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31.
针对目标偏振二向反射特性研究中模型参数难以准确确定的问题,分析了粗糙表面偏振二向反射分布函数的影响参数,并通过理论推导和仿真计算,研究了各参数对粗糙表面散射特性的作用机理。总结分析了现有参数反演方法,针对现有方法存在的理论缺陷,在P-G(Preist-Germer)模型的基础上,提出了利用"相对偏振分量-角度"的相关关系进行参数反演的方法,设计了参数反演算法,进行了标准反射板和绿漆表面的偏振二向反射特性测试实验,并根据实验数据进行了参数反演和模型验证。实验结果表明,改进的参数反演方法可准确反演所有模型参数。利用反演参数进行模型验证,结果显示模型预测数据与实验数据具有较好的吻合度,验证了模型的准确性。 相似文献
32.
An aerodynamic optimization method for axial flow compressor blades available for engineering is developed in this paper. Bezier surface is adopted as parameterization method to control the suction surface of the blades, which brings the following advantages:(A) significantly reducing design variables;(B) easy to ensure the mechanical strength of rotating blades;(C) better physical understanding;(D) easy to achieve smooth surface. The Improved Artificial Bee Colony(IABC) algorithm, which significantly increases the convergence speed and global optimization ability, is adopted to find the optimal result. A new engineering optimization tool is constructed by combining the surface parametric control method, the IABC algorithm, with a verified Computational Fluid Dynamics(CFD) simulation method, and it has been successfully applied in the aerodynamic optimization for a single-row transonic rotor(Rotor 37) and a single-stage transonic axialflow compressor(Stage 35). With the constraint that the relative change in the flow rate is less than0.5% and the total pressure ratio does not decrease, within the acceptable time in engineering, the adiabatic efficiency of Rotor 37 at design point increases by 1.02%, while its surge margin 0.84%,and the adiabatic efficiency of Stage 35 0.54%, while its surge margin 1.11% after optimization, to verify the effectiveness and potential in engineering of this new tool for optimization of axial compressor blade. 相似文献
33.
Mohammad Hossein Mokhtari Amir Ahmadikhub Hamid Saeedi-Sourck 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(10):3106-3124
Land surface temperature (LST) as an important environmental variable provides valuable information for earth environmental system modelling. Currently, LST is obtained through satellite thermal sensors at various spatial and temporal resolutions. Although spatially continuous satellite-based LST measurements are intended to overcome the shortcomings of sparse ground-based LST measurements, LST images often contain anomalous values due to the existence of clouds or sensor malfunctioning. The problem becomes more serious where the users deal with high spatial resolution characterized by low temporal resolution. This study examines the capability of a newly developed graph signal processing (GSP) method using two-dimensional single-date thermal data. For this purpose, four Landsat/TIRS datasets are analyzed. The data of five elliptical regions on thermal images are eliminated and then reconstructed through the GSP method and using the LST values of the enclosing rectangles containing the ellipsoids. The results indicate that the temperature variation determined by the GSP method generally conforms to the original image LST values. According to a correlation test conducted on the original image LST and those obtained through the GSP method, the values vary from 58% to 95%, which is an above-the-average rate (RMSE from 0.69 to 2.27). The statistical analysis of the original image LST in both the elliptical regions and the enclosing rectangles containing the ellipsoids indicates that an increase in the variance of LST data causes an increased error in the calculation of temperature by the GSP method, and vice versa. The results of the analysis of variance (ANOVA) and Duncan test indicated that an increase in the number of the non-zero spectral bins would result in increased RMSE values for all the dates and the regions. Moreover, the model errors were significant at the 0.05 level across all the image date and five elliptical study regions. Based on the results, the use of this method is recommended for the reconstruction of LST missing values, where dissimilarity of atmospheric conditions limits the use of other methods that depend on the time series data of various dates and a great deal of data calculation. 相似文献
34.
Muriel Bergé-Nguyen Jean-François Cretaux Stéphane Calmant Sarah Fleury Rysbek Satylkanov D. Chontoev Pascal Bonnefond 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(3):985-1001
Lake water height is a key variable in water cycle and climate change studies, which is achievable using satellite altimetry constellation. A method based on data processing of altimetry from several satellites has been developed to interpolate mean lake surface (MLS) over a set of 22 big lakes distributed on the Earth. It has been applied on nadir radar altimeters in Low Resolution Mode (LRM: Jason-3, Saral/AltiKa, CryoSat-2) in Synthetic Aperture Radar (SAR) mode (Sentinel-3A), and in SAR interferometric (SARin) mode (CryoSat-2), and on laser altimetry (ICESat). Validation of the method has been performed using a set of kinematic GPS height profiles from 18 field campaigns over the lake Issykkul, by comparison of altimetry’s height at crossover points for the other lakes and using the laser altimetry on ICESat-2 mission. The precision reached ranges from 3 to 7 cm RMS (Root Mean Square) depending on the lakes. Currently, lake water level inferred from satellite altimetry is provided with respect to an ellipsoid. Ellipsoidal heights are converted into orthométric heights using geoid models interpolated along the satellite tracks. These global geoid models were inferred from geodetic satellite missions coupled with absolute and regional anomaly gravity data sets spread over the Earth. However, the spatial resolution of the current geoid models does not allow capturing short wavelength undulations that may reach decimeters in mountaineering regions or for rift lakes (Baikal, Issykkul, Malawi, Tanganika). We interpolate in this work the geoid height anomalies with three recent geoid models, the EGM2008, XGM2016 and EIGEN-6C4d, and compare them with the Mean Surface of 22 lakes calculated using satellite altimetry. Assuming that MLS mimics the local undulations of the geoid, our study shows that over a large set of lakes (in East Africa, Andean mountain and Central Asia), short wavelength undulations of the geoid in poorly sampled areas can be derived using satellite altimetry. The models used in this study present very similar geographical patterns when compared to MLS. The precision of the models largely depends on the location of the lakes and is about 18 cm, in average over the Earth. MLS can serve as a validation dataset for any future geoid model. It will also be useful for validation of the future mission SWOT (Surface Water and Ocean Topography) which will measure and map water heights over the lakes with a high horizontal resolution of 250 by 250 m. 相似文献
35.
采用等距面生成球头刀加工刀具轨迹是曲面加工中一种常用的方法。但是,在对叶身曲面进行等距偏置时,经常出现无法偏置的问题。针对该问题,分析了曲面偏置自相交原因,并根据叶片类零件叶身曲面的特点,提出了一种叶身截面线光顺及等距面生成方法。该方法首先采用Kjellander方法将原始截面线进行自动光顺,然后根据光顺后的原始截面线和数据采样法构造偏置截面线,最后通过截面线放样法构造叶身曲面等距面。实例表明,采用Kjellander方法可以实现叶片曲面的自动光顺和叶片曲面等距面的构造。 相似文献
36.
罗怀晓 《航空精密制造技术》2016,(5)
本文通过分析归纳建立了一种叶轮数字化建模方法,并利用该方法成功实现了某型叶轮三维模型创建,同时也根据该数字化模型实现了模具数字化设计及其数控加工。 相似文献
37.
为了使高超声速飞行器能够跟踪预定指令,针对其严反馈模型提出了基于收缩理论的控制方法。由于高度和速度相对独立,因此分开设计控制器。控制器设计过程中,以基于反步法的收缩理论为核心,对于模型中不确定项利用自适应进行在线识别;引入动态面对虚拟控制输入进行求导,并利用收缩下的奇异摄动分析降阶系统,可以证明降阶前后状态误差间的偏差及滤波误差有界。采用此方法,可证明系统状态半全局收敛,跟踪误差及自适应估计误差有界。 相似文献
38.
39.
淮文博 《航空精密制造技术》2016,(4)
为了掌握砂布轮抛光工艺参数对抛光力的影响规律,提高抛光质量,设计了四因素三水平正交试验,利用试验结果建立了抛光力预测模型,验证了模型的显著性;分析了工艺参数对抛光力耦合影响规律,结果表明:抛光力随砂布轮初始半径和粒度的减小而增大,随转速和压缩量的增大而增大;对叶片进气边的抛光实验效果表明:通过控制压缩量可以获得稳定的抛光力,进而获得理想的抛光效果。 相似文献
40.
孔挤压强化对2124铝合金疲劳寿命及微观组织的影响 总被引:1,自引:0,他引:1
采用疲劳试验、透射电镜、扫描电镜及X射线衍射仪等方法研究了2124-T851铝合金厚板不同参数孔挤压强化后疲劳寿命与显微组织的变化。结果表明:孔挤压强化后试样的疲劳寿命先随挤压量的增大而升高,随后又迅速降低,挤压量为0.4 mm时疲劳寿命达到峰值,较未强化增加12.66倍;组织观察结果表明孔挤压强化后,在孔壁强化层内形成了位错胞状结构和残余压应力,并且随挤压量增大先迅速增加然后趋于平缓,强化层的形成可以有效延缓疲劳裂纹的扩展速率;同时,适当的孔挤压强化可改善表面粗糙度,降低裂纹萌生几率,从而提高材料的疲劳寿命。 相似文献