ASME PTC 12 2-2010 Steam Surface Condensers《表面蒸汽冷凝器》.pdf
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1、AN AMERICAN NATIONAL STANDARDSteam SurfaceCondensersASME PTC 12.2-2010Performance Test CodesRevision of PTC 12.2-1998 (R2007)INTENTIONALLY LEFT BLANKASME PTC 12.2 2010Steam Surface CondensersPerformance Test CodesAN AMERICAN NATIONAL STANDARDThree Park Avenue New York, NY 10016 USARevision of ASME P
2、TC 12.2 1998 (R2007)Date of Issuance: September 30, 2010This Code will be revised when the Society approves the issuance of a new edition. There will be no addenda issued to ASME PTC 12.22010.ASME issues written replies to inquiries concerning interpretations of technical aspects of this Code. Perio
3、dically certain actions of the ASME PTC Committee may be published as Code Cases. Code Cases and interpretations are published 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.
4、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 standard was balanced to assure that individuals from competent and concerned interests have had an opportunity to participate. T
5、he proposed code or standard was made available for public review and comment that provides an opportunity for additional 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 ac
6、tivity.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 undertake to insure anyone utilizing a standard against liability for infringement of any applicable letters patent, nor assumes any
7、 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 rights, is entirely their own responsibility.Participation by federal agency representative(s) or person(s) affiliated with industry i
8、s not to be interpreted as government or industry endorsement of this code or standard.ASME accepts responsibility 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
9、 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 American Society of Mechanical EngineersThree Park Avenue, New York, NY 10016-5990Copyright 2010 byTHE AMERICAN SOCIETY OF MECHANICAL ENGINEER
10、SAll rights reservedPrinted in U.S.A.iiiCONTENTSNotice vForeword viCommittee Roster viiiCorrespondence With the PTC Committee . ixIntroduction . 1Section 1 Object and Scope 21-1 Object . 21-2 Scope 21-3 Uncertainty . 2Section 2 Definitions and Descriptions of Terms 32-1 Symbols . 32-2 Subscripts 32-
11、3 Superscripts 3Section 3 Guiding Principles . 53-1 Purpose and Intent 53-2 Agreement Between Parties to the Test 53-3 Test Considerations . 53-4 Pretest Agreements 53-5 Allowable Deviations 73-6 Preparation for Test . 73-7 Condenser Isolation 73-8 Noncondensible Gas Load . 73-9 Tubeside Blockage .
12、73-10 Tubeside Fouling 73-11 Dissolved Oxygen 73-12 Preliminary Testing . 83-13 Test Records 83-14 Duration of Test Runs . 83-15 Determining the Overall Heat-Transfer Coefficient, U 83-16 Auxiliary Parameters 9Section 4 Instruments and Methods of Measurement 104-1 Purpose and Intent 104-2 Location o
13、f Test Points . 104-3 Measurement of Condenser Pressure . 104-4 Cooling-Water Temperature . 124-5 Cooling-Water Flow 144-6 Noncondensible Flow . 194-7 Hotwell Level . 204-8 Waterbox Level 204-9 Tube Cleanliness 204-10 Waterbox Differential Pressures 204-11 Dissolved Oxygen 224-12 Condensate Temperat
14、ure 224-13 Saline or Brackish Water Concentration . 22Section 5 Computation of Results . 235-1 Basic Heat-Transfer Relations 235-2 Calculations for Condenser Pressure Deviation Results . 245-3 Calculations of Results Deviations for Other Parameters . 26ivSection 6 Report of Results . 286-1 Compositi
15、on of Report 286-2 Report Data . 28Figures4-2.1-1 Location of Condenser Test Points 124-3.2.2-1 Basket Tip 134-3.2.3-1 Guide Plate . 134-5.1-1 Recommended Velocity Traverse Probe Positions 164-9.1-1 Tube Cleanliness Test-Sequence Flowchart . 215-2.8-1 Multiple-Shell Multipressure Condenser . 275-2.8
16、-2 Single-Shell Multipressure Condenser . 27Tables2-1-1 Symbols . 33-4-1 Noncondensible Gas Load (Air In-Leakage Limits) . 63-4-2 Allowable Deviations From Specified Test and Steady-State Conditions . 74-1-1 Typical Total Instrument Accuracy . 11Nonmandatory AppendicesA Alternative Test 29B Flowchar
17、ts and Checklists 35C Automatic Data Acquisition . 42D Performance Monitoring 43E Example Calculations 45F Air Binding . 53G Air In-Leakage 56H Noncondensible Removal Equipment 58I Physical Properties of Seawater . 64J References . 68vNOTICEAll Performance Test Codes must adhere to the requirements
18、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 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
19、Code.ASME Performance Test Codes provide test procedures that yield results of the highest level of accuracy consistent with the best engineering knowledge and practice currently available. They were developed by balanced committees representing all concerned interests and specify procedures, instru
20、mentation, equipment-operating requirements, cal-culation methods, and uncertainty analysis.When tests are run in accordance with a Code, the test results themselves, without adjustment for uncertainty, yield the best available indication of the actual performance of the tested equipment. ASME Perfo
21、rmance Test Codes do not specify means to compare those results to contractual 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 contr
22、actual guarantees. It is beyond the scope of any Code to determine or interpret how such comparisons shall be made.viFOREWORDWhen the work of revising the ASME Power Test Codes of 1915 was undertaken, it was decided to include a commit-tee to develop three separate test codes on condensing apparatus
23、, feedwater heaters, and water-cooling equipment. The resulting Test Code for Steam-Condensing Apparatus, after passing through the preliminary stages in the procedure prescribed by the Main Committee, was printed in tentative form in the May 1924 issue of Mechanical Engineering and was presented to
24、 the Society for discussion at a public hearing held during the spring meeting in Cleveland in May 1924. At the December 1924 meeting of the PTC Supervisory Committee (now known as the Board on Performance Codes), it was approved in its final revised form, and on October 5, 1925, it was approved and
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