ANSI ASHRAE 41.2-1987 Standard Methods for Laboratory Airflow Measurement《实验室空气流动标准测量法》.pdf
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1、ASHRAE 41.2 87 0759650 0503773 73T ERRATA SHEET No. 1 FOR ALL COPIES OF ASHRAE STANDARD 41.2-1987 93-03- 11 htrductl on The corrections listed in this errata sheet apply to ail copies of ASHRAE Stanard 41.2-1987. Errata Equation p. 28. pe = 3.25 x (ti) 2+0 0186 ( t;) +Os 692 ANSVASHRAE 41.2-1 987 (R
2、A 92) (Reaffirmation of ANSVASHRAE 41 -2-1 987 with minor editorial changes) AN AMERICAN NATIONAL STANDARD Standard Methods for Laboratory Airflow Measurement Approved by the ASHRAE Standards Committee on June 28, 1987; by the ASHRAE Board of Directors on July 2, 1987, and reaffirmed January 30,1992
3、; approved by the American National Standards Institute on October 1, 1987, and reaffirmed April 20, 1992. ASHRAE Standards are updated on a five-year cycle; the date following the Standard number is the year of ASH- RAE Board of Directors approval. The designation “RA“ followed by a date is the yea
4、r of reaffirmation. The latest copies may be purchased from ASHRAE Publications Sales, 1791 Tullie Circle, NE, Atlanta, GA 30329. “1992 ISSN 1041 -2336 AMERICAN SOCIETY OF HEATING, REFRIGERATING AND AIR-CONDITIONING ENGINEERS, INC. 1791 Tullie Circle, NE Atlanta, GA 30329 I I 0759650 05039i.16 i73 I
5、 ASHRAE STANDARDS PROJECT COMMITTEE 41 2-1 987 Cognizant TC: TC 1.2, Instruments and Measurements Linda L. Alexander, Chairman Alberto A. DeRosa Earl J. Gmoser Gerald P. Jollette Frederick J. Reed Eugene L. Valerio Goerge S. Yamamoto David J. Young ASHRAE STANDARDS COMMITTEE 1991 -92 Donald G. Colli
6、ver, Chairman George Reeves, Vice-chairman M. Kent Anderson Lee W. Burgett, Chairman PPIs Samuel F. Ciricillo Douglas F. Darby Michael E. Dillon, Chairman ILS Donald L. Geistert Ronald H. Howell Daniel E. Kramer Carl N. Lawson Paul L. Miller, Jr. James A. Ranfone Harry J. Sauer, Jr. Max H. Sherman J
7、ohn M. Talbott James E. Woods Thomas P. Wutka, Chairman SPLS Billy R. Manning, CO John F. James, Ex0 Jim L. Heldenbrand, Manager of Standards SPECIAL NOTE This National Voluntary Consensus Standard was developed under the auspices of the American Society of Heating, Refrigerating and Air-Conditionin
8、g Engineers (ASHRAE). Consensus is defined as “substantial agreement reached by concerned interests according to the judgment of a duly appointed authority, after a concerted attempt at resolving objections. Consensus implies much more than the concept of a single majority but not necessarily unanim
9、ity.“ This definition is according to the American National Standards Institute (ANSI) of which ASHRAE is a member. ASHRAE obtains consensus through participation of its national and international members, associated societies, and public review. ASHRAE Standards are prepared by a Project Committee
10、appointed specifically for the purpose of writing the Standard. The Project Committee Chairman and Vice-chairman must be members of ASHRAE; while other committee members may or may not be ASHRAE members, all must be technically qualified in the subject area of the Standard. Every effort is made to b
11、alance the concerned interests on all Project Committees. The Manager of Standards of ASHRAE should be contacted for: a. interpretation of the contents of this Standard, b. participation in the next review of the Standard, c. offering constructive criticism for improving the Standard, d. permission
12、to reprint portions of the Standard. ASHRAE INDUSTRIAL ADVERTISING POLICY ON STANDARDS ASHRAE Standards and Guidelines are established to assist industry and the public by offering a uniform method of testing for rating purposes, by suggesting safe practices in designing and installing equipment, by
13、 providing proper definitions of this equipment, and by providing other information that may serve to guide the industry. The creation of ASHRAE Standards and Guidelines is determined by the need for them, and conformance to them is completely voluntary. In referring to this Standard or Guideline an
14、d in marking of equipment and in advertising, no claim shall be made, either stated or implied, that the product has been approved by ASHRAE. I DISCLAIMER I ASHRAE uses its best efforts to promulgate Standards and Guidelines for the benefit of the public in light of available information and accepte
15、d industry practices. However, ASHRAE does not guarantee, certify, or assure the safety or performance of any products, components, or systems tested, installed, or operated in accordance with ASHRAEs Standards or Guidelines or that any tests conducted under its Standards or Guidelines will be nonha
16、zardous or free from risk. CONTENTS Section Page Foreword 1 1.Purpose 1 2.sco pe 1 3.Definitions . 1 4 . Classifications . 1 5 . Selection of Airflow-Measuring Equipment and Systems . 2 6.Instruments 16 7 . Apparatus and Setups . 23 8.TestProcedure 25 9 . Data to Be Recorded 26 10 . Symbols and Subs
17、cripts . 26 11 . Calculations 28 12.Referen ces . 32 Appendix A-Bibliography . 32 0759650 0503947 bOT - 0759650 0503948 546 (”his foreword is not part of this standard but is in- cluded for information purposes only.) FOREWORD This standard provides recommended practices for airflow measurements as
18、we as measurement procedures for use in the preparation of other ASHRAE standards. Therefore, it meets the ASHRAE standard classification of method of measurement or test. The standard was initiated by the ASHRAE Standards Committee to provide ASHRAE members with several alternatives for laboratory
19、airflow measurements. The standard was developed by a diversified panel of five voting and four nonvoting members using the ANSUMCA Standard 210-85, ANSUASHRAE Standard 51-1985, Laboratory Methods of Testing Fans for Rating, as a reference document. I. PURPOSE 1.1 The purpose of this standard is to
20、set forth recom- mended practices for airflow measurements and to provide adequate and consistent measurement procedures for use in the preparation of other ASHRAE standards. shall and should: the word “shall” is to be understood as a requirement, the word LLshould” as a recommendation. transducer:
21、a device that changes one form of physical quantity to another. In the measurement field, transducers are generally used to sense a variety of measurands, such as line voltage, current, power, pressure, temperature, etc., and convert these to a common output signal for transmission to a controlling,
22、 indicating, or recording instrument. uncertainy, maximum: the maximum difference between the true value of the quantity measured and the observed value. uncertainy, random: an uncertainty that causes readings to take random values on either side of some mean value. Measurements may be precise or im
23、precise depending on how well an instrument can reproduce subsequent readings of an instruments unchanged input. uncertainty, systemaic: an uncertainty that persists and cannot be considered as due entirely to chance. Systematic errors can be corrected by calibration. 4. CLASSIFICATIONS 2. SCOPE 2.1
24、 The procedures described herein are intended for use in testing air-moving, air-handling, and air-distribution equipment and components, The particular method(s) used shall be determined by the operating tolerances, instrument accuracies, and instrument precision required to achieve the objectives
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