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Engineering fluid mechanics

Engineering fluid mechanics

出版社:中国矿业大学出版社出版时间:2020-01-01
开本: 24cm 页数: 239页
本类榜单:工业技术销量榜
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Engineering fluid mechanics 版权信息

  • ISBN:9787564648954
  • 条形码:9787564648954 ; 978-7-5646-4895-4
  • 装帧:一般胶版纸
  • 册数:暂无
  • 重量:暂无
  • 所属分类:>

Engineering fluid mechanics 内容简介

本书共分9章,内容包括绪论、流体属性、流体静力学、流体运动学、流体动力学、量纲分析与流动相似、层流与紊流、流动微分方程理论和空气动力学基础等。本书可以作为能源与动力工程专业全英文授课使用,也可作为机械自动化、土木工程、环境工程等专业本科生的流体力学或工程流体力学课程教材,同时可用于其他相近专业的教学参考书,也可供相关工程技术人员参考。

Engineering fluid mechanics 目录

Chapter 1 Introduction 1.1 Basic Concepts of A Fluid 1.2 Introduction to Fluid Mechanics 1.3 Development of Fluid Mechanics 1.4 Dimensions and Units Chapter 2 Fluid Properties 2.1 Measures of Fluid Mass and Weight 2.2 Viscosity 2.3 Compressibility and Expansibility of Fluids 2.4 Surface Tension and Capillarity Summary Problems Chapter 3 Fluid Statics 3.1 Forces on Fluids 3.2 Static Pressure of Fluids and Its Properties 3.3 Basic Equation of Fluids Statics 3.4 Measurement of Pressure 3.5 Forces on Plane Surfaces Due to Hydrostatic Pressure 3.6 Forces on A Curved Surface Due to Hydrostatic Pressure 3.7 Stability of Immersed and Floating Bodies Summary Problems Chapter 4 Fluid Kinematics 4.1 Description of Fluid Motion 4.2 Basic Concepts of Flow 4.3 Types of Motion Summary Problems Chapter 5 Fluid Dynamics 5.1 Reynolds Transport Theorem 5.2 Continuity Equation 5.3 Integral Momentum Equation 5.4 Energy Equation 5.5 Bernoulli's Equation Along A Streamline 5.6 Bernoulli's Equation for A Total Flow 5.7 Applications of Basic Equations of Fluid Dynamics Summary Problems Chapter 6 Dimensional Analysis and Similitude 6.1 Dimensional Analysis 6.2 Similitude and Mode Test Summary Problems Chapter 7 Laminar Flow and Turbulent Flow 7.1 Two Flow Regimes 7.2 Navier-Stokes Equation of Incompressible Viscous Fluid 7.3 Laminar Steady Flow in A Straight Pipe 7.4 Laminar Flow in An Annular Pipe 7.5 Laminar Flow between Parallel Plates 7.6 Turbulent Flow 7.7 Experimental Study on Major Head Loss 7.8 Minor Head Loss 7.9 Hydraulic Calculation for Pipe Systems 7.10 Flow Through Orifices Summary Problems Chapter 8 Differential Analysis of Fluid Flow 8.1 Differential Form of Continuity Equation 8.2 Differential Form of Motion Equation 8.3 Euler's Integration and Bernoulli's Integration 8.4 Velocity Potential and Stream Function 8.5 Basic Two-dimensional Potential Flows 8.6 Combination of Potential Flows 8.7 Flow Around A Cylinder Summary Problems Chapter 9 Compressible Flow 9.1 Basis of Thermodynamics 9.2 Fundamental Equations for Compressible Flow 9.3 Wave Propagation in A Compressible Media 9.4 Specific Conditions 9.5 Isentropic Flow 9.6 Compressible Flow in A Pipe with Friction 9.7 Normal Shock Waves Summary Problems References
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