SAE AIR 6037-2010 Aircraft Exhaust Nonvolatile Particle Matter Measurement Method Development《非挥发性航空器尾气颗粒物测量方法的开发》.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 2010 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: +1 724-776-4970 (outside U
4、SA) Fax: 724-776-0790 Email: CustomerServicesae.org SAE WEB ADDRESS: http:/www.sae.org SAE values your input. To provide feedback on this Technical Report, please visit http:/www.sae.org/technical/standards/AIR6037 AEROSPACE INFORMATION REPORT AIR6037 Issued 2010-03 Aircraft Exhaust Nonvolatile Part
5、icle Matter Measurement Method Development RATIONALE This Aerospace Information Report consists of methodologies for nonvolatile exhaust particle measurements at the exit plane of aircraft gas turbine engines. Multiple methods are described in each of the four technical appendices to this report, to
6、 determine particle mass, particle number and size, sampling, and quantification. Each method for particle mass, particle number, and size measurement technique is introduced and organized by common sections: equipment, analyzer routines, calibration standards, system layout, test procedure, data fl
7、ow, and calculation of results. The sections describing sampling and quantification methods are applicable to any of the measurement methods. This common approach is used because the methods are intended for review and evaluation in testing environments, which provides a path to further develop some
8、, or all, methods into recommended practices. Additional research is needed on calibration sources and standards, probe design, sample collection, representative sampling, and inter-instrument characterization and comparison. TABLE OF CONTENTS 1. SCOPE 8 2. REFERENCES, DEFINITIONS, NOMENCLATURE 8 3.
9、 INTRODUCTION. 8 3.1 Background . 8 3.2 Particle Matter Measurement Methods . 8 3.3 Mass Measurement 8 3.4 Particle Size and Number Density Measurement . 9 3.5 Sampling . 9 3.6 Quantification 9 4. NOTES 9 SAE AIR6037 Page 2 of 84 TECHNICAL APPENDIX A - PARTICLE MASS A.1 SCOPE 10 A.2 REFERENCES 10 A.
10、2.1 SAE Publications . 10 A.2.2 Other References 10 A.2.3 Definitions . 11 A.2.4 Symbols and Terminology 12 A.3 INTRODUCTION. 13 A.4 GRAVIMETRY 15 A.4.1 Equipment . 15 A.4.2 Analyzer Routines . 15 A.4.3 Calibration Standards . 16 A.4.3.1 Filter Media . 16 A.4.3.2 Balance . 16 A.4.3.3 Carbon Burn-off
11、 . 17 A.4.4 System Layout 17 A.4.5 Test Procedure 18 A.4.5.1 System Checkout Procedure 18 A.4.5.2 Sampling Procedure . 19 A.4.6 Data Flow 19 A.4.7 Calculation of Results . 19 A.5 MICROBALANCE TAPERED ELEMENT 19 A.5.1 Equipment . 20 A.5.2 Analyzer Routines . 20 A.5.2.1 Leak Checks . 20 A.5.2.2 Flow A
12、udits 20 A.5.2.3 Differential Pressure Verification/Calibration 20 A.5.2.4 Differential Temperature Verification/Calibration 20 A.5.3 Calibration Standards . 21 A.5.4 System Layout 21 A.5.5 Test Procedure 21 A.5.5.1 Starting a Sampling Run . 21 A.5.5.2 Data Retrieval . 21 A.5.6 Data Flow 22 A.5.7 Ca
13、lculation of Results . 22 A.6 MICROBALANCE QUARTZ CRYSTAL . 22 A.6.1 Equipment . 22 A.6.2 Analyzer Routines . 23 A.6.2.1 Instrument Zero . 23 A.6.2.2 Crystal Cleaning 23 A.6.2.3 Flow Audit . 23 A.6.3 Calibration Standards . 23 A.6.3.1 Sensor Validation 23 A.6.3.2 Flow Calibration and Leak Check . 23
14、 A.6.4 System Layout 23 A.6.5 Test Procedure 23 A.6.5.1 Starting a Sampling Run . 23 A.6.5.2 Ending a Run and Data Retrieval . 24 SAE AIR6037 Page 3 of 84 A.6.6 Data Flow 24 A.6.7 Calculation of Results . 24 A.7 MULTIANGLE ABSORPTION PHOTOMETRY 24 A.7.1 Equipment . 25 A.7.2 Analyzer Routines . 25 A.
15、7.2.1 System Operation . 25 A.7.2.2 Pump Control 26 A.7.2.3 Flow Audit . 27 A.7.2.4 Temperature Sensors . 27 A.7.2.5 Pressure Sensors . 27 A.7.2.6 Optics Chamber 27 A.7.3 Calibration Standards . 27 A.7.4 System Layout 28 A.7.5 Test Procedure 28 A.7.6 Data Flow 28 A.7.7 Calculation of Results . 28 A.
16、7.7.1 Mass of Black Carbon . 28 A.7.7.2 Air Flow Rate . 29 A.7.7.3 Black Carbon Mass Concentration . 29 A.8 LASER-INDUCED INCANDESCENCE (EXTRACTIVE) 29 A.8.1 Equipment . 30 A.8.2 Analyzer Routines . 30 A.8.2.1 System Operation . 30 A.8.2.2 Flow Control 31 A.8.2.3 Temperature and Pressure Sensors . 3
17、1 A.8.2.4 Sample Cell . 31 A.8.3 Calibration Standards . 32 A.8.4 System Layout 32 A.8.5 Test Procedure 32 A.8.6 Data Flow 32 A.8.7 Calculation of Results . 32 A.9 LASER-INDUCED INCANDESCENCE (NONINTRUSIVE) . 33 A.9.1 Equipment . 33 A.9.2 Analyzer Routines . 35 A.9.2.1 System Operation . 35 A.9.3 Ca
18、libration . 37 A.9.4 System Layout 37 A.9.5 Test Procedure 37 A.9.6 Data Flow 38 A.9.7 Calculation of Results . 38 A.10 INSTRUMENT CALIBRATION . 38 A.10.1 Equipment . 38 A.10.2 Analyzer Routines . 38 A.10.3 Calibration Standards . 39 A.10.4 System Layout 39 A.10.5 Test Procedure 39 A.10.6 Data Flow
19、40 A.10.7 Calculation of Results . 40 SAE AIR6037 Page 4 of 84 TECHNICAL APPENDIX B - PARTICLE NUMBER AND SIZE B.1 SCOPE 41 B.2 REFERENCES 41 B.2.1 SAE Publications . 41 B.2.2 Other References 41 B.2.3 Definitions . 43 B.2.4 Symbols and Terminology 44 B.3 INTRODUCTION. 45 B.4 CONDENSATION PARTICLE C
20、OUNTER . 49 B.4.1 Equipment . 49 B.4.2 Analyzer Routines . 50 B.4.2.1 Working Liquid 50 B.4.2.2 Instrument Zero . 50 B.4.2.3 Leak Check . 50 B.4.2.4 Flow Audit . 51 B.4.2.5 Response Time . 51 B.4.3 Calibration Standards . 51 B.4.3.1 Certification of CNC Performance 51 B.4.3.2 Flow Calibration 51 B.4
21、.4 System Layout 52 B.4.5 Test Procedure 52 B.4.6 Data Flow 52 B.4.7 Calculation of Results . 52 B.5 SCANNING (STEPPING) MOBILITY PARTICLE SIZER . 52 B.5.1 Equipment . 53 B.5.2 Analyzer Routines . 54 B.5.2.1 Activity of Bipolar Charger 54 B.5.2.2 Working Liquid of CNC . 54 B.5.2.3 Instrument Zero .
22、54 B.5.2.4 Leak Check . 55 B.5.2.5 Flow Audit . 55 B.5.2.6 CNC Response Time 55 B.5.3 Calibration Standards . 55 B.5.3.1 Certification of the CNC Performance 56 B.5.3.2 Certification of the SMPS Performance 56 B.5.3.3 Flow Calibration 56 B.5.3.4 Verification of Sizing Accuracy 57 B.5.4 System Layout
23、 57 B.5.5 Test Procedure 57 B.5.6 Data Flow 57 B.5.7 Calculation of Results . 57 B.6 RAPID MOBILITY PARTICLE SIZER (RMPS) . 58 B.6.1 Equipment . 58 B.6.2 Analyzer Routines . 59 B.6.2.1 Cleaning of Cyclone 59 B.6.2.2 Cleaning of Charger 60 B.6.2.3 Cleaning of Classification Chamber 60 B.6.2.4 Instrum
24、ent Zero and Filter Check . 60 SAE AIR6037 Page 5 of 84 B.6.2.5 Leak Check and Flow Audit 60 B.6.3 Calibration Standards . 60 B.6.3.1 Certification of the RMPS Performance 61 B.6.3.2 Flow Calibrations and Leak Checks . 61 B.6.4 System Layout 61 B.6.5 Test Procedure 61 B.6.6 Data Flow 61 B.6.7 Calcul
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