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Simulation and Optimization of Internal Combustion Engines /

Simulation and Optimization of Internal Combustion Engines provides the fundamentals and up-to-date progress in multidimensional simulation and optimization of internal combustion engines. While it is impossible to include all the models in a single book, this book intends to introduce the pioneer a...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Han, Zhiyu (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Warrendale : SAE International, 2021.
Temas:
Acceso en línea:Texto completo

MARC

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245 1 0 |a Simulation and Optimization of Internal Combustion Engines /  |c Zhiyu Han. 
264 1 |a Warrendale :  |b SAE International,  |c 2021. 
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520 |a Simulation and Optimization of Internal Combustion Engines provides the fundamentals and up-to-date progress in multidimensional simulation and optimization of internal combustion engines. While it is impossible to include all the models in a single book, this book intends to introduce the pioneer and/or the often-used models and the physics behind them providing readers with ready-to-use knowledge. Key issues, useful modeling methodology and techniques, as well as instructive results, are discussed through examples. Readers will understand the fundamentals of these examples and be inspired to explore new ideas and means for better solutions in their studies and work. Topics include combustion basis of IC engines, mathematical descriptions of reactive flow with sprays, engine in-cylinder turbulence, fuel sprays, combustions and pollutant emissions, optimization of direct-injection gasoline engines, and optimization of diesel and alternative fuel engines. 
505 0 |a Preface -- Abbreviations -- Nomenclature -- Superscript -- Subscript -- 1. Introduction -- 2. Combustion basis of internal combustion engines -- 3. Mathematical description of reactive flow with sprays -- 4. In-cylinder turbulence -- 5. Fuel sprays -- 6. Combustion and pollutant emissions -- 7. Optimization of direct-injection gasoline engines -- 8. Optimization of diesel and alternative fuel engines -- Index -- About the author. 
590 |a eBooks on EBSCOhost  |b EBSCO eBook Subscription Academic Collection - Worldwide 
650 0 |a Internal combustion engines. 
650 0 |a Internal combustion engines  |x Simulation methods. 
650 6 |a Moteurs à combustion interne. 
650 6 |a Moteurs à combustion interne  |x Méthodes de simulation. 
650 7 |a gas engines.  |2 aat 
650 7 |a Technology & Engineering, Machinery.  |2 bisacsh 
650 7 |a Technology & Engineering, Mechanical.  |2 bisacsh 
650 7 |a Computers, Computer Simulation.  |2 bisacsh 
650 7 |a Internal combustion engines  |2 fast 
776 0 8 |i Print version:  |a Han, Zhiyu.  |t Simulation and Optimization of Internal Combustion Engines.  |d Warrendale : SAE International, ©2021  |z 9781468604009 
856 4 0 |u https://ebsco.uam.elogim.com/login.aspx?direct=true&scope=site&db=nlebk&AN=3137730  |z Texto completo 
880 |6 504-00/(S  |a References-3 Mathematical Description of Reactive Flow with Sprays-3.1 Governing and Spray Equations-3.1.1 Governing Equations of Gas Phase-3.1.2 Spray Equation-3.2 Numerical Methods-3.2.1 The KIVA Code-3.2.2 The CONVERGE Code-3.3 Boundary Conditions-3.3.1 General Description-3.3.2 Velocity Law-of-the-Wall Function-3.3.3 Temperature Wall Function and Wall Heat Transfer-References-4 In-Cylinder Turbulence-4.1 Turbulence Features in Reciprocating Engines-4.1.1 In-Cylinder Flows-4.1.2 Turbulence Scales-4.2 RANS Methodology and Classical k-ε Models 
880 8 |6 505-00/(S  |a 4.2.1 RANS Methodology -- 4.2.2 The Classical k-ε Model -- 4.3 RNG k-ε Models -- 4.3.1 RNG Methodology -- 4.3.2 The RNG k-ε Model for Variable-Density Flows -- 4.3.3 Other RNG k-ε Model Variants -- 4.4 Large-Eddy Simulation -- 4.4.1 LES Methodology and Sub-Grid Models -- 4.4.1.1 Smagorinsky Model -- 4.4.1.2 Dynamic Smagorinsky Model -- 4.4.1.3 k-Equation Model -- 4.4.1.4 Dynamic Structure Model -- 4.4.2 Engine Simulation Examples -- 4.4.2.1 Intake and In-Cylinder Flows -- 4.4.2.2. Cycle-to-Cycle Combustion Variation -- 4.4.2.3 Low-Temperature Spray Combustion 
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