ANSI ASME PTC 11-2008 Fans.pdf
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1、FansAN AMERICAN NATIONAL STANDARDASME PTC 11-2008Performance Test Codes(Revision of ASME PTC 11-1984)FansASME PTC 11-2008(Revision of ASME PTC 11-1984)A N AMERICAN NATIONAL STANDARDPerformance Test Codes Date of Issuance: December 8, 2008 This Code will be revised when the Society approves the issua
2、nce of a new edition. There will be no addenda issued to PTC 11-2008. ASME issues written replies to inquiries concerning interpretations of technical aspects of this document. Periodically certain actions of the ASME PTC Committee may be published as Code Cases. Code Cases and interpretations are p
3、ublished on the ASME Web site under the Committee Pages at http:/cstools.asme.org as they are issued. ASME is the registered trademark of The American Society of Mechanical Engineers. This code or standard was developed under procedures accredited as meeting the criteria for American National Standa
4、rds. The Standards Committee that approved the code or standard was balanced to assure that individuals from competent and concerned interests have had an opportunity to participate. The proposed code or standard was made available for public review and comment that provides an opportunity for addit
5、ional public input from industry, academia, regulatory agencies, and the public-at-large. ASME does not “approve,” “rate,” or “endorse” any item, construction, proprietary device, or activity. ASME does not take any position with respect to the validity of any patent rights asserted in connection wi
6、th any items mentioned in this document, and does not undertake to insure anyone utilizing a standard against liability for infringement of any applicable letters patent, nor assumes any such liability. Users of a code or standard are expressly advised that determination of the validity of any such
7、patent rights, and the risk of infringement of such rights, is entirely their own responsibility. Participation by federal agency representative(s) or person(s) affiliated with industry is not to be interpreted as government or industry endorsement of this code or standard. ASME accepts responsibili
8、ty for only those interpretations of this document issued in accordance with the established ASME procedures and policies, which precludes the issuance of interpretations by individuals. No part of this document may be reproduced in any form, in an electronic retrieval system or otherwise, without t
9、he prior written permission of the publisher. The American Society of Mechanical Engineers Three Park Avenue, New York, NY 10016-5990 Copyright 2008 by THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS All rights reserved Printed in U.S.A. iii CONTENTS Notice. vi Foreword . vii Committee Roster . ix Corr
10、espondence With the PTC 11 Committee xi 1 Object and Scope . 1 1-1 Object 1 1-2 Scope. 1 1-3 Applicability 2 1-4 Uncertainty 2 2 Definitions of Terms, Symbols, and Their Descriptions . 3 2-1 Symbols 3 2-2 Definitions. 8 3 Guiding Principles . 15 3-1 Introduction. 15 3-2 Prior Agreements. 15 3-3 Code
11、 Philosophy 15 3-4 System Design Considerations. 18 3-5 Internal Inspection and Measurement of Cross Section. 18 3-6 Test Personnel . 19 3-7 Point of Operation . 19 3-8 Method of Operation During Test 19 3-9 Inspection, Alterations, and Adjustments . 19 3-10 Inconsistencies. 20 3-11 Multiple Inlets
12、or Ducts . 20 3-12 Preliminary Test 20 3-13 Reference Measurements . 20 4 Instruments and Methods of Measurement 22 4-1 General Considerations 22 4-2 Traverse Specifications 22 4-3 Barometric Pressure. 29 4-4 Temperature 30 4-5 Moisture 30 4-6 Gas Composition . 31 4-7 Pressure Sensing 31 4-8 Pressur
13、e Indicating 40 4-9 Yaw and Pitch . 41 4-10 Rotational Speed 44 4-11 Input Power . 44 5 Computation of Results . 47 5-1 General Considerations 47 5-2 Correction of Traverse Data. 47 5-3 Gas Composition . 49 5-4 Density 52 iv 5-5 Fluid Velocity 52 5-6 Mass Flow Rate53 5-7 Flow-Weighted Averages .54 5
14、-8 Fan Input Power .55 5-9 Fan Speed (Slip Method)55 5-10 Mass Flow Rate: Specific Energy Approach .55 5-11 Volume Flow Rate: Pressure Approach 57 5-12 Inlet Flow Distortion 59 5-13 Uncertainties 62 6 Report of Results 68 6-1 General Requirements 68 6-2 Executive Summary .68 6-3 Introduction68 6-4 C
15、alculations and Results.68 6-5 Instrumentation 69 6-6 Conclusions69 6-7 Appendices 69 7 Uncertainty Analysis 70 7-1 Introduction70 7-2 Uncertainty Propagation Equations.70 7-3 Assigning Values to Primary Uncertainties.71 7-4 Fan Mass Flow and Uncertainty for Multiple Traverse Planes.74 Figures 2-2.4
16、-1 Typical Input and Outlet Boundaries 10 2-2.4-2 Typical Input Power Boundaries 11 4-2.2-1 Fan Room Pressure.24 4-2.4-1 Sampling Point Details (Rectangular Duct).25 4-2.4-2 Sampling Point Details (Circular Duct).26 4-2.4-3 Number of Traverse Points 27 4-2.5-1 Probe Orientation: Centrifugal Fans28 4
17、-2.5-2 Probe Orientation: Axial Fans.29 4-7-1 Fechheimer Probe.32 4-7-2 Five-Hole Probe .33 4-7-3 Yaw and Pitch Planes .34 4-7-4 Yaw and Pitch Convention .34 4-7.1-1 Five-Hole Probe Photos .35 4-7.1-2 Prism Probe Cut-Away.36 4-7.3-1 Free Stream Nozzle Jet.37 4-7.3-2 Wind Tunnel .37 4-7.3-3 Free Stre
18、am .38 4-9.3-1 Pitch Angle, , Versus Pitch Coefficient, C.42 4-9.3-2 Velocity Pressure Coefficient, Kv, Versus Pitch Pressure Coefficient, C43 4-9.3-3 Total Pressure Coefficient, Kt, Versus Pitch Pressure Coefficient, C43 5-12.7-1 Traverse Point Geometry61 v Tables 4-11.5-1 Summary of Instrumentatio
19、n Requirements 46 7-3.2.2-1 Typical Values for Primary Systematic Uncertainty . 73 Mandatory Appendix. 75 I Reduced Load Fan Input Power Determination 75 Nonmandatory Appendices . 77 A Data Sheets 77 B Sample Calculations 82 C Method of Approaching a Specified Point of Operation 124 D Derivations of
20、 Uncertainties Equations . 128 E References and Further Reading. 163 vi NOTICE All Performance Test Codes must adhere to the requirements of ASME PTC 1, General Instructions. The following information is based on that document and is included here for emphasis and for the convenience of the user of
21、the Code. It is expected that the Code user is fully cognizant of Sections 1 and 3 of ASME PTC 1 and has read them prior to applying this Code. ASME Performance Test Codes provide test procedures that yield results of the highest level of accuracy consistent with the best engineering knowledge and p
22、ractice currently available. They were developed by balanced committees representing all concerned interests and specify procedures, instrumentation, equipment-operating requirements, calculation methods, and uncertainty analysis. When tests are run in accordance with a code, the test results themse
23、lves, without adjustment for uncertainty, yield the best available indication of the actual performance of the tested equipment. ASME Performance Test Codes do not specify means to compare those results with contractual guarantees. Therefore, it is recommended that the parties to a commercial test a
24、gree before starting the test and preferably before signing the contract on the method to be used for comparing the test results with the contractual guarantees. It is beyond the scope of any code to determine or interpret how such comparisons shall be made. vii FOREWORD PTC 11-1946, entitled Test C
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