lies on the improved impeller/diffuser matching performance resulting from the incidence angle variation at diffuser inlet.  相似文献   
5.
Mиг-23飞机是一种变后掠翼战斗机,它的尾旋动态及改出尾旋的方法很复杂。根据在该机上进行的四次尾旋飞行试验,叙述其尾旋进入的方法、尾旋中的动态和改出尾旋的方法。并举出三个典型的尾旋模态实例,详细记述整个尾旋过程和进行分析,说明Mиг-23飞机尾旋动态的复杂性及其表现出的特点。最后,提出了几点在判断和改出Mиг-23飞机的尾旋时应注意的事项。  相似文献   
6.
探讨失速警告器的选位安装与校准问题。失速警告器的选位安装与校准均由试飞实验确定。提出了如何调整失速警告器安装位置和安装角的指导性原则,论述了用表速计量失速预警速度的理由。  相似文献   
7.
《中国航空学报》2023,36(1):75-90
The modeling of dynamic stall aerodynamics is essential to stall flutter, due to the flow separation in a large-amplitude pitching oscillation process. A newly neural network based Reduced Order Model (ROM) framework for predicting the aerodynamic forces of an airfoil undergoing large-amplitude pitching oscillation at various velocities is presented in this work. First, the dynamic stall aerodynamics is calculated by solving RANS equations and the transitional SST-γ model. Afterwards, the stall flutter bifurcation behavior is calculated by the above CFD solver coupled with structural dynamic equation. The critical flutter speed and limit-cycle oscillation amplitudes are consistent with those obtained by experiments. A newly multi-layer Gated Recurrent Unit (GRU) neural network based ROM is constructed to accelerate the calculation of aerodynamic forces. The training and validation process are carried out upon the unsteady aerodynamic data obtained by the proposed CFD method. The well-trained ROM is then coupled with the structure equation at a specific velocity, the Limit-Cycle Oscillation (LCO) of stall flutter under this flow condition is predicted precisely and more quickly. In order to predict both the critical flutter velocity and LCO amplitudes after bifurcation at different velocities, a new ROM with GRU neural network considering the variation of flow velocities is developed. The stall flutter results predicted by ROM agree well with the CFD ones at different velocities. Finally, a brief sensitivity analysis of two structural parameters of ROM is carried out. It infers the potential of the presented modeling method to depict the nonlinearity of dynamic stall and stall flutter phenomenon.  相似文献   
8.
《中国航空学报》2016,(3):653-661
The tip leakage flow has an important influence on the performance of transonic com-pressor. Blade tip winglet has been proved to be an effective method to control the tip leakage flow in compressor, while the physical mechanisms of blade tip winglet have been poorly understood. A numerical study for a highly loaded transonic compressor rotor has been conducted to understand the effect of varying the location of blade tip winglet on the performance of the rotor. Two kinds of tip winglet were designed and investigated. The effects of blade tip winglet on the compressor over-all performance, stability and tip flow structure were presented and discussed. It is found that the interaction of the tip winglet with the flow in the tip region is different when the winglet is located at suction-side or pressure-side of the blade tip. Results indicate that the suction-side winglet (SW) is ineffective to improve the performance of compressor rotor. In addition, a significant stall range extension equivalent to 33.74% with a very small penalty in efficiency can be obtained by the pressure-side winglet (PW). An attempt has been made to explain the fundamental mechanisms of blade tip winglet in detail.  相似文献   
9.
黄灵恩 《飞行力学》1993,11(3):87-91
对无动力J—7LP动力学缩比模型进行了遥控试飞,以研究其失速尾旋特性,全偏平尾和方向舵可使模型进八尾旋,舵面全回中即可从各种尾旋中改出。偏转副翼对尾旋特性有明显的影响。  相似文献   
10.
高压比离心叶轮自循环机匣处理扩稳研究   总被引:3,自引:2,他引:1       下载免费PDF全文
为了探索自循环机匣处理扩稳机理,利用全三维数值模拟方法对应用自循环上游槽封闭机匣和自循环机匣处理结构两种情况下的Krain高压比离心叶轮进行了详细研究.对比结果表明:自循环机匣处理能有效的延迟失速的发生并在近失速区域略微提高压气机的效率以及总压比.通过详细的流场分析表明:该机匣处理能有效地减小叶顶栽荷,从而降低泄漏流相对速度,抑制间隙泄漏涡在叶顶通道内的发展以减小低速气流在流道内的阻塞,提高转子通道的通流能力,从而达到扩大稳定工作范围的目的.  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