SAE J 2765-2008 Procedure for Measuring System COP [Coefficient of Performance] of a Mobile Air Conditioning System on a Test Bench《试验支路上移动式空气调节系统的性能系数(COP)测量程序》.pdf
《SAE J 2765-2008 Procedure for Measuring System COP [Coefficient of Performance] of a Mobile Air Conditioning System on a Test Bench《试验支路上移动式空气调节系统的性能系数(COP)测量程序》.pdf》由会员分享,可在线阅读,更多相关《SAE J 2765-2008 Procedure for Measuring System COP [Coefficient of Performance] of a Mobile Air Conditioning System on a Test Bench《试验支路上移动式空气调节系统的性能系数(COP)测量程序》.pdf(20页珍藏版)》请在麦多课文档分享上搜索。
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 theref
2、rom, 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 2008 SAE International All rights reserved. No part of this publication ma
3、y 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.orgJ2765 OCT2008 SURFACEVEHICLESTANDARDIssued 2008-10Procedure for Measuring System COP Coefficient of Performance of aMobile Air Conditioning System on a Test Bench RATIONALEThe impact of mobile air conditioning systems
5、on the environment is becoming more important. Fuel used to power the system impacts both fuel economy of the vehicle and tail pipe emissions of carbon dioxide. 1. SCOPE 1.1 This Standard applies to motor driven mobile air conditioning systems consisting of one in-car air coil (evaporator), a compre
6、ssor, an expansion device, and one under-hood air coil (condenser).1.1.1 This standard can also be used for measuring systems that use electrically driven compressor if measurement of input power to compressor is carefully considered. 1.1.2 This standard can also be used for measuring systems that i
7、nclude the entire air handling system if air side pressure drop for the entire vehicle system is carefully considered. 1.1.3 This standard can also be used for measuring systems that include the entire front end cooling module if air side pressure drop for the entire vehicle system is carefully cons
8、idered. 1.1.4 This standard can also be used for measuring systems that include a secondary cooling loop if the power to drive the pumps in this system is carefully considered. 1.2 This Standard specifies procedures, apparatus, and instrumentation that will produce accurate steady state capacity and
9、 efficiency data for refrigerant components. 1.3 This Standard does not: 1.3.1 Specify tests for dual evaporator systems, 1.3.2 Specify transient test methods, 1.3.3 Make recommendations for safety 1.3.4 Specify tests for production, specification compliance, or field testing of mobile air condition
10、ing systems.Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE J2765 Issued OCT2008 - 2 -1.4 Purpose 1.4.1 This Standard provides a method of testing the capacity (performance) and efficiency (COP)
11、of mobile air conditioning refrigerant systems under steady state conditions. 1.4.2 The procedure proposed is designed to give maximum repeatability and minimum error in determining cooling capacity (Q) and efficiency (COP Coefficient of Performance) of the refrigeration system of the mobile air con
12、ditioner. For that reason a “breadboard” type facility is proposed in which components are assembled into a system and exposed to operating conditions in individual, separately controlled chambers. The facility should allow for three methods to determine system performance: refrigerant side, airside
13、, and calorimetric chambers. Each side yields its own energy balance calculation to find the capacity of the system. With the three methods used, instead of two as typically required, redundancy will be maintained even when the evaporator refrigerant exit is two phase. In this case only the airside
14、and chamber balances are available. The design should be made so that two independent methods could provide agreement of less than 4.0% between two independent balances.2. REFERENCES 2.1 Applicable Publications The following publications form a part of this specification to the extent specified here
15、in. Unless otherwise indicated, the latest version of publications shall apply. 2.1.1 ASHRAE Publications Available from American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc., 1791 Tullie Circle, N.E., Atlanta, GA 30329-2305, Tel: 404-636-8400, www.ashrae.org.1ANSI/ASHRAE S
16、tandard 41.1-1986 (RA 2001) Standard Method for Temperature Measurement 2ANSI/ASHRAE Standard 41.6-1994 (RA 2001) Standard Method for Measurement of Moist Air Properties 3ASHRAE Standard 41.3-1989 Standard Method for Pressure Measurement 6ASHRAE Standard 41.2-1987 (RA 92) Standard Methods for Labora
17、tory Airflow Measurement 7ANSI/ASHRAE Standard 51-1999 Laboratory Methods of Testing Fans for Aerodynamic Performance Rating (AMCA Standard 210-99) 8ANSI/ASHRAE Standard 37-2005 Methods of Testing for Rating Electrically Driven Unitary Air-Conditioning and Heat Pump Equipment 9ANSI/ASHRAE Standard 4
18、1.4-1996 Standard Method for Measurement of Proportion of Lubricant in Liquid Refrigerant 2.1.2 ASME Publication Available from American Society of Mechanical Engineers, 22 Law Drive, P.O. Box 2900, Fairfield, NJ 07007-2900, Tel: 973-882-1170, www.asme.org.4Fluid MetersTheir Theory and Application,
19、Sixth Edition, 1971 Copyright SAE International Provided by IHS under license with SAENot for ResaleNo reproduction or networking permitted without license from IHS-,-,-SAE J2765 Issued OCT2008 - 3 -2.1.3 ARI Publication Available from Air-Conditioning and Refrigeration Institute, 4100 North Fairfax
20、 Drive, Suite 200, Arlington, VA 22203, Tel: 703-524-8800, www.ari.org.5ARI Standard 700-2004 Specifications for Fluorocarbon Refrigerants 2.1.4 NIST Publication Available from National Institute of Standards and Technology, 100 Bureau Drive, Stop 1070, Gaithersburg, MD 20899-1070, Tel: 301-975-6478
21、, www.nist.gov.10NIST Standard Reference Database 23 NIST Thermodynamic and Transport Properties of Refrigerants and Refrigerants and Refrigerant MixturesREFPROP 6 3. DEFINITIONS 3.1 Air, Standard Dry air having a mass density of 1.204 kg/m3(0.075 lb/ft3).3.2 Apparatus As used in this standard, this
22、 term refers exclusively to test room facilities and instrumentation. 3.3 Capacity, Total Cooling The rate, expressed in watts (Btu/hr), at which the equipment removes heat from the air passing through it under specified conditions of operation. 3.4 COP, Coefficient of Performance A measure of the e
23、fficiency of an air conditioning system is defined as the average heat removed through the evaporator divided by the average work input to the compressor. Averaging is done using the balances available and/or as described in 7.4.1. This COP is the highest possible because it does not account for air
24、 movement, heat transmission or other losses of similar nature. 3.4.1 Adjustments to this calculation may be necessary for electrically driven compressors, in case the air handling system is used, in the case of front end cooling module is used, and for secondary cooling loop systems. 3.5 Equipment
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