航空燃气轮机涡轮气体动力学 流动机理及气动设计 英文版 邹正平,王松涛,刘火星,张伟昊著 2018年版
资料介绍
航空燃气轮机涡轮气体动力学 流动机理及气动设计 英文版
作者: 邹正平,王松涛,刘火星,张伟昊著
出版时间:2018年版
内容简介
本书是关于涡轮气体动力学方面的一本专著,书中简要介绍了涡轮气体动力学相关概念,系统阐述了轴流涡轮、级间过渡段和后承力机闸通道、径流涡轮等内部流动机理,分析了不同维数的数值评估方法,给出了涡轮气体设计和流动控制领域的新进研究成果,并对涡轮部件涉及的多学科耦合问题进行了探讨。
本书可供从事燃气轮机涡轮设计和研究的科研技术人员、高等学校教师、研究生及高年级本科生等使用。
目录
Chapter 1 Fundamental Concepts
1.1 Introduction to Gas Turbines
1.2 Primary Geometrical Parameters
1.3 Fundamental Equations of Turbine Aerothermodynamics
1.3.1 Continuity Equation
1.3.2 Energy Equation
1.3.3 Moment of Momentum Equation
1.4 Velocity Triangles of Conventional Axial Turbine Stages
1.5 Boundary Layer on Blade Surface
1.5.1 Boundary Layer Thickness
1.5.2 Boundary Layer Transition
1.5.3 Boundary Layer Separation
1.6 Wakes
1.7 Secondary Flows
1.8 Tip Leakage Flow
1.9 Potential Field
1.10 Shock Waves and Expansion Waves
1.11 Flow Mixing in Turbines
1.12 Blade Loading
1.13 Loss and Efficiency
1.13.1 Loss and Efficiency of Turbine Cascades
1.13.2 Efficiency of Uncooled Turbine
1.13.3 Efficiency of Cooled Turbine
References
Chapter 2 Flow Mechanism in High Pressure Turbines
2.1 Introduction to High Pressure Turbines
2. 1.1 Structure and Characteristics of High Pressure Turbines
2.1.2 Development Status and Trends of High Pressure Turbines
2. 1.3 Factors on Efficiency of High Pressure Turbines
2. 1.4 Further Development of High Pressure Turbines and New
Features of Aerodynamic Research
2.2 Aerodynamic and Geometrical Features of High Pressure Turbines
2.2.1 Aerodynamic Design Features of High Pressure Turbines
2.2.2 Blade Profile Features of High Pressure Turbines
2. 3 Complex Wave System in High-Loaded High-Pressure Turbines
2.3.1 Wave Systems in High Pressure Turbines
2.3.2 Interaction between Shock Waves and Boundary Layer
2.4 Secondary Flow of High Pressure Turbines and Control Techniques
2.4. 1 Secondary Flow in High Pressure Turbines
2.4. 2 Factors of Influencing Secondary Flows in High Pressure Turbines
2.5 Leakage Flows of High Pressure Turbines and Control Techniques
2.5.1 Geometrical and Aerodynamic Parameters on Tip Leakage
Flows in High Pressure Turbines
2.5.2 Active Clearance Controls
2.6 Influence of Interaction between Cooling Flow and the Main Flow on
Aerodynamic Performance
2.6.1 Influence of Film Cooling on Aerodynamic Performance
2.6. 2 Influence of Endwalls and Sealing Flow on Aerodynamic Performance
References
Chapter 3 Flow Mechanism in Inter Turbine Ducts
3.1 Geometrical and Aerodynamic Characteristics of Inter-turbine Duct and Development Trends
……
Chapter 4 Flow Mechanisms in Low-Pressure Turbines
Chapter 5 Flow Mechanism in Turbine Rear Frame Ducts
Chapter 6 Aerodynamic Design Technologies for Turbines
Chapter 7 Flow Control Technologies
Chapter 8 Multidisciplinary Coupling Analysis and Design
Index
作者: 邹正平,王松涛,刘火星,张伟昊著
出版时间:2018年版
内容简介
本书是关于涡轮气体动力学方面的一本专著,书中简要介绍了涡轮气体动力学相关概念,系统阐述了轴流涡轮、级间过渡段和后承力机闸通道、径流涡轮等内部流动机理,分析了不同维数的数值评估方法,给出了涡轮气体设计和流动控制领域的新进研究成果,并对涡轮部件涉及的多学科耦合问题进行了探讨。
本书可供从事燃气轮机涡轮设计和研究的科研技术人员、高等学校教师、研究生及高年级本科生等使用。
目录
Chapter 1 Fundamental Concepts
1.1 Introduction to Gas Turbines
1.2 Primary Geometrical Parameters
1.3 Fundamental Equations of Turbine Aerothermodynamics
1.3.1 Continuity Equation
1.3.2 Energy Equation
1.3.3 Moment of Momentum Equation
1.4 Velocity Triangles of Conventional Axial Turbine Stages
1.5 Boundary Layer on Blade Surface
1.5.1 Boundary Layer Thickness
1.5.2 Boundary Layer Transition
1.5.3 Boundary Layer Separation
1.6 Wakes
1.7 Secondary Flows
1.8 Tip Leakage Flow
1.9 Potential Field
1.10 Shock Waves and Expansion Waves
1.11 Flow Mixing in Turbines
1.12 Blade Loading
1.13 Loss and Efficiency
1.13.1 Loss and Efficiency of Turbine Cascades
1.13.2 Efficiency of Uncooled Turbine
1.13.3 Efficiency of Cooled Turbine
References
Chapter 2 Flow Mechanism in High Pressure Turbines
2.1 Introduction to High Pressure Turbines
2. 1.1 Structure and Characteristics of High Pressure Turbines
2.1.2 Development Status and Trends of High Pressure Turbines
2. 1.3 Factors on Efficiency of High Pressure Turbines
2. 1.4 Further Development of High Pressure Turbines and New
Features of Aerodynamic Research
2.2 Aerodynamic and Geometrical Features of High Pressure Turbines
2.2.1 Aerodynamic Design Features of High Pressure Turbines
2.2.2 Blade Profile Features of High Pressure Turbines
2. 3 Complex Wave System in High-Loaded High-Pressure Turbines
2.3.1 Wave Systems in High Pressure Turbines
2.3.2 Interaction between Shock Waves and Boundary Layer
2.4 Secondary Flow of High Pressure Turbines and Control Techniques
2.4. 1 Secondary Flow in High Pressure Turbines
2.4. 2 Factors of Influencing Secondary Flows in High Pressure Turbines
2.5 Leakage Flows of High Pressure Turbines and Control Techniques
2.5.1 Geometrical and Aerodynamic Parameters on Tip Leakage
Flows in High Pressure Turbines
2.5.2 Active Clearance Controls
2.6 Influence of Interaction between Cooling Flow and the Main Flow on
Aerodynamic Performance
2.6.1 Influence of Film Cooling on Aerodynamic Performance
2.6. 2 Influence of Endwalls and Sealing Flow on Aerodynamic Performance
References
Chapter 3 Flow Mechanism in Inter Turbine Ducts
3.1 Geometrical and Aerodynamic Characteristics of Inter-turbine Duct and Development Trends
……
Chapter 4 Flow Mechanisms in Low-Pressure Turbines
Chapter 5 Flow Mechanism in Turbine Rear Frame Ducts
Chapter 6 Aerodynamic Design Technologies for Turbines
Chapter 7 Flow Control Technologies
Chapter 8 Multidisciplinary Coupling Analysis and Design
Index
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