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排序方式: 共有1076条查询结果,搜索用时 93 毫秒
901.
H. Hanada T. Iwata N. Namiki N. Kawano K. Asari T. Ishikawa F. Kikuchi Q. Liu K. Matsumoto H. Noda S. Tsuruta S. Goossens K. Iwadate O. Kameya Y. Tamura X. Hong J. Ping Y. Aili S. Ellingsen W. Schlüter 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2008
The Japanese lunar explorer SELENE (SElenological and Engineering Explorer), to be launched in 2007, will for the first time utilize VLBI observations in lunar gravimetry investigations. This will particularly improve the accuracy to which the low degree gravitational harmonics and the gravity field near the limb can be measured, and when combined with Doppler measurements will enable three-dimensional information to be extracted. Differential VLBI Radio sources called VRAD experiment involves two on-board sub-satellites, Rstar and Vstar. These will be observed using differential VLBI to measure the trajectories of the satellites with the Japanese network named VERA (VLBI Exploration of Radio Astrometry) and an international VLBI network. 相似文献
902.
三维曲面部分匹配的算法研究 总被引:6,自引:0,他引:6
将基于曲率分析的曲面片形状划分方法和几何哈希相结合,提出一种通用的空间曲面匹配算法。对待匹配的三维曲面模型,计算其网格顶点的主曲率和法矢;由主曲率和该点所在的曲面片类型来构造其无向脚标,有向脚标为该点的法矢。按照多重筛选标准生成数量少却有效的匹配点对,建立候选点对列表。由候选点对所生成的三维空间变换组成哈希表,运用双层哈希投票机制得出使模型能够正确匹配的三维坐标变换矩阵。实验表明,该算法适用于具有部分重叠的曲面模型的匹配,并能保证较好的匹配精度和速度。 相似文献
903.
基于地理信息系统软件平台,利用空间信息显
示与数据管理技术,研究了由机场净空评价管理,机场道面评价管理和飞行区地下管线管理
3个子系统组成的机场飞行区运行数字化管理系统。净空评价管理系统通过坐标变换、净空
限制面三维场景建模、障碍物评价算法研究等,实现了基于地理信息的障碍物三维可视化管
理与评价及基于飞行程序的飞机进、离场动态仿真。道面评价管理系统进行了机场道面三维
场景及道面属性信息数字化、属性信息数据库分析、道面各项性能指标和功能模块的算法研
究。实现了机场道面信息的三维场景显示与属性信息查询、基于现场调查和测试数据的场道
PCN、PCI计算;场道剩余使用寿命预测;根据评价结果智能提供维修建议及辅助决策等功能
,并据此提出了基于空间数据的道面综合评价管理理念。地下管线管理系统研究了基于管线
地理信息数据的三维可视化管理模型,实现了地下管线的三维数字化查询与管理。本系统
整合了机场飞行区运行管理的各项功能,使管理工作数字化、智能化,为机场高效运行提
供了有力保障。 相似文献
904.
905.
L.F. Chernogor K.P. Garmash Q. Guo V.T. Rozumenko Yu Zheng Y. Luo 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2021,67(8):2439-2469
The purpose of the present paper is to describe the observations of the variations in the parameters of HF radio waves propagating through the ionosphere when the action of the super typhoon Hagibis on 6–13 October 2019 occurred. The observations have been made with the Harbin Engineering University (the People's Republic of China) multi-frequency multiple path radio system involving the software-defined technology. The action of the super typhoon has been shown to be accompanied by enhanced atmospheric wave activity acting to generate wave processes with periods of 10 to 120 min. Coupling in the atmosphere–upper-atmosphere–ionosphere system has been confirmed to be carried out with atmospheric gravity waves. The ionosphere underwent the greatest impact on those days when the supertyphoon had maximum energy, on 8, 10, and especially 9 October 2019, and when it was found to be in an ~2,500–3,000-km distance range from the propagation path midpoints. Under the action of wave processes, the height of the reflection region was observed to oscillate within the ±(30–90 km) limits. The amplitude of the quasi-periodic variations in the ionospheric F-region electron density was estimated to be 10–12% for periods of ~20 min, and 30–60% for periods of ~60–120 min. The joint action of the dusk terminator and the supertyphoon has been confirmed to enhance wave activity in the ionosphere. Similar effects for the dawn terminator have not been detected. 相似文献
906.
Y.W. Wang C.X. Yang 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2011
A novel computational model for analyzing the airship’s transient thermal performance under different environmental conditions was developed. Radiative heat transfer and natural convection inside the airship were modeled using the control volume method. The Semi-Implicit Method aiming at the Pressure-Linked Equations algorithm was adopted to solve the control equations. Such approach was able to take into account the solar irradiative heat flux, the infrared radiation at different locations, and the convection both inside and outside the airship. The simulation results, showing the detailed distributions of temperature and velocity on the envelope and inside the airship, were in good agreement with the experimental measurements. The influences of solar position and material radiative properties on temperature distribution, as well as natural convective flow inside airship, were further simulated and discussed. 相似文献
907.
Single cells and cell culture are very good model for estimation of primary effects of gravitational changes. It is suggested that cell cytoskeleton plays a key role in mechanisms of adaptation to mechanical influences including gravitational ones. Our results demonstrated that cultured cells of human vascular endothelium (correction of endotheliun) are highly sensitive to hypogravity (clinorotation) and respond by significant decrease of cell proliferative activity. Simultaneously it was noted that the formation of confluent monolayer appeared early in cultures exposed to simulated microgravity due to accelerated cells spreading. Long-term hypogravity (several hours or days) leads to significant changes of cell cytoskeleton revealed as microfilament thinning and their redistribution within cell. Such changes were observed only in monolayer cells and not in cell suspensions. Gravitational forces as known to be modificators of cell adhesive ability and determine their mobility. Hypogravity environment stimulated endothelial cell migration in culture: 24-48 hrs pre-exposition to hypogravity significantly increased endothelial cell migration resulting in 2-3-fold acceleration of mechanically injured monolayer repair. Obtained results suggest that the effects of hypogravity on cultured human endothelial cells are, possibly, associated with protein kinase C and/or adenylate cyclase activity and are accompanied by noticeable functional cell changes. 相似文献
908.
Started 16 years ago, the ESEME program has led to a number of important findings. We note a simple and unified view of phase transitions, which has been applied to the development of biological patterns, and a very fast thermalization mode that we coined the “piston effect”. This effect has been applied to control the cryogenic reservoirs of the Ariane 5 rocket. All these findings have been obtained thanks to the good coordination of the ESA and CNES space facilities and the construction of high technology experimental modules. The future of the program is linked to the CNES DECLIC facility and the ESA Fluid Science Laboratory (FSL). DECLIC has been designed to increase the temperature regulation above the critical point of water (550 K) so as to investigate chemical reactions under conditions of supercritical water, and in relation to the promising applications of waste treatment by supercritical oxidation. Thanks to the construction of a special vibrational Experiment Container for FSL, the thermal and mechanical behavior of fluids under forced vibration can be investigated. The results of such studies will help to estimate the effect of g-jitter on fluids, and control gases and liquids in space. 相似文献
909.
IMM estimator versus optimal estimator for hybrid systems 总被引:2,自引:0,他引:2
Bar-Shalom Y. Challa S. Blom H.A.P. 《IEEE transactions on aerospace and electronic systems》2005,41(3):986-991
The special feature of the interacting multiple model (TMM) estimator that distinguishes it from other suboptimal multiple model (MM) estimators is the "mixing/interaction" between its "mode-matched" base state filtering modules at the beginning of each cycle. This note shows that the same feature is exactly what it has in common with the optimal estimator for hybrid (MM) systems and this can be seen as the main reason for its success. 相似文献
910.
H Nakamura S Morita Y Kumei K Aoki H Shimokawa K Ohya K I Shinomiya 《Acta Astronautica》2001,49(3-10):179-190
The right hindlimbs of 5 or 6-week old Wistar male rats were sciatic/femoral neurectomized, tenotomized or sham operated. The rats were sacrificed 2 weeks after the surgery and the tibiae were removed. pQCT measurement was performed on total, cortical, and trabecular bone separately at different regions. Reduction of the bone mineral density by unloading was observed more significantly at metaphysis than at diaphysis due to histological heterogeneity between metaphysis and diaphysis; metaphysis is rich in trabecular bone and diaphysis is abundant in cortical bone. Trabecular bone might be more sensitive to unloading because the reduction rate of volumetric bone mineral density in trabecular bone was approximately 10 times and 3 times larger than that of cortical bone in both neurectomy and tenotomy rats, respectively, Unloading also reduced the cross-sectional area and stress strain index at metaphysis. 相似文献