5.1 自旋卫星的稳定性和章动性 5.2 自旋卫星的章动阻尼 5.3 双自旋卫星稳定系统 5.4 重力梯度稳定系统 5.5 重力梯度稳定卫星的天平动阻尼
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3.1 航天器的姿态运动学 3.2 航天器的姿态动力学 3.3 航天器的一般运动方程 3.4 姿态干扰力矩
文件格式: PPT大小: 3.51MB页数: 65
2.1航天器轨道的基本定律 2.2二体轨道力学和运动方程 2.3航天器轨道的几何特性 2.5航天器的轨道摄动 2.4航天器的轨道描述
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11.1 空间站的概念和组成 11.2 空间站的导航、制导与控制
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10.1 航天飞机的结构组成 10.2 航天飞机的控制系统 10.3 航天飞机的飞行控制 10.4 航天飞机再入与着陆的制导与控制
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1.1 世界航天技术发展的概况 1.2航天器的分类与系统组成 1.3航天器控制的基本概念
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Chapter 1 Aerodynamics: Some Introductory Thoughts The term \aerodynamics\is generally used for problems arising from flight and other topics involving the flow of air. Ludwig Prandtl, 1949 Aerodynamics: The dynamics of gases, especially of atmospheric interactions with moving objects. The American Heritage Dictionary of English Language, 1969
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Chapter 2 Aerodynamics: Some Fundamental Principles and Equations There is so great a difference between a fluid and a collection of solid particles that the laws of pressure and of equilibrium of fluids are very different from the laws of the pressure and equilibrium of solids Jean Le Rond d' Alembert, 1768
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Chapter 3 Fundamentals of Inviscid, incompressible Flow Theoretical fluid dynamics, being a difficult subject, is for convenience, commonly divided into two branches, one treating frictionless or perfect fluids, the other treating of viscous or imperfect fluids. The frictionles fluid has no existence in nature, but is hypothesized by mathematicians in order to facilitate the investigation of important laws and principles that may be approximately true of viscous or natural fluids
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Chapter 4 Incompressible Flow Over Airfoils Of the many problems now engaging attention, the following are considered of immediate importance and will be considered by the committee as rapidly as funds can be secured for the purpose... The evolution of the more efficient
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