SAE R-359-2006 Technologies for Near-Zero-Emission Gasoline-Powered Vehicles (To Purchase Call 1-800-854-7179 USA Canada or 303-397-7956 Worldwide).pdf
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1、Technologies for Near-Zero-Emission Gasoline- Powered Vehicles Edited by Fuquan (Frank) ZhaoTechnologies for Near-Zero-Emission Gasoline-Powered VehiclesOther SAE titles of interest: Advanced Developments in Ultra-Clean Gasoline-Powered Vehicles By Fuquan (Frank) Zhao (Order No. PT-104) Automotive G
2、asoline Direct-Injection Engines By Fuquan (Frank) Zhao, David L. Harrington, and Ming-Chia Lai (Order No. R-315) Vehicular Engine Design By Kevin L. Hoag (Order No. R-369) For more information or to order a book, contact SAE International at 400 Commonwealth Drive, Warrendale, PA 15096-0001; phone
3、(724) 776-4970; fax (724) 776-0790; e-mail CustomerServicesae.org; website http:/store.sae.org.Technologies for Near-Zero-Emission Gasoline-Powered Vehicles Fuquan (Frank) Zhao SAE International Warrendale, Pa. Copyright 2007 SAE International eISBN: 978-0-7680-4301-3All rights reserved. No part of
4、this publication may be reproduced, stored in a retrieval system, or transmitted, in any form or by any means, electronic, mechani- cal, photocopying, recording, or otherwise, without the prior written permission of SAE. For permission and licensing requests, contact: SAE Permissions 400 Commonwealt
5、h Drive Warrendale, PA 15096-0001 USA E-mail: permissionssae.org Tel: 724-772-4028 Fax: 724-772-3036 Library of Congress Cataloging-in-Publication Data Zhao, Fuquan. Technologies for near-zero-emission gasoline-powered vehicles / Fuquan (Frank) Zhao. p. cm. Includes bibliographical references and in
6、dex. ISBN-13: 978-0-7680-1461-7 ISBN-10: 0-7680-1461-1 1. Automobiles-Motors-Technological innovations. 2. Internal combustion engines, Spark ignition-Technological innovations. I. Title. TL210.Z454 2007 629.2504-dc22 2006040905 SAE International 400 Commonwealth Drive Warrendale, PA 15096-0001 USA
7、E-mail: CustomerServicesae.org Tel: 877-606-7323 (inside USA and Canada) 724-776-4970 (outside USA) Fax: 724-776-0790 Copyright 2007 SAE International ISBN-10 0-7680-1461-1 ISBN-13 978-0-7680-1461-7 SAE Order No. R-359 Printed in the United States of America.Contents Preface xv Chapter 1 Transient E
8、ngine Startup and Shutdown Processes 1 By Wai K. Cheng 1.1 Introduction 1 1.2 The Engine Shutdown Process for Port Fuel Injected Engines 2 1.2.1 General Behavior During the Shutdown Process 2 1.2.2 Impact of the Shutdown Process on Hydrocarbon Emissions 4 1.3 The Engine Startup Process for Port Fuel
9、 Injected Engines 5 1.3.1 Initial Conditions for Engine Startup 5 1.3.2 General Behavior During the Startup Process 6 1.3.3 Mixture Preparation in the Startup Transient 10 1.3.4 Combustion in the Startup Transient 20 1.3.5 Hydrocarbon Emissions in the Startup Transient 20 1.4 The Engine Startup Proc
10、ess for Direct Injection Spark Ignition Engines 22 1.5 Summary 25 1.6 References 26 Chapter 2 Mixture Formation Processes 31 By Ron Matthews and Matt Hall 2.1 Introduction 31 2.2 Liquid Fuel as a Source of Hydrocarbon Emissions 32 2.3 Fuel Injection Hardware and Controls 44 2.3.1 Injector Types 44 v
11、Near-Zero-Emission Gasoline-Powered Vehicles 2.3.2 Injection Timing 47 2.3.3 Other Injection Parameters 51 2.4 Flow Field Effects 56 2.5 Strategies to Improve Fuel Preparation and Reduce Liquid Fuel Effects During Cold Start and Warm-Up .60 2.6 Summary 64 2.7 References 69 Chapter 3 Cold-Start Hydro
12、carbon Emissions Mechanisms 79 By James A. Eng 3.1 Introduction 79 3.2 Global Engine Behavior During a Cold Start. 80 3.2.1 Required Fueling Levels 83 3.2.2 Fuel Accounting 84 3.3 Hydrocarbon Storage Mechanisms 86 3.3.1 Storage in Crevices 88 3.3.2 Absorption in Oil Layers and Deposits 90 3.3.3 Liqu
13、id Fuel 92 3.3.4 Quench Layers 96 3.3.5 Partial Burns 98 3.3.6 Rich Air/Fuel Operation 100 3.4 Hydrocarbon Transport Mechanisms 100 3.4.1 Transport Mechanisms at Warm Conditions 101 3.4.2 Transport Mechanisms at Cold Conditions 103 3.5 Hydrocarbon Oxidation 104 3.5.1 Hydrocarbon Oxidation Mechanisms
14、 105 3.5.2 Hydrocarbon Consumption Rates 106 3.5.3 Post-Flame Hydrocarbon Consumption in Engines .109 3.6 Summary. 112 3.7 References 114 viContents Chapter 4 Characterization of Cold Engine Processes . 121 By Choongsik Bae 4.1 Introduction 121 4.2 Fuel Injection Characteristics and Fuel Delivery in
15、to the Engine Cylinder 122 4.2.1 Fuel Sprays 122 4.2.2 Wall Wetting 127 4.2.3 Fuel Delivery into the Engine Cylinder 130 4.3 Mixture Distribution and Its Interaction with Flow 134 4.4 Combustion Processes and Pollutant Formation 142 4.5 Summary 145 4.6 References 146 Chapter 5 Spark Retardation for
16、Improving Catalyst Light-Off Performance. .157 By Stephen Russ 5.1 Introduction 157 5.2 Calibration Actions for Improving Catalyst Light-Off. 157 5.3 Engine Operation with Retarded Ignition 160 5.4 Approaches for More Robust Operation with Ignition Retard 163 5.4.1 Enhanced Charge Motion 163 5.4.2 D
17、ual Spark Ignition 167 5.5 Summary 168 5.6 References 169 Chapter 6 Secondary Air Injection for Improving Catalyst Light-Off Performance 173 By Fuquan (Frank) Zhao and Mark Borland 6.1 Introduction 173 6.2 Principle and System Layout of Secondary Air Injection 174 viiNear-Zero-Emission Gasoline-Powe
18、red Vehicles 6.3 Thermal Oxidation Versus Catalytic Oxidation 178 6.4 Role of Temperature and Mixing in Enhancing the Thermal Oxidation Process . 181 6.5 Requirements for Engine Enrichment and Secondary Air Injection Quantity 191 6.6 Secondary Air Injection Control and Onboard Diagnostics.193 6.6.1
19、Open-Loop Control 194 6.6.2 Closed-Loop Control 194 6.6.3 Sensors for Feedback Control 196 6.7 Other Application Considerations for Secondary Air Injection 197 6.7.1 Application of Secondary Air Injection to Vee Engines 197 6.7.2 Application of Secondary Air Injection to Turbocharged Engines 198 6.7
20、.3 Other Application Issues 199 6.8 Summary 200 6.9 References 201 Chapter 7 Effects of Fuel Properties and Fuel Reforming on Cold-Start Hydrocarbon Emissions and Catalyst Light-Off .205 By James A. Eng 7.1 Introduction 205 7.2 Gasoline Properties .207 7.2.1 Composition .207 7.2.2 Volatility 208 7.2
21、.3 Driveability 211 7.2.4 Reformulated Gasoline 214 7.3 Fuel Effects on Hydrocarbon Emissions 215 7.4 Onboard Fuel Reformers 220 7.4.1 Steam Reforming 222 viiiContents 7.4.2 Partial Oxidation Reforming 223 7.4.3 Autothermal Reforming 225 7.4.4 Cold-Start Performance Improvements 226 7.4.5 Improved C
22、atalyst Light-Off 227 7.4.6 Cold-Starting Alcohol-Fueled Vehicles. 228 7.5 Onboard Fuel Distillation 229 7.6 Summary 233 7.7 References 234 Chapter 8 Advanced Catalyst Design 241 By Paul J. Andersen, Todd H. Ballinger, and David S. Lafyatis 8.1 Introduction 241 8.2 Advanced Three-Way Catalyst Concep
23、ts and Design 247 8.3 Catalyst System Design Principles for Meeting Partial Zero Emissions Vehicle Emissions Standards 255 8.4 Summary .263 8.5 References 264 Chapter 9 The Hydrocarbon Trap 269 By Kimiyoshi Nishizawa 9.1 Introduction 269 9.2 Functions of the Hydrocarbon Trap 269 9.2.1 Hydrocarbon Tr
24、ap System 269 9.2.2 Materials 270 9.3 Factors to Control Efficiency 272 9.3.1 Selecting and Developing Trapping Material 273 9.3.2 Selecting and Developing the Catalyst Coating.275 9.3.3 Selecting the Shape of the Catalyst Substrate 276 9.4 Measures for Improving System Efficiency 277 ixNear-Zero-Em
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