流体静力学是研究船舶浮性、稳性、抗沉性的主要理论基础。 4.1 Indroduction to Hydrostatics 4.2 Indroduction to Pressure 4.3 Pressure at a Point 4.4 Pressure Variation with Depth 4.5 Hydrostatic Pressure Difference Between Two Points 4.6 Pressure Measurement and Manometers 4.7 Pressure Distributions 4.8 Hydrostatic Force on a Plane Surface 4.9 Hydrostatic Force on Submerged Curved Surfaces 4.10 Examples
2.1 Plane stress and plane strain 平面应力问题与平面应变问题 2.2 Differential equations of equilibrium 平衡微分方程 2.3 Stress at a point. Principal stresses 一点的应力,主应力 2.4 Geometrical equations. Rigid-body displacements 一几何方程,刚体位移 Shear stress trajectories in a cantilever beam 悬臂梁的剪应力轨迹线 2.6 Physical equations. 物理方程 2.7 Boundary conditions 边界条件 2.8 Saint-venant`s principle-1 圣维南原理 2.9 solution of plane problem in terms of displacements 按位移求解平面问题 2.10 solution of plane problem in terms of stresses 按应力求解 2.11 Case of constant body forces 常体力情况 2.12 Airy`s stress function. Inverse method and semi-inverse method 艾瑞应力函数,逆解法,半 逆解法
8.1 INTRODUCTION The purpose of this chapter and Chap. 9 is to develop shock-wave theory, thus giving us the means to calculate the changes in the flow properties across a wave.本章和第九章的目的是推导激波理论,因而得出计算通过激波的流动特性变化量的公式