SAE J 1826-1989 Turbocharger Gas Stand Test Code Recommended Practice .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 entirelyvoluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefro
2、m, 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.QUESTIONS REGARDING THIS DOCUMENT: (724) 772-8512 FAX: (724) 776-0243TO PLACE A DOCUMENT
3、 ORDER; (724) 776-4970 FAX: (724) 776-0790SAE WEB ADDRESS http:/www.sae.orgCopyright 1995 Society of Automotive Engineers, Inc.All rights reserved. Printed in U.S.A.SURFACEVEHICLE400 Commonwealth Drive, Warrendale, PA 15096-0001RECOMMENDEDPRACTICESubmitted for recognition as an American National Sta
4、ndardJ1826REAF.MAR95Issued 1989-04Reaffirmed 1995-03Superseding J1826 APR89TURBOCHARGER GAS STAND TEST CODEForewordThis Reaffirmed Document has been changed only to reflect the new SAE Technical Standards BoardFormat.1. ScopeThe test procedures outlined in this SAE Recommended Practice are applicabl
5、e to single rotorturbochargers having either fixed- or variable-geometry with the following caveat:At this stage in the development of variable-geometry (VG) turbochargers, it would be impractical to generatea detailed practice to cover all types of VG turbochargers which may evolve. However, there
6、is a requirementto quote performance data within a stipulated degree of accuracy and to furnish comprehensive performanceinformation. This will form a basis for this document where further refinements may be added as experienceand necessity dictate.1.1 PurposeThe purpose of this document is to provi
7、de a recommended laboratory test procedure andpresentation format for establishing the component performance for a turbocharger. It is intended that this testprocedure be used to determine turbocharger compressor and turbine performance characteristics. Theresulting data are intended for use in turb
8、ocharger component performance assessment and development andfor engine/turbocharger matching.2. References2.1 Applicable PublicationThe following publication forms a part of this specification to the extent specifiedherein. The latest issue of SAE publications shall apply.2.1.1 SAE PUBLICATIONAvail
9、able from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001.SAE J922Turbocharger Nomenclature and TerminologySAE J1826 Reaffirmed MAR95-2-2.2 Related PublicationsThe following publications are provided for information purposes only and are not arequired part of this document.2.2.1 SAE PUBLICATI
10、ONSAvailable from SAE, 400 Commonwealth Drive, Warrendale, PA 15096-0001.SAE J244Measurement of Intake Air or Exhaust Gas Flow of Diesel EnginesSAE J1349Engine Power Test CodeSpark Ignition and DieselTSB 003Rules for SAE Use of SI (Metric) UnitsPrinciples of Turbomachinery, D.G. Shepherd, MacMillanG
11、as Properties, Keenan and Kaye, John Wiley & SonsExperimental Methods for Engineers, J.P. Holman, McGraw-Hill3. Definitions and Terminology(See also SAE J922, Section 2.)3.1 Turbocharger Hardware 3.1.1 FIXED-GEOMETRY TURBOCHARGERTurbocharger having no moving parts in the aerodynamic flowpath otherth
12、an the compressor impeller and turbine rotor.3.1.2 VARIABLE-GEOMETRY TURBOCHARGERTurbocharger incorporating moving parts such as, but not limited to,compressor inlet guide vanes, variable-geometry compressor diffuser, moveable turbine inlet nozzle vanes,and/or a wastegate.3.1.3 AUXILIARY EQUIPMENTEq
13、uipment not directly associated with the compression or expansion processes, butnecessary for proper turbocharger/engine system operation, such as:a. Actuator for variable-geometry device (example: wastegate actuator).3.2 Turbocharger Performance(See also SAE J922, Section 3.)3.2.1 FLOWCompressor ai
14、r mass flow = kg/s of air mass flow through the compressorCorrected compressor air mass flow =Compressor air mass flow xCompressor-inlet total absolute temperature (K)298 K(Compressor inlet total absolute pressure (kPa)/100 kPa)Turbine gas flow = kg/s of gas flow through the turbineTurbine gas flow
15、parameter =Turbine gas flow xTurbine-inlet total absolute temperature (K)Turbine-inlet total absolute pressure (kPa)3.2.2 PRESSURE RATIO (EXPANSION RATIO)Outlet-air static absolute pressure (kPa)Compressor pressure ratio =Inlet-air total absolute pressure (kPa)Inlet-gas total absolute pressure (kPa)
16、Turbine expansion ratio =Outlet-gas static absolute pressure (kPa)SAE J1826 Reaffirmed MAR95-3-3.2.3 EFFICIENCYIsentropic enthalpy rise across compressor stage calculated using compressor pressure ratioCompressor efficiency =Actual total enthalpy rise across compressor stageCombined turbine x mechan
17、ical efficiency =(Eq. 1)3.2.4 SPEED PARAMETER(Eq. 2)(Eq. 3)Turbine inlet total absolute temperature (K)3.2.5 SURGEA line on the left-hand side of a compressor map as determined on a steady-flow test stand. Surgeis the boundary of an area of severe flow reversal combined with audible coughing and ban
18、ging.4. Test Measurement and AccuracyThe test measurements as follows are required in turbochargerperformance determination. The measurement accuracies specified do not include human or other probableerrors in the reading.4.1 Airflow 1%4.2 Pressure 0.5%4.3 Temperature 0.5%4.4 Speed 0.5%4.5 Duct diam
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