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851.
考虑地面效应的翼型动态特性数值模拟   总被引:1,自引:0,他引:1  
为了研究考虑地面干扰的飞行器非定常气动特性,基于滑移网格技术,通过求解二维非定常Euler方程,对不同近地高度下的NACA0012翼型的动态振动特性进行了数值模拟。分析了存在地面干扰时的升力系数以及俯仰力矩系数迟滞环变化,并结合强迫振动法,计算了翼型各个近地高度下的纵向组合动导数。结果表明,地面效应不仅对定常流场产生影响,更显著地影响了非定常气动力及力矩,近地高度越小,这种效应越明显,使得升力系数的迟滞环面积变小,幅值减小,而俯仰力矩系数的迟滞环变化不规律,力矩系数的动导数随着近地高度减小而增大(绝对值减小),纵向的动态稳定性产生损失。地面效应干扰在飞行器非定常气动研究中应该引起重视。  相似文献   
852.
聚能爆破切割清理弹射通道技术   总被引:1,自引:0,他引:1  
 考虑到飞机隐身等因素,飞机驾驶舱顶部为金属结构而不是传统的座舱盖结构,在弹射救生过程中,采用聚能爆破切割技术,切割金属结构形成"座舱盖"并抛放以清理弹射通道,且已在B-1B、B2飞机上采用。利用座舱顶部金属结构平板件,对聚能切割器装药量、切割厚度,切割过程冲击噪声对飞行员的影响、爆破飞溅物对飞行员的损伤防护等进行了分析和试验研究,并将冲击噪声对飞行员的影响与国军标的要求进行了对比。通过本次研究,将为以后的工程应用提供基础性依据。  相似文献   
853.
针对某大涵道比风扇/增压级外涵静子后掠降噪的优化设计目标,采用1种周向平均快速特性预测计算方法和3维数值模拟软件NUMECA,对其100%设计转速下外涵静子无后掠及轴向后掠22.5°和30°算例的特性曲线及流场进行了对比分析,以研究外涵静子轴向后掠对风扇/增压级特性及气动性能的影响规律.结果表明:一定程度的轴向后掠角度会使静子表面静压在叶尖处增强,而根部的叶片表面静压分布更趋均匀,风扇/增压级的外涵气动特性在裕度上无明显恶化;但严重的后掠角度则会导致叶尖叶片表面载荷显著增加,从而造成外涵的喘振裕度减小,进而影响整个风扇/增压级的气动性能.  相似文献   
854.
为了降低复合材料壳体封头区域的应力集中,提高壳体整体性能,对复合材料壳体薄弱区进行补强以及采用何种方法进行补强是关键问题.本文以碳纤维Ф150 mm复合材料壳体为研究对象,以理论分析和有限元分析为依据,分别采用碳布补强和纤维缠绕补强对壳体前后封头及赤道附近位置进行补强.试验结果表明:纤维缠绕补强效果明显好于碳布补强,壳体特性系数由40.3 km提高到48.5 km,应力平衡系数提高到0.95,纤维发挥强度由3 378.1 MPa提高到4 058.4 MPa.  相似文献   
855.
吕克洪  程先哲  李华康  张勇  邱静  刘冠军 《航空学报》2019,40(11):23285-023285
电子设备是各类航空、航天等高新技术装备必不可少的重要组成部分。与机械类设备存在明显退化状态征兆不同,电子设备退化状态无明显的外在表现,尚无有效征兆对其状态进行刻画,对其进行故障预测与健康管理存在一定的困难。针对该问题,梳理了电子设备故障预测与健康管理技术的基本概念和内涵,介绍了电子设备故障预测与健康管理技术的国内外研究现状,分析了当前复杂电子设备故障预测与健康管理技术面临的挑战和对策。在此基础上,结合未来复杂电子设备新特点及该领域最新研究进展,从基于间歇故障特征的健康状态表征、面向故障预测与健康管理的测试性设计和多源特征融合的健康状态评估等方面,提出了电子设备故障预测与健康管理技术发展的新方向。  相似文献   
856.
In the design of a hypersonic inward-turning inlet by applying the traditional basic flowfield, a reflected shock-wave is formed in the isolator due to the continuous reflection of the cowlreflected shock wave in the basic flow-field, which interacts with the boundary layer to produce a considerable influence on the performance of the inlet. Here, a basic flow-field design method that can control the velocity direction at the throat section is developed, and numerical simulations are conducted to demonstrate the effectiveness of this method. The method presented in this paper can achieve the absorption of the reflected waves at the shoulder of the basic flow-field by adjusting the variation law of the center radius in the basic flow-field, and a smooth transition between the compression surface and the isolator can also be produced. The Mach number and total pressure recovery coefficient of the inlet designed according to this method are 3.00 and 0.657, respectively, at design point(the incoming flow Mach number Ma1= 6.0). The results show that with this method, the inlet can efficiently weaken both the reflection of the shock wave and the interaction between the boundary layer and the reflected shock waves, which improves the aerodynamic performance of the inlet.  相似文献   
857.
In recent years, Kalman filtering has emerged as a suitable technique to determine terrestrial reference frames (TRFs), a prime example being JTRF2014. The time series approach allows variations of station coordinates that are neither reduced by observational corrections nor considered in the functional model to be taken into account. These variations are primarily due to non-tidal geophysical loading effects that are not reduced according to the current IERS Conventions (2010). It is standard practice that the process noise models applied in Kalman filter TRF solutions are derived from time series of loading displacements and account for station dependent differences. So far, it has been assumed that the parameters of these process noise models are constant over time. However, due to the presence of seasonal and irregular variations, this assumption does not truly reflect reality. In this study, we derive a station coordinate process noise model allowing for such temporal variations. This process noise model and one that is a parameterized version of the former are applied in the computation of TRF solutions based on very long baseline interferometry data. In comparison with a solution based on a constant process noise model, we find that the station coordinates are affected at the millimeter level.  相似文献   
858.
The study is based on the data of the rapid-run ionosonde at the Sodankylä Geophysical Observatory at auroral latitude (L?=?5.25) which routinely performs one-minute sounding since 2007. This dataset allows a unique opportunity for investigating possible effects of ultra-low frequency (ULF, 1–7?mHz) waves in the auroral ionosphere. Suitable observations were made during moderately disturbed geomagnetic conditions typically at recovery of the geomagnetic storms caused by solar wind high-speed streams, in the daytime between 9 and 16 MLT. The ionospheric oscillations corresponding to Pc5 geomagnetic pulsations were found in variations of the virtual height of the F layer and the power of ionosonde reflections from E and F layers. The later are most probably caused by modulation of electron precipitation, which is also manifested in weak (about 0.01–0.06?dB) variations of cosmic noise absorption. The most important and novel result is that the pulsations of power of reflection from E and F layers typically has a spectral maximum at nearly half the periodicity of the Pc5 geomagnetic pulsations, whereas such spectral peak is negligible in the geomagnetic pulsations.  相似文献   
859.
张斌  周敬 《航空学报》2019,40(11):323206-323206
平动点,尤其是共线平动点轨道在未来深空探测活动中具有重要的应用价值,但由于共线平动点轨道不稳定,运行在其上的航天器在无控情况下将很快偏离标称轨道,因此在实际任务中,轨道维持必不可少。针对地月系L2点附近的Halo轨道维持问题,首先在圆型限制性三体模型下,利用Richardson三阶近似解析解、微分修正以及打靶法获得了用于维持控制的标称轨道;然后设计了基于特征模型理论的黄金分割控制器用于速度跟踪以及PD控制器用于位置跟踪;最后分别在圆型限制性三体模型和双圆限制性四体模型下进行了仿真分析。结果表明:在两种模型下,位置和速度的跟踪精度分别优于100 m和0.003 m/s,但双圆限制性四体模型下所需总的速度增量比圆型限制性三体模型下所需总的速度增量高一个数量级。  相似文献   
860.
BeiDou-3 Navigation Satellite System (BDS-3) satellites are equipped with the new generation GNSS signals B1C and B2a, which support the interoperability with GPS and Galileo systems. In this study, the pseudo-range multipath error and carrier phase observation noise of the BDS-3 B1C and B2a signals were evaluated based on zero baseline measurements from the day of year (DOY) 113 to 116, 2020. Further, the precision and performance of the single point positioning (SPP) and precise point positioning (PPP) are assessed at 9 stations. This assessment manifests that the standard deviations (STDs) of the pseudo-range multipath error are about 0.09 ~ 0.22 m, while STDs of the carrier phase observation noise are about 0.075 mm. For the single-frequency SPP, its positioning precision is about 2.03 ~ 4.85 m and 3.29 ~ 10.73 m at the 99.99% confidence level in horizontal and vertical directions, respectively, while the dual-frequency SPP precision is about 1.92 ~ 8.02 m and 4.81 ~ 12.77 m in horizontal and vertical directions, respectively. For the daily static PPP, the convergence time is about 20 ~ 30 min, while the daily positioning precision can reach 1.38 ~ 4.42 cm and -1.31 ~ 4.34 cm in horizontal and vertical directions, respectively. In general, the quality and the SPP and PPP performance of the BDS-3 B1C&B2a signals are comparable to the GPS and Galileo.  相似文献   
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