ASCE 2-06-2007 Measurement of Oxygen Transfer in Clean Water《净水中氧传递的测量》.pdf
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1、American Society of Civil EngineersMeasurement of OxygenTransfer in Clean WaterThis document uses both the International System of Units (SI) and customary units.A S C E S T A N D A R DPublished by the American Society of Civil EngineersASCE/EWRI 2-06Measurement of oxygen transfer in clean water: AS
2、CE stan-dard, ASCE/SEI 2-06 / American Society of Civil Engineers.p. cm.Includes bibliographical references.ISBN-13: 978-0-7844-0848-3ISBN-10: 0-7844-0848-31. WaterAerationMeasurementStandards.2. WaterDissolved oxygenMeasurementStandards. I. American Society of Civil Engineers.TD458.M42 2007628.1650
3、218dc222006102612Published by American Society of Civil Engineers1801 Alexander Bell DriveReston, Virginia 20191www.pubs.asce.orgAny statements expressed in these materials are those of the individual authors and do not necessarily represent theviews of ASCE, which takes no responsibility for any st
4、ate-ment made herein. No reference made in this publication toany specific method, product, process, or service constitutesor implies an endorsement, recommendation, or warrantythereof by ASCE. The materials are for general informationonly; they are not intended as a reference in purchase ofspecific
5、ations, contracts, regulations, statutes, or any otherlegal document.ASCE makes no representation or warranty of any kind,whether express or implied, concerning the accuracy, com-pleteness, suitability, or utility of any information, appara-tus, product, or process discussed in this publication, and
6、assumes no liability therefor. This information should not beused without first securing competent advice with respect toits suitability for any general or specific application. Anyoneutilizing this information assumes all liability arising fromsuch use, including but not limited to infringement of
7、anypatent or patents.ASCE and American Society of Civil EngineersRegistered in U.S. Patent and Trademark Office.Photocopies and reprints: You can obtain instant permis-sion to photocopy ASCE publications by using ASCEsonline permission service (www.pubs.asce.org/authors/RightslinkWelcomePage.htm). R
8、equests for 100 copies or moreshould be submitted to the Reprints Department, PublicationsDivision, ASCE (address above); email: permissionsasce.org. A reprint order form can be found atwww.pubs.asce.org/authors/reprints.html.Copyright 2007 by the American Society of Civil Engineers.All Rights Reser
9、ved.ISBN 13: 978-0-7844-0848-3ISBN 10: 0-7844-0848-3Manufactured in the United States of America.Library of Congress Cataloging-in-Publication DataSTANDARDSIn 2003, the Board of Direction approved the revision tothe ASCE Rules for Standards Committees to govern thewriting and maintenance of standard
10、s developed by theSociety. All such standards are developed by a consensusstandards process managed by the Societys Codes andStandards Committee (CSC). The consensus processincludes balloting by a balanced standards committeemade up of Society members and nonmembers, ballotingby the membership of th
11、e Society as a whole, and ballot-ing by the public. All standards are updated or reaffirmedby the same process at intervals not exceeding five years.The following standards have been issued:ANSI/ASCE 1-82 N-725 Guideline for Design andAnalysis of Nuclear Safety Related Earth StructuresASCE/EWRI 2-06
12、 Measurement of Oxygen Transfer inClean WaterANSI/ASCE 3-91 Standard for the Structural Design ofComposite Slabs and ANSI/ASCE 9-91 StandardPractice for the Construction and Inspection ofComposite SlabsASCE 4-98 Seismic Analysis of Safety-Related NuclearStructuresBuilding Code Requirements for Mason
13、ry Structures(ACI 530-02/ASCE 5-02/TMS 402-02) andSpecifications for Masonry Structures (ACI 530.1-02/ASCE 6-02/TMS 602-02)ASCE/SEI 7-05 Minimum Design Loads for Buildingsand Other StructuresSEI/ASCE 8-02 Standard Specification for the Design ofCold-Formed Stainless Steel Structural MembersANSI/ASCE
14、 9-91 listed with ASCE 3-91ASCE 10-97 Design of Latticed Steel TransmissionStructuresSEI/ASCE 11-99 Guideline for Structural ConditionAssessment of Existing BuildingsASCE/EWRI 12-05 Guideline for the Design of UrbanSubsurface DrainageASCE/EWRI 13-05 Standard Guidelines for Installationof Urban Subsu
15、rface DrainageASCE/EWRI 14-05 Standard Guidelines for Operationand Maintenance of Urban Subsurface DrainageASCE 15-98 Standard Practice for Direct Design ofBuried Precast Concrete Pipe Using StandardInstallations (SIDD)ASCE 16-95 Standard for Load Resistance Factor Design(LRFD) of Engineered Wood Co
16、nstructionASCE 17-96 Air-Supported StructuresASCE 18-96 Standard Guidelines for In-Process OxygenTransfer TestingASCE 19-96 Structural Applications of Steel Cables forBuildingsASCE 20-96 Standard Guidelines for the Design andInstallation of Pile FoundationsANSI/ASCE/TC*H11009H33527 determination poi
17、nt value of the steady-state DO saturation concentration as timeapproaches infinity, mLH110023;C0H33527 DO concentration at time zero, mLH110023;KLa H33527 determination point value of the apparent volumetric mass transfer coefficient, tH110021,defined so thatKLa H33527 rate of mass transfer per uni
18、t volumeH20862(C*H11009H11002 C).Throughout this standard, the terminology for unitswill be shown as follows: m H33527 mass units, l H33527 lengthunits, f H33527 force units, and t H33527 time units.Nonlinear regression is employed to fit Eq. (2-1)to the DO profile measured at each determinationpoin
19、t during reoxygenation. In this way, estimates ofKLa and C*H11009are obtained at each determination point.These estimates are adjusted to standard conditions,and the standard oxygen transfer rate (mass of oxygen dissolved per unit time at a hypothetical concentration of zero DO) is obtained as the a
20、ver-age of the products of the adjusted determination point KLa values, the corresponding adjusted determi-nation point C*H11009values, and the tank volume. Recentdevelopments that have the potential to be recognizedin a future edition of this standard appear inCommentary A.3.0 SIGNIFICANCE AND LIMI
21、TATIONSOxygen transfer rate measurements are useful for comparing the performance and energy efficiencyof oxygenation devices operating in clean water.However, performance of these devices in processwater may significantly differ from the performance inclean water, and the amount of difference will
22、dependon the device, on how it is applied, and on the natureof the process water.1Measurement of Oxygen Transfer in Clean WaterAgreement of this method has been evaluated byparallel testing with the radioactive tracer strippingmethod, and KLa by the two methods has been foundto be within H110063% (R
23、ef. 6).4.0 DEFINITIONS AND NOMENCLATURE4.1 OXYGEN TRANSFER RATEMass of oxygen per unit time dissolved in a vol-ume of water by an oxygen transfer system operatingunder given conditions of temperature, barometricpressure, power, gas rate, and dissolved oxygen concentration.4.2 STANDARD OXYGEN TRANSFE
24、R RATEOTR in clean water when the DO concentration iszero at all points in the water volume, the water tem-perature is 20H11034C, and the barometric pressure is1.00 atm (101.3 kPa) (see Eq. 8-3).4.3 AERATION EFFICIENCYOTR per unit total power input. Power input maybe based on either delivered brake
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