ANSI ASME PTC 18-2011 Hydraulic Turbines and Pump-Turbines.pdf
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1、Hydraulic Turbines and Pump-TurbinesPerformance Test CodesAN INTERNATIONAL CODEASME PTC 18-2011(Revision of ASME PTC 18-2002)INTENTIONALLY LEFT BLANKASME PTC 18-2011Hydraulic Turbines and Pump-TurbinesPerformance Test CodesAN INTERNATIONAL CODE(Revision of ASME PTC 18-2002)Three Park Avenue New York
2、, NY 10016 USADate of Issuance: June 10, 2011The next edition of this Code is scheduled for publication in 2016. There will be no addenda issued to this edition.ASME issues written replies to inquiries concerning interpretations of technical aspects of this Code. Interpretations are published on the
3、 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 Standards. The Standard
4、s 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 additional public inpu
5、t from industry, academia, regulatory agencies, and the public-at-large.ASME does not approve, rate, orendorse 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
6、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 patent rights, and the ris
7、k 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 responsibility for only those interpreta
8、tions 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 the prior written permission of
9、the publisher.The American Society of Mechanical EngineersThree Park Avenue, New York, NY 10016-5990Copyright 2011 byTHE AMERICAN SOCIETY OF MECHANICAL ENGINEERSAll rights reservedPrinted in U.S.A.iiiCONTENTSNotice vForeword viCommittee Roster viiiCorrespondence With the PTC 18 Committee ixSection 1
10、 Object and Scope 11-1 Object . 11-2 Scope 11-3 Uncertainties 1Section 2 Definitions and Descriptions of Terms 22-1 Definitions 22-2 International System of Units (SI) . 22-3 Tables and Figures . 22-4 Reference Elevation, Zc. 22-5 Centrifugal Pumps 22-6 Subscripts Used Throughout the Code 3Section 3
11、 Guiding Principles . 263-1 General 263-2 Preparations for Testing 263-3 Tests . 283-4 Instruments . 293-5 Operating Conditions . 293-6 Data Records 29Section 4 Instruments and Methods of Measurement 324-1 General 324-2 Electronic Data Acquisition 324-3 Head and Pressure Measurement . 334-4 Flow Mea
12、surement 374-5 Power Measurement . 584-6 Speed Measurement 624-7 Time Measurement 63Section 5 Computation of Results . 645-1 Measured Values: Data Reduction . 645-2 Conversion of Test Results to Specified Conditions . 645-3 Evaluation of Uncertainty 655-4 Comparison With Guarantees . 65Section 6 Fin
13、al Report . 676-1 Responsibility of Chief of Test . 676-2 Parties to the Test . 676-3 Acceptance Tests 67Figures2-3-1 Head Definition, Measurement and Calibration, Vertical Shaft Machine With Spiral Case and Pressure Conduit 202-3-2 Head Definition, Measurement and Calibration, Vertical Shaft Machin
14、e With Semi-Spiral Case 212-3-3 Head Definition, Measurement and Calibration, Bulb Machine 222-3-4 Head Definition, Measurement and Calibration, Horizontal Shaft Impulse Turbine (One or Two Jets) . 23iv2-3-5 Head Definition, Measurement and Calibration, Vertical Shaft Impulse Turbine . 242-4-1 Refer
15、ence Elevation, Zc, of Turbines and Pump-Turbines . 253-5.3-1 Limits of Permissible Deviations From Specified Operating Conditions in Turbine Mode . 303-5.3-2 Limits of Permissible Deviations From Specified Operating Conditions in Pump Mode 314-3.14-1 Pressure Tap 354-3.15-1 Calibration Connections
16、for Pressure Gages or Pressure Transducers 364-4.3.4-1 Example of Digital PressureTime Signal 414-4.4.1-1 Ultrasonic Method: Diagram to Illustrate Principle . 434-4.4.1-2 Ultrasonic Method: Typical Arrangement of Transducers for an 8-Path Flowmeter in a Circular Conduit 444-4.4.3-1 Ultrasonic Method
17、: Typical Arrangement of Transducers 464-4.4.4-1 Distortion of the Velocity Profile Caused by Protruding Transducers 474-4.4.6-1 Ultrasonic Method: Typical Arrangement of Transducers for an 18-Path Flowmeter in a Circular Conduit 494-4.4.6-2 Ultrasonic Method: Typical Arrangement of Transducers for
18、an 18-PathFlowmeter in a Rectangular Conduit . 504-4.4.11-1 Locations for Measurements of D . 524-4.5.1-1 Schematic Representation of Dye Dilution Technique . 544-4.5.2.1-1 Experimental Results: Allowable Variation in Tracer Concentration 554-4.5.5-1 Typical Chart Recording During Sampling . 574-5.1
19、-1 Three-Wattmeter Connection Diagram 594-5.1-2 Two-Wattmeter Connection Diagram . 604-5.1-3 Measuring Instrument Burden 61Tables2-2-1 Conversion Factors Between SI Units and U.S. Customary Units of Measure. 32-3-1 Letter Symbols and Definitions . 42-3-2M Acceleration of Gravity as a Function of Lat
20、itude and Elevation, SI Units (m/s2) 102-3-2 Acceleration of Gravity as a Function of Latitude and Elevation, U.S. Customary Units (ft/sec2) 112-3-3M Vapor Pressure of Distilled Water as a Function of Temperature, SI Units (kPa) 112-3-3 Vapor Pressure of Distilled Water as a Function of Temperature,
21、 U.S. Customary Units (lbf/in.2) . 122-3-4M Density of Water as a Function of Temperature and Pressure, SI Units (kg/m3). 132-3-4 Density of Water as a Function of Temperature and Pressure, U.S. Customary Units (slug/ft3) 142-3-5 Coefficients Ii, Ji, and ni. 152-3-6M Density of Dry Air, SI Units (kg
22、/m3) 162-3-6 Density of Dry Air, U.S. Customary Units (slug/ft3) . 162-3-7M Density of Mercury, SI Units (kg/m3) . 172-3-7 Density of Mercury, U.S. Customary Units (slugs/ft3) 182-3-8M Atmospheric Pressure, SI Units (kPa) 192-3-8 Atmospheric Pressure, U.S. Customary Units (lbf/in.2) 194-4.4.2-1 Inte
23、gration Parameters for Ultrasonic Method: Four Paths in One Plane or Eight Paths in Two Planes . 454-4.4.6-1 Integration Parameters for Ultrasonic Method: 18 Paths in Two Planes . 51Nonmandatory AppendicesA Typical Values of Uncertainty 69B Uncertainty Analysis . 70C Outliers . 74D Relative Flow Mea
24、surementIndex Test 75E Derivation of the PressureTime Flow Integral 81vNOTICEAll Performance Test Codes MUST adhere to the requirements of PTC 1, GENERAL INSTRUCTIONS. The fol-lowing information is based on that document and is included here for emphasis and for the convenience of the user of this C
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