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1.
Bingbing Duan Urs Hugentobler Inga Selmke 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(5):1803-1812
Solar Radiation Pressure (SRP) is the dominant non-gravitational perturbation for GNSS (Global Navigation Satellite System) satellites. In the absence of precise surface models, the Empirical CODE Orbit Models (ECOM, ECOM2) are widely used in GNSS satellite orbit determination. Based on previous studies, the use of an a priori box-wing model enhances the ECOM model, especially if the spacecraft is a stretched body satellite. However, so far not all the GNSS system providers have published their metadata. To ensure a precise use of the a priori box-wing model, we estimate the optical parameters of all the Galileo, BeiDou-2, and QZS-1 (Quasi Zenith Satellite System) satellites based on the physical processes from SRP to acceleration. Validation using orbit prediction proves that the adjusted parameters of Galileo and QZS-1 satellites exhibit almost the same performance as the corresponding published and “best guess” values. Whereas, the estimated parameters of BeiDou-2 satellites demonstrate an improvement of more than 60% over the initial “guess” values. The resulting optical parameters of all the satellites are introduced into an a priori box-wing model, which is jointly used with ECOM and ECOM2 model in the orbit determination. Results show that the pure ECOM2 model exhibits better performance than the pure ECOM model for Galileo, BeiDou-2 GEO and QZS-1 orbits. Combined with the a priori box-wing model the ECOM model (ECOM+BW) results in the best Galileo, BeiDou-2 GEO and QZS-1 orbits. The standard deviation (STD) of satellite laser ranging residuals reduce by about 20% and 5% with respect to the pure ECOM2 model for Galileo and BeiDou-2 GEO orbits, while the reductions are about 40% and 60% for QZS-1 orbits in yaw-steering and orbit-normal mode respectively. BeiDou-2 IGSO and MEO satellite orbits do not benefit much from the a priori box-wing model. In summary, we suggest setting up a unified SRP model of ECOM+BW for Galileo, QZS-1, and BeiDou-2 orbits based on the adjusted metadata. In addition, we estimate the optical parameters of BeiDou-3e and QZS-2 satellites using a limited number of tracking stations. Results regarding the unified SRP model indicate the same advantages, the STD of satellite laser ranging residuals reduces by about 30% and 20% for QZS-2 and BeiDou-3e orbits respectively over orbit products without a priori model. The estimation procedure is effective and easy to apply to the new emerging satellites in the future. 相似文献
2.
《中国航空学报》2020,33(7):2043-2054
Finite element modeling (FEM), microscopy, X-ray computed tomography (CT) and mechanical property tests were used to study the microstructure, porosity and mechanical properties of an AlSi10Mg alloy produced by selective laser melting (SLM). The simulation of the melt pool and thermal history under different energy densities produced an optimized result with an energy density of 44.5 J·mm−3. The high cooling rate during the SLM process significantly refined the previous α-Al dendrites. The growth direction of the network-like Al-Si eutectic structure at different orientations confirmed the anisotropic nature of the microstructure. Furthermore, the microhardness, tensile testing and fracture analysis results proved that there were no obvious distinctions in the strength between the transverse and longitudinal directions, and that the ductility was anisotropic, possibly due to the shape and distribution of the pores. The pores measured by X-ray CT at different energy densities confirmed that the sphericity of the pores was inversely related to pores volumes. With optimized processing conditions, the porosity of the selective laser melted sample decreased leading to the improved fabricated fuel system component via SLM. 相似文献
3.
文中选择大、中、小3种典型结构尺寸的发射箱,利用计算流体动力学(Computational fluid dynamics,CFD)仿真软件Fluent对发射箱蒙皮表面在导弹发射过程中的力、热环境进行了仿真分析。以铝合金材料为例,对发射箱蒙皮材料在燃气流环境中力学性能损伤情况进行了烧蚀试验研究。研究结果表明,随着烧蚀时间延长,铝合金材料力学性能损伤存在一个突变点,在1.5 s内下降不明显,但是当烧蚀时间延长至2.0 s时,力学性能急剧下降至0。该研究结果为铝合金发射箱轻量化设计、热防护设计和使用次数设计等提供了数据支撑。 相似文献
4.
连续玄武岩纤维及其复合材料耐腐蚀特性 总被引:18,自引:0,他引:18
通过考察玄武岩纤维在蒸馏水、氢氧化钠溶液及盐酸中煮沸3h后的强度与质量变化,及其复合材料在8种化学介质中分别浸泡15d、30d和90d后的力学性能与表面形态变化,对一种国产连续玄武岩纤维及其复合材料的耐化学介质腐蚀性能进行了实验研究.结果表明,该玄武岩纤维及其复合材料都有很好的耐水及耐碱性能,且纤维的耐碱性能优于其耐酸性能.由于玄武岩纤维的耐酸碱性能差异,使复合材料具有如下腐蚀特性:酸性介质中,复合材料弯曲强度和弯曲模量同步降低;碱性介质中,复合材料弯曲强度降低,而弯曲模量几乎保持不变. 相似文献
5.
为研究酚醛树脂对芳纶纸蜂窝性能的影响,本文采用两种不同的酚醛树脂制备芳纶纸蜂窝芯材,对所制备蜂窝芯材的压缩性能和剪切性能进行测试,同时结合蜂窝端面树脂分布观察、树脂与芳纶纸接触角测量等方法,分析了两种树脂所制备蜂窝芯材性能出现差异的原因,结果表明:树脂中溶剂水的挥发速度、树脂与芳纶纸之间的表面张力会影响树脂在蜂窝壁上的树脂分布;蜂窝芯材树脂含量相同时,其节点两侧的树脂胶柱有利于提高蜂窝芯材压缩强度,但树脂堆积在节点后会降低蜂窝壁厚,造成蜂窝的剪切强度和模量下降。 相似文献
6.
采用二烯丙基双酚A(Ortho-dially Bisphenol A,以下简称O-DABPA)对T型双马来酰亚胺(Bismaleimide,以下简称BMI)树脂进行改性,并用红外光谱(Fourier TransformInfrared,以下简称FT-IR)、差式扫描量热仪(Differential ScanningCalorimetry,以下简称DSC)对改性前后的树脂结构及固化反应进行测定,利用热熔预浸法对改性BMI树脂制备预浸料,考查了预浸料的力学性能及高温下的弯曲性能。结果表明,在175℃下二烯丙基双酚A和T型双马来酰亚胺树脂质量比为1∶1,反应时间为1 h时,改性BMI树脂制备的预浸料工艺性良好,单向板层间剪切强度为84.86 Mpa,在240℃时,弯曲强度及模量分别为1 326.41 MPa和120.31 GPa,强度保留率为76.73%。 相似文献
7.
SiC纤维增强SiC陶瓷基复合材料(SiCf/SiC复合材料)在航空发动机热端部件方面具有重要应用。本文以第二代碳化硅纤维为增强材料,采用熔融渗硅工艺制备出SiCf/SiC复合材料,测试复合材料的基本物理性能及常规力学性能,并利用Micro-CT、SEM对试样的微观结构和断面进行了表征分析。结果显示:SiCf/SiC复合材料的体积密度为2.78 g/cm3,开气孔率小于2.0%,基体较为致密,1 200 ℃时热导率(厚度方向)为14.30 W/(m?K),室温~1 200 ℃厚度方向和面内方向的线胀率分别为0.59%、0.56%,平均热胀系数分别为5.02×10-6、4.73×10-6/K;室温面内拉伸强度典型值为317 MPa,SEM显示试样断面具有明显的纤维拔出效应,弯曲强度和层间拉伸强度典型值分别达794和49 MPa。 相似文献
8.
Flow separation control on swept wing with nanosecond pulse driven DBD plasma actuators 总被引:3,自引:2,他引:1
A 15° swept wing with dielectric barrier discharge plasma actuator is designed.Experimental study of flow separation control with nanosecond pulsed plasma actuation is performed at flow velocity up to 40 m/s. The effects of the actuation frequency and voltage on the aerodynamic performance of the swept wing are evaluated by the balanced force and pressure measurements in the wind tunnel. At last, the performances on separation flow control of the three types of actuators with plane and saw-toothed exposed electrodes are compared. The optimal actuation frequency for the flow separation control on the swept wing is detected, namely the reduced frequency is 0.775, which is different from 2-D airfoil separation control. There exists a threshold voltage for the low swept wing flow control. Before the threshold voltage, as the actuation voltage increases, the control effects become better. The maximum lift is increased by 23.1% with the drag decreased by 22.4% at 14°, compared with the base line. However, the best effects are obtained on actuator with plane exposed electrode in the low-speed experiment and the abilities of saw-toothed actuators are expected to be verified under high-speed conditions. 相似文献
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