SAE J 2715-2007 Gasoline Fuel Injector Spray Measurement and Character《汽油燃料喷射器喷雾测量和特性》.pdf
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1、_ SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirely voluntary, and its applicability and suitability for any particular use, including any patent infringement arising there
2、from, is the sole responsibility of the user.” SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions. Copyright 2007 SAE International All rights reserved. No part of this publication m
3、ay be reproduced, stored in a retrieval system or transmitted, in any form or by any means, electronic, mechanical, photocopying, recording, or otherwise, without the prior written permission of SAE. TO PLACE A DOCUMENT ORDER: Tel: 877-606-7323 (inside USA and Canada) Tel: 724-776-4970 (outside USA)
4、 Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org J2715 ISSUED MAR2007 SURFACE VEHICLE RECOMMENDED PRACTICE Issued 2007-03 Gasoline Fuel Injector Spray Measurement and Characterization RATIONALE The rationale for this document is that fuel spray measurement and char
5、acterization continues to become increasingly critical to the automotive industry; whereas no comprehensive, industry-wide set of measurement and reporting procedures has been available. This has led to a situation in which many spray parameters and test procedures have, of necessity, been created a
6、nd utilized within individual original equipment manufacturer (OEM) companies, and even among third-party testing laboratories and universities. This non-uniformity regarding test and reporting procedures has resulted in a lack of repeatability and traceability for many claimed spray parameters. It
7、has also made it very difficult for any laboratory to check the values of spray-characterization parameters that are reported by another laboratory. The lack of standardization has also resulted in considerable confusion and obfuscation regarding the names and definitions of spray parameters as they
8、 apply to port fuel injection and gasoline-direct injection. The current situation regarding the term “cone angle” for these two classes of injectors is a prime example. The use of the uniform and well-defined procedures for test configuration, testing, data reduction and reporting that are containe
9、d in this document should significantly enhance the ability of one spray-test laboratory to accurately repeat and verify the results of another. The very detailed procedures and test specifications for all of the spray parameters should also serve to reduce the variation of spray parameter values th
10、at are reported, even for the same injector model. This should, in turn, reduce the overall time and overhead for obtaining a proven fuel system for an engine, as OEMs could ultimately conduct one set of spray tests per J2715 as opposed to a separate set of tests for each customer. This document sho
11、uld also supply the industry with a neutral, unbiased test for each defined spray parameter. TABLE OF CONTENTS 1. SCOPE 4 1.1 PURPOSE. 4 2. REFERENCES 5 2.1.1 SAE Publications. 5 2.2 Related Publications . 5 2.2.1 ASTM Publications 5 2.2.2 ISO Publications 5 3. BASIC SPRAY CHARACTERISTICS AND DEFINI
12、TIONS 6 3.1 Introduction to Gasoline Fuel Spray . 6 3.2 Fuel Injector and Spray Classifications. 8 3.3 Measurement of Fuel Spray Characteristics. 10 3.3.1 Basic Concepts in the Use of Imaging to Obtain Fuel Spray Characteristics. 11 3.3.2 Port Fuel Injection Spray Characteristics Obtained Using Patt
13、ernation. 16 3.3.3 Fuel Spray Characteristics Obtained Using Drop Sizing 24 3.4 List of Abbreviations 25 3.5 Nomenclature 26 SAE J2715 Issued MAR2007 - 2 - 4. STANDARD TEST CONDITIONS 27 4.1 Ambient Condition. 27 4.2 Test Fluid 27 4.3 Fluid Pressure. 27 4.4 Fluid Temperature. 27 4.5 Injector Tempera
14、ture. 28 4.6 Injection Period (P) 28 4.7 Injection Pulse Width (IPW) 28 4.8 Injector Driver 28 4.9 Injector Polarity . 28 4.10 Test Apparatus 28 4.10.1 Instruments . 28 4.10.2 Injector Position. 28 4.10.3 Preconditioning . 28 4.10.4 Flow Measurement . 28 4.11 Summary of Standard Test Conditions. 29
15、5. TEST EQUIPMENT AND ENVIRONMENT 30 5.1 Fuel Pressurization System 30 5.1.1 Port Fuel Injection System 30 5.1.2 Direct Injection System . 30 5.2 Electrical System. 31 5.3 Ambient Pressure 32 5.4 Establishment of a Purge Flow for Spray Testing. 32 6. SPRAY CHARACTERIZATION, TESTING AND ANALYSIS . 33
16、 6.1 Spray Geometry Evaluation Using Imaging 33 6.1.1 Definitions . 34 6.1.2 Test Equipment for Spray Imaging . 34 6.1.3 Test Procedure for Spray Imaging 36 6.1.4 Summary of Standard Test Conditions for Spray Imaging . 37 6.1.5 Data Reduction and Analysis for Spray Imaging 37 6.1.6 Required Informat
17、ion for Spray Imaging Data Reporting .40 6.2 Fuel Mass Distribution in PFI Sprays using Patternation . 42 6.2.1 Test Equipment for Port Fuel Injection Patternation. 43 6.2.2 Test Procedure for Port Fuel Injection Patternation . 47 6.2.3 Summary of Standard Test Conditions for Port Fuel Injection Pat
18、ternation. 48 6.2.4 Data Reduction and Analysis for Port Fuel Injection Patternation 49 6.2.5 Required Information for Port Fuel Injection Patternation Data Reporting. 54 6.3 Drop Size Measurement Overview . 56 6.3.1 Correspondence Between the Drop Sizes Measured by PDI and Laser Diffraction 57 6.3.
19、2 Definitions of Terms in Laser-Based Drop Sizing. 58 6.3.3 Test Equipment for Drop Sizing 59 6.4 Laser Diffraction Drop Size Measurement 59 6.4.1 Instrument Configuration and Test Procedure for Laser Diffraction Drop Sizing . 61 6.4.2 Summary of Standard Test Conditions for Laser Diffraction Drop S
20、izing 69 6.4.3 Data Reduction and Required Information for Laser Diffraction Data Reporting . 69 6.5 Phase-Doppler Interferometry Drop Size Measurement 71 6.5.1 Test Procedure for Phase-Doppler Interferometry Drop Sizing 74 6.5.2 Overview of PDI Scan Line Orientation Considerations . 78 6.5.3 Summar
21、y of Standard Test Conditions for PDI Drop Sizing. 80 6.5.4 Data Reduction and Analysis for PDI Drop Sizing 80 6.5.5 Required Information for PDI Data Reporting. 82 6.5.6 Weighting of PDI Point Measurements by the Fuel Volume Flux. 85 7. OTHER TESTING TO SUPPORT SPRAY MEASUREMENT 88 7.1 Background o
22、f Port Fuel Injection Drippage Test. 88 7.2 Test Procedure for Port Fuel Injection Drippage 89 SAE J2715 Issued MAR2007 - 3 - 7.3 Summary of Standard Test Conditions for Port Fuel Injector Drippage . 91 7.4 Data Reporting for Port Fuel Injector Drippage Test 91 APPENDIX A - COMPARISON OF MECHANICAL
23、AND OPTICAL PATTERNATION 94 APPENDIX B - DROP SIZING BY IMAGE ANALYSIS. 95 APPENDIX C - DISCUSSION OF TIME-RESOLVED VS. TIME-INTEGRATED DROP-SIZE MEASUREMENTS. 96 APPENDIX D - COMPLEX MULTI-PLUME SPRAYS OVERVIEW AND CONSIDERATIONS FOR THE DETERMINATION OF THE LOCATION OF PEAK FUEL FLUX 98 APPENDIX E
24、 - CALLIGRAPHY PAPER TEST FOR OBTAINING THE SPRAY PATTERN AND LOCATION OF PEAK FLUX OF G-DI OR PFI SPRAY PLUMES 100 APPENDIX F - LOGIC AND INJECTION PULSE TIMING DIAGRAMS FOR DRIVING FUEL INJECTORS 102 APPENDIX G - HYSICAL PROPERTY SPECIFICATIONS FOR N-HEPTANE. 104 Figure 1 - Major Classification of
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