ASME PTC 12 5-2000 Single Phase Heat Exchangers《单相热交换器》.pdf
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1、ASME PTC 12.5-2000 Single Phase Heat Exchangers Date of issuance: December 31, 2001 This Standard will be revised when the Society approves the issuance of a new edition. There will be no addenda issued to ASME PTC 12.5-2000. Please note: ASME issues written replies to inquiries concerning interpret
2、ation of technical aspects of this document. 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 Standards. The Standards Committee that approved the code or st
3、andard 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 additional public input from industry, academia, regulatory ag
4、encies, 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 with any items mentioned in this document, and does not un
5、dertake to insure anyone utilizing a standard against liability for infringement of any applicable letters patent, nor assume any such liability. Users of a code or standard are expressly advised that determination of the validity of any such patent rights, and the risk of infringement of such right
6、s, is entirely their own responsibility. Participation by federal agency representative(s) or person(s) affiliated with industry is not to be interpre- ted as government or industry endorsement of this code or standard. ASME accepts responsibility for only those interpretations of this document issu
7、ed 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 the prior written permission of the publisher. The Ameri
8、can Society of Mechanical Engineers Three Park Avenue, New York, NY 10016-5990 Copyright Q 2001 by THE AMERICAN SOCIETY OF MECHANICAL ENGINEERS All Rights Reserved Primed in U.S.A. FOREWORD Performance tests of industrial heat exchangers are often conducted to compare test results with manufacturers
9、 rating data, to evaluate the cause(s) of degradation, to verify regulatory compliance, or to assess process improvements. All tests have associated costs. Those costs can be great if the test results are inconclusive. Historically, testing heat exchanger performance in operating processes was not c
10、onducted according to standard, acceptable methods; therefore, the results were inconsistent. Many of the unacceptable results have been attributed to small deviations in test conditions and measurement prac- tices. In other cases, analysis of the data did not consider all factors which affect perfo
11、rmance. As industry implements improvements to reduce costs and increase output, performance margins of process streams tend to be reduced. The need for accurate performance test methods is increasing to meet the commercial demand. A single consistent test philosophy and methodology including measur
12、ement and analysis techniques for delivery of accurate and repeatable heat exchanger test data would provide a foundation to assess performance. Such a test standard has wide applicability in the power, food-processing, chemical and petroleum industries, among others. It was with the intent of satis
13、fying these industry needs that the Board on Performance Test Codes (BPTC) authorized the formation of the PTC 12.5 Committee to explore the development of the present Code. The PTC 12.5 Committee began its deliberations late in 1994. An early version of the draft code was subjected to a thorough re
14、view by industry, including members of the BPTC. Comments were incorporated in the version which was approved by the Committee on 11 August 1999. PTC 12.5-2000 on Single Phase Heat Exchangers was then approved as a Standard practice of the Society by action of the Board on Performance Test Codes on
15、8 May 2000. It was approved as an American National Standard by the ANSI Board of Standards Review on September 26, 2000. (Revised 26 September 2000) . . . III NOTICE All Performance Test Codes MUST adhere to the requirements of PTC 1, GENERAL INSTRUCTIONS. The following information is based on that
16、 document and is included here for emphasis and for the convenience of the user of this Code. It is expected that the Code user is fully cognizant of Parts I and III of PTC 1 and has read them prior to applying this Code. ASME Performance Test Codes provide test procedures which yield results of the
17、 highest level of accuracy consistent with the best engineering knowledge and practice currently available. They were developed by balanced committees representing all concerned interests. They specify procedures, instrumentation, equipment operating requirements, calculation methods, and uncertaint
18、y analysis. When tests are run in accordance with this Code, the test results themselves, 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 to contractua
19、l guarantees. Therefore, it is recommended that the parties to a commercial test agree before starting the test and preferably before signing the contract on the method to be used for comparing the test results to the contractual guarantees. It is beyond the scope of any Code to determine or interpr
20、et how such comparisons shall be made. Approved by Letter Ballot #95-l and BPTC Administrative Meeting of March 13-l 4, 1995. PERSONNEL OF PERFORMANCE TEST CODE COMMITTEE NO. 12.5 ON SINGLE PHASE HEAT EXCHANGERS OFFICERS Thomas G. Lestina, Chair Benjamin H. Scott, Vice Chair George Osolsobe, Secreta
21、ry COMMITTEE PERSONNEL Fernando J. Aguirre, Heat Transfer Research, Inc. Kenneth J. Bell, Oklahoma State University Charles F. Bowman, Chuck Bowman Associates William H. Closser, Jr., C (b) Plate-frame; (c) Plate-fin; (d) Tube-in-plate fin. Single-phase fluid streams, including liquid-to-liq- uid, g
22、as-to-liquid, and gas-to-gas are included. Ex- cluded from this Code are heat exchangers used in condensation, vaporization, fired, direct contact, non-newtonian fluid, and more than two-fluid appli- cations. 1.3 EXPECTED UNCERTAINTY The values of the overall uncertainty of perform- ance parameters
23、determined in accordance with this Code are expected to lie within the band described by the overall uncertainty interval stated below. Performance Parameter Note (VI Expected Uncertainty Note W Overall Heat Transfer Coefficient, U* Heat Transfer Rate, Q* Nozzle-to-Nozzle Pressure Loss, dP,* NOTES:
24、(1) At reference conditions. (2) Based on 95% confidence. *3-10% *3-l 0% *3-12% This page intentionally left blank.SINGLE PHASE HEAT EXCHANGERS ASME PTC 12.5 -2000 SECTION 2 - DEFINITIONS AND DESCRIPTION OF TERMS 2.1 TERMS In this Section, only those terms are defined which are characteristic of sin
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