ASME PTC 4-2008 Fired Steam Generators (PTC 4 - 2008)《燃烧式蒸汽发生器》.pdf
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1、Fired Steam GeneratorsAN AMERICAN NATIONAL STANDARDASME PTC 4-2008(Revision of ASME PTC 4-1998)Performance Test CodesCopyright ASME International Provided by IHS under license with ASME Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-ASME PTC 4-2008Fired Steam Gene
2、ratorsPerformance Test CodesAN AMERICAN NATIONAL STANDARD(Revision of ASME PTC 4-1998)Copyright ASME International Provided by IHS under license with ASME Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-Date of Issuance: January 9, 2009This Code will be revised whe
3、n the Society approves the issuance of a new edition. There will be no addenda issued to this edition.ASME issues written replies to inquiries concerning interpretations of technical aspects of this code. Periodically certain actions of the ASME PTC Committee may be published as Cases. Cases and int
4、erpretations 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.This code or standard was developed under procedures accredited as meeting the criteria for American
5、 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. The proposed code or standard was made available for public review and comment that provides an oppor
6、tunity 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 activity.ASME does not take any position with respect to the validity of any patent rights asserted in
7、 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 such liability. Users of a code or standard are expressly advised that determination of the validit
8、y 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 is not to be interpreted as government or industry endorsement of this code or standard.ASME accepts
9、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 part of this document may be reproduced in any form,in an electronic retrieval system or otherwise,
10、without the prior written permission of the publisher.The American Society of Mechanical EngineersThree Park Avenue, New York, NY 10016-5990Copyright 2009 byTHE AMERICAN SOCIETY OF MECHANICAL ENGINEERSAll rights reservedPrinted in U.S.A.Copyright ASME International Provided by IHS under license with
11、 ASME Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-iiiCONTENTSNotice viForeword viiCommittee Roster ixCorrespondence With the PTC 4 Committee xSection 1 Object and Scope 11-1 Object . 11-2 Scope 11-3 Typical Uncertainty for Efficiency . 21-4 Steam Generator Boun
12、daries . 3Section 2 Definitions and Description of Terms 122-1 Definitions 122-2 Abbreviations . 152-3 Units and Conversions 15Section 3 Guiding Principles . 173-1 Introduction 173-2 Performance Test Procedures . 203-3 References to Other Codes and Standards . 273-4 Tolerances and Test Uncertainties
13、 . 28Section 4 Instruments and Methods of Measurement 294-1 Guiding Principles . 294-2 Data Required 294-3 General Measurement Requirements . 324-4 Temperature Measurement 484-5 Pressure Measurement 524-6 Velocity Traverse 534-7 Flow Measurement 534-8 Solid Fuel and Sorbent Sampling 564-9 Liquid and
14、 Gaseous Fuel Sampling 614-10 Sampling of Flue Gas 614-11 Residue Sampling 624-12 Fuel, Sorbent, and Residue Analysis . 634-13 Flue Gas Analysis 634-14 Electric Power . 644-15 Humidity 654-16 Measurements for Surface Radiation and Convection Loss 65Section 5 Computation of Results . 675-1 Introducti
15、on 675-2 Measurement Data Reduction . 675-3 Capacity 705-4 Output (QrO), Btu/hr (W) . 705-5 Input 715-6 Energy Balance . 715-7 Efficiency . 725-8 Fuel Properties . 735-9 Sorbent and Other Additive Properties 755-10 Residue Properties . 775-11 Combustion Air Properties 795-12 Flue Gas Products 82Copy
16、right ASME International Provided by IHS under license with ASME Not for ResaleNo reproduction or networking permitted without license from IHS-,-,-iv5-13 Air and Flue Gas Temperature 845-14 Losses 875-15 Credits . 945-16 Uncertainty . 955-17 Other Operating Parameters 985-18 Corrections to Standard
17、 or Design Conditions . 995-19 Enthalpy of Air, Flue Gas, and Other Substances Commonly Required for Energy Balance Calculations 1095-20 Calculation Acronyms . 115Section 6 Report of Test Results . 1296-1 Introduction 1296-2 Report Contents . 129Section 7 Uncertainty Analysis . 1317-1 Introduction 1
18、317-2 Fundamental Concepts . 1317-3 Pretest Uncertainty Analysis and Test Planning . 1377-4 Equations and Procedures for Determining the Standard Deviation for the Estimate of Random Error . 1387-5 Equations and Guidance for Determining Systematic Uncertainty . 1427-6 Uncertainty of Test Results 147
19、Figures1-4-1 Typical Oil and Gas-Fired Steam Generator 51-4-2 Typical Pulverized Coal-Fired Steam Generator, Alternative 1: Single Air Heater . 61-4-3 Typical Pulverized Coal-Fired Steam Generator, Alternative 2: Bisector Air Heater 71-4-4 Typical Pulverized Coal-Fired Steam Generator, Alternative 3
20、: Trisector Air Heater . 81-4-5 Typical Circulation Bed Steam Generator 91-4-6 Typical Stoker-Coal-Fired Steam Generator 101-4-7 Typical Bubbling Bed Steam Generator 113-1-1 Steam Generator Energy Balance 183-2-1 Repeatability of Runs 213-2-2 Illustration of Short-Term (Peak to Valley) Fluctuation a
21、nd Deviation From Long-Term (Run) Average . 254-4-1 Sampling Grids: Rectangular Ducts 494-4-2 Sampling Grids: Circular Ducts 504-8-1 Full Stream Cut Solid Sampling Process 574-8-2 Typical “Thief” Probe for Solids Sampling in a Solids Stream . 585-19-1 Mean Specific Heat of Dry Air Versus Temperature
22、 1165-19-2 Mean Specific Heat of Water Vapor Versus Temperature 1175-19-3 Mean Specific Heat of Dry Flue Gas Versus Temperature . 1195-19-4 Mean Specific Heat of Dry Residue Versus Temperature 1207-2.2-1 Types of Errors in Measurements 1337-2.2-2 Time Dependence of Errors 1337-2.3-1 Constant Value a
23、nd Continuous Variable Models 1357-5.2.1-1 Generic Calibration Curve . 144Tables1-3-1 Typical Code Test Uncertainties for Efficiency . 32-3-1 Units and Conversions . 163-1-1 Comparison of Efficiency Determination . 203-2-1 Operating Parameter Deviations . 233-2-2 Minimum Test-Run Duration . 264-2-1
24、Parameters Required for Efficiency Determination by Energy Balance Method 304-2-2 Parameters Required for Efficiency Determination by InputOutput Method . 344-2-3 Parameters Required for Capacity Determination . 354-2-4 Parameters Required for Steam Temperature/Control Range Determination 364-2-5 Pa
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