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书名 弥散性多相湍流反应流动的理论与模拟(英文版)
分类 科学技术-自然科学-物理
作者 周力行
出版社 清华大学出版社
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简介
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周力行著的《弥散性多相湍流反应流动的理论与模拟(英文版)》在介绍多相流、湍流和燃烧理论的基础上,给出了多相湍流反应流动的基本方程、单相湍流和多相湍流以及湍流燃烧的数学物理模型,讨论了求解多相湍流反应流动的数值模拟方法,最后列举了在不同燃烧装置中的应用实例。
本书适合高校和科研院所工程热物理、流体力学、热能动力等专业的师生和研究工作者阅读。
目录
Preface
Nomenclature
Introduction
I. Some Fundamentals of Dispersed Multiphase Flows
1.1 Particle/Spray Basic Properties
1.1.1 Particle/Droplet Size and Its Distribution
1.1.2 Apparent Density and Volume Fraction
1.2 Particle Drag, Heat, and Mass Transfer
1.3 Single-Particle Dynamics
1.3.1 Single-Particle Motion Equation
1.3.2 Motion of a Single Particle in a Uniform Flow Field
1.3.3 Particle Gravitational Deposition
1.3.4 Forces Acting on Particles in Nonuniform Flow Field
1.3.4.1 Magnus Force
1.3.4.2 Saffman Force
1.3.4.3 Particle Thermophoresis, Electrophoresis,
and Photophoresis
1.3.5 Generalized Particle Motion Equation
1.3.6 Recent Studies on Particle Dynamics
References
Further Reading
2. Basic Concepts and Description of Turbulence
2.1 Introduction
2.2 Time Averaging
2.3 Probability Density Function
2.4 Correlations, Length, and Time Scales
References
3. Fundamentals of Combustion Theory
3.1 Combustion and Flame
3.2 Basic Equations of Laminar Multicomponent Reacting Flows
and Combustion
3.2.1 Thermodynamic Relationships of Multicomponent
Gases
3.2.2 Molecular Transport Laws of Multicomponent Reacting
Gases
3.2.3 Basic Relationships of Chemical Kinetics
3.2.4 The Reynolds Transport Theorem
3.2.5 Continuity and Diffusion Equations
3.2.6 Momentum Equation
3.2.7 Energy Equation
3.2.8 Boundary Conditions at the Interface and Stefan Flux
3.3 Ignition and Extinction
3.3.1 Basic Concept
3.3.2 Dimensional Analysis
3.3.3 Ignition in an Enclosed VesseI--Simonov's Unsteady
Model
3.3.4 Ignition Lag (Induction Period)
3.3.5 Ignition by a Hot Plate--Khitrin-Goldenberg Model
3.3.6 Ignition and Extinction--Vulis Model
3.4 Laminar Premixed and Diffusion Combustion
3.4.1 Background
3.4.2 Basic Equations and Their Properties
3.4.3 Two-Zone Approximate Solution
3.4.4 Laminar Diffusion Flame
3.5 Droplet Evaporation and Combustion
3.5.1 Background
3.5.2 Droplet Evaporation in Stagnant Air
3.5.3 Basic Equations for Droplet Evaporation
and Combustion
3.5.4 Droplet Evaporation With and Without Combustion
3.5.5 Droplet Evaporation and Combustion under Forced
Convection
3.5.6 The a~ Law
3.5.7 Experimental Results
3.5.8 Droplet Ignition and Extinction
3.6 Solid-Fuel: Coal-Particle Combustion
3.6.1 Background
3.6.2 Coal Pyrolyzation (Devolatilization)
3.6.3 Carbon Oxidation
3.6.4 Carbon Oxidation--Basic Equations
3.6.5 Carbon Oxidation--Single-Flame-Surface Model-Only
Reaction 1 or 2 at the Surface
3.6.6 Carbon Oxidation--Two-Flame-Surface Model
3.6.7 Coal-Particle Combustion
3.7 Turbulent Combustion and Flame Stabilization
3.7.1 Background
3.7.2 Turbulent Jet Diffusion Flame
3.7.3 Turbulent Premixed Flame-Damkohler-Shelkin's
Wrinkled-Flame Model
3.7.4 Turbulent Premixed Flame-Summerfield-Shetinkov's
Volume Combustion Model
3.7.5 Flame Stabilization
3.8 Conclusion on Combustion Fundamen
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