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    ASHRAE 52 2 ADD A B AND D SUPP-2015 Method of Testing General Ventilation Air-Cleaning Devices for Removal Efficiency by Particle Size.pdf

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    ASHRAE 52 2 ADD A B AND D SUPP-2015 Method of Testing General Ventilation Air-Cleaning Devices for Removal Efficiency by Particle Size.pdf

    1、ANSI/ASHRAE Addenda a, b, and d toANSI/ASHRAE Standard 52.2-2012Method of TestingGeneral VentilationAir-Cleaning Devicesfor Removal Efficiencyby Particle SizeSee Appendix for approval dates.These addenda were approved by a Standing Standard Project Committee (SSPC) for which the Standards Committee

    2、has estab-lished a documented program for regular publication of addenda or revisions, including procedures for timely, documented, con-sensus action on requests for change to any part of the standard. The change submittal form, instructions, and deadlines may beobtained in electronic form from the

    3、ASHRAE website (www.ashrae.org) or in paper form from the Senior Manager of Standards. The latest edition of an ASHRAE Standard may be purchased on the ASHRAE website (www.ashrae.org) or from ASHRAE Cus-tomer Service, 1791 Tullie Circle, NE, Atlanta, GA 30329-2305. E-mail: ordersashrae.org. Fax: 678

    4、-539-2129. Telephone: 404-636-8400 (worldwide), or toll free 1-800-527-4723 (for orders in US and Canada). For reprint permission, go towww.ashrae.org/permissions. 2015 ASHRAE ISSN 1041-23362015 SupplementASHRAE is a registered trademark of the American Society of Heating, Refrigerating and Air-Cond

    5、itioning Engineers, Inc.ANSI is a registered trademark of the American National Standards Institute.SPECIAL NOTEThis American National Standard (ANS) is a national voluntary consensus Standard developed under the auspices of ASHRAE. Consensus is defined by the AmericanNational Standards Institute (A

    6、NSI), of which ASHRAE is a member and which has approved this Standard as an ANS, as “substantial agreement reached by directlyand materially affected interest categories. This signifies the concurrence of more than a simple majority, but not necessarily unanimity. Consensus requires that allviews a

    7、nd objections be considered, and that an effort be made toward their resolution.” Compliance with this Standard is voluntary until and unless a legal jurisdictionmakes compliance mandatory through legislation. ASHRAE obtains consensus through participation of its national and international members,

    8、associated societies, and public review.ASHRAE Standards are prepared by a Project Committee appointed specifically for the purpose of writing the Standard. The Project Committee Chair andVice-Chair must be members of ASHRAE; while other committee members may or may not be ASHRAE members, all must b

    9、e technically qualified in the subjectarea of the Standard. Every effort is made to balance the concerned interests on all Project Committees. The Senior Manager of Standards of ASHRAE should be contacted fora. interpretation of the contents of this Standard,b. participation in the next review of th

    10、e Standard,c. offering constructive criticism for improving the Standard, ord. permission to reprint portions of the Standard.DISCLAIMERASHRAE uses its best efforts to promulgate Standards and Guidelines for the benefit of the public in light of available information and accepted industry practices.

    11、However, ASHRAE does not guarantee, certify, or assure the safety or performance of any products, components, or systems tested, installed, or operated inaccordance with ASHRAEs Standards or Guidelines or that any tests conducted under its Standards or Guidelines will be nonhazardous or free from ri

    12、sk.ASHRAE INDUSTRIAL ADVERTISING POLICY ON STANDARDSASHRAE Standards and Guidelines are established to assist industry and the public by offering a uniform method of testing for rating purposes, by suggesting safepractices in designing and installing equipment, by providing proper definitions of thi

    13、s equipment, and by providing other information that may serve to guide theindustry. The creation of ASHRAE Standards and Guidelines is determined by the need for them, and conformance to them is completely voluntary.In referring to this Standard or Guideline and in marking of equipment and in adver

    14、tising, no claim shall be made, either stated or implied, that the product hasbeen approved by ASHRAE.ASHRAE STANDARDS COMMITTEE 20132014ASHRAE STANDARDS COMMITTEE 20142015William F. Walter, Chair John F. Dunlap Rick A. LarsonRichard L. Hall, Vice-Chair James W. Earley, Jr. Mark P. ModeraKarim Amran

    15、e Steven J. Emmerich Cyrus H. NasseriJoseph R. Anderson Julie M. Ferguson Janice C. PetersonJames D. Aswegan Krishnan Gowri Heather L. PlattCharles S. Barnaby Cecily M. Grzywacz Douglas T. ReindlSteven F. Bruning Rita M. Harrold Julia A. Keen, BOD ExOJohn A. Clark Adam W. Hinge Thomas E. Werkema, Jr

    16、., COWaller S. Clements Debra H. KennoyDavid R. Conover Malcolm D. KnightStephanie C. Reiniche, Senior Manager of StandardsRichard L. Hall, Chair James W. Earley, Jr. Mark P. ModeraDouglass T. Reindl, Vice-Chair Steven J. Emmerich Cyrus H. NasseriJoseph R. Anderson Patricia T. Graef Heather L. Platt

    17、James Dale Aswegan Rita M. Harrold Peter SimmondsCharles S. Barnaby Adam W. Hinge Wayne H. Stoppelmoor, Jr.Donald M. Brundage Srinivas Katipamula Jack H. ZarourJohn A. Clark Debra H. Kennoy Julia A. Keen, BOD ExOWaller S. Clements Malcolm D. Knight Bjarne Wilkens Olesen, CODavid R. Conover Rick A. L

    18、arsonJohn F. Dunlap Arsen K. MelkovStephanie C. Reiniche, Senior Manager of StandardsASHRAE Standing Standard Project Committee 52.2 for Addenda a, b, and dCognizant TC: TC 2.4, Particulate Air Contaminants and Particulate Removal EquipmentSPLS Liaison: Rita M. HarroldRobert B. Burkhead, Chair* Leon

    19、ard E. Duello* Phil Maybee*Bruce N. McDonald, Vice Chair* Thomas A. Justice* Stephen W. Nicholas*Peter W. Shipp, Jr., Secretary* Carolyn M. L. Kerr* Kathleen Owen*Michael D. Corbat* Marianne Lane* John S. Robertson*Zied Driss* David Matier* Christine Q. Sun* Denotes members of voting status when the

    20、 document was approved for publication ASHRAE (www.ashrae.org). For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is not permitted without ASHRAEs prior written permission.CONTENTS2015 Addenda Supplement toANSI/ASHRAE Standard 52.2-2012,Met

    21、hod of Testing General Ventilation Air-Cleaning Devices forRemoval Efficiency by Particle SizeSECTION PAGEAddendum a2Addendum b6Addendum c 9Informative Annex: 18-Month SupplementAddenda to ANSI/ASHRAE Standard 52.2-201210NOTEApproved addenda, errata, or interpretations for this standard can be downl

    22、oaded free of charge from the ASHRAEwebsite at www.ashrae.org/technology. 2015 ASHRAE1791 Tullie Circle NE Atlanta, GA 30329 www.ashrae.org All rights reserved.ASHRAE is a registered trademark of the American Society of Heating, Refrigerating and Air-Conditioning Engineers, Inc.ANSI is a registered

    23、trademark of the American National Standards Institute. ASHRAE (www.ashrae.org). For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is not permitted without ASHRAEs prior written permission.2 ANSI/ASHRAE Addendum a to ANSI/ASHRAE Standard 52

    24、.2-2012(This foreword is not part of this standard. It is merelyinformative and does not contain requirements necessaryfor conformance to the standard. It has not been pro-cessed according to the ANSI requirements for a standardand may contain material that has not been subject topublic review or a

    25、consensus process. Unresolved objec-tors on informative material are not offered the right toappeal at ASHRAE or ANSI.)FOREWORDThese proposed MERV table changes are a direct result of athorough review and series of votes at the committee level toaddress key issues about the variability of the standa

    26、rd, spe-cifically the MERV 8 through 11 overlap issue and the needfor each range to be consistent with the lower limits of theother ranges. These inconsistencies have been a source oflegitimate confusion and have been used to abet the knownoccasional intentional misuse of the data. It is our sincere

    27、belief that these steps are critical in the further use of thestandard and its data product. Further and substantialchanges in the MERV concept are under consideration nowand should compliment these proposed changes.Note: In this addendum, changes to the current standardare indicated in the text by

    28、underlining (for additions) andstrikethrough (for deletions) unless the instructions specifi-cally mention some other means of indicating the changes.12. MINIMUM EFFICIENCY REPORTING VALUE(MERV) FOR AIR CLEANERS12.2 The minimum final resistance for an air cleaner shall bein accordance with Table 12-

    29、1, except that the final resistanceshall always be the same as or greater than twice the initialresistance.12.3 The minimum efficiency reporting value in the specifiedsize ranges and final resistance for reporting purposes shall bein accordance with Table 12-1. Air cleaners with MERV1 toMERV4 (i.e.,

    30、 devices with efficiencies less than 20% in thesize range of 3.010.0 m) shall also be tested in accordancewith the Dust-Loading Procedure outlined in Section 10.7.2 ofthis standard before using this system for reporting.Addendum a to Standard 52.2-2012Modify Section 12, replacing Table 12-1, as foll

    31、ows.TABLE 12-1 Minimum Efficiency ReportingValue (MERV) ParametersStandard 52.2Minimum EfficiencyReporting Value (MERV)Composite Average Particle Size Efficiency,%in Size Range, mAverage Arrestance,%Range 10.301.0Range 21.03.0Range 33.010.01 n/a n/a E320 Aavg652 n/a n/a E320 65 Aavg703 n/a n/a E320

    32、70 Aavg754 n/a n/a E320 75 Aavg5 n/a n/a 20 E335 n/a6 n/a n/a 35 E350 n/a7 n/a n/a 50 E370 n/a8 n/a n/a 70 E3n/a9 n/a E250 85 E3n/a10 n/a 50 E265 85 E3n/a11 n/a 65 E280 85 E3n/a12 n/a 80 E290 E3n/a13 E175 90 E290 E3n/a14 75 E185 90 E290 E3n/a15 85 E195 90 E290 E3n/a16 95 E195 E295 E3n/aNote: The min

    33、imum final resistance shall be at least twice the initial resistance, or as specified above, whichever is greater. Refer to Section 10.7.1.1.45 ASHRAE (www.ashrae.org). For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is not permitted with

    34、out ASHRAEs prior written permission.ANSI/ASHRAE Addendum a to ANSI/ASHRAE Standard 52.2-2012 3INFORMATIVE APPENDIX DMINIMUM EFFICIENCY REPORTING GUIDANCED2. EXAMPLES.D2.4 “Filter D”The reporting value for this air cleaneris MERV8 at 0.93.This minimum performance curve is typical of a mediaair clean

    35、er currently marketed as a 25% to 30% dust spot fil-ter when tested at 0.93 m3/s (1970 cfm). The range efficien-cies are calculated as follows:The average efficiency in Range 3 is in the 80% to -below the85% range minimum shown in Table 12-1 for theMERV Group 109-12 category. However, the E2 value i

    36、sabove the 20% required for MERV 8 and below the 35%required for MERV 9. Thus, the MERV of this filter This fil-ter is categorized in the MERV Group 5-8 area because theaverage in Range 3 is above the MERV Group 1-4 area. Theaverage efficiencies in Ranges 1 and 2 are not used for report-ing. Based o

    37、n the average efficiency of 81% in Range 3, thisfilter is reported as MERV8 at 0.93.INFORMATIVE APPENDIX JOPTIONAL METHOD OF CONDITIONING A FILTERUSING FINE KCL PARTICLESTO DEMONSTRATEEFFICIENCY LOSSTHAT MIGHT BE REALIZED INFIELD APPLICATIONS.J11.3.3 With this appendix, the minimum efficiency report

    38、-ing value in the specified size ranges and final resistance forreporting purposes shall be in accordance with Table IJ-2.TABLE 12-1 Minimum Efficiency Reporting Value (MERV) ParametersStandard 52.2Minimum EfficiencyReporting Value (MERV)Composite Average Particle Size Efficiency,%in Size Range, mAv

    39、erage Arrestance,%Range 10.30 to 1.0Range 21.0 to 3.0Range 33.0 to 10.01 N/A N/A E320 Aavg652 N/A N/A E320 65 Aavg3 N/A N/A E320 70 Aavg4 N/A N/A E320 75 Aavg5 N/A N/A 20 E3N/A6 N/A N/A 35 E3N/A7 N/A N/A 50 E3N/A8 N/A 20 E270 E3N/A9 N/A 35 E275 E3N/A10 N/A 50 E280 E3N/A11 20 E165 E285 E3N/A12 35 E18

    40、0 E290 E3N/A13 50 E185 E290 E3N/A14 75 E190 E295 E3N/A15 85 E190 E295 E3N/A16 95 E195 E295 E3N/ANote: The minimum final resistance shall be at least twice the initial resistance. Refer to Section 10.7.1.1.45Modify Informative Appendix D as follows.Range Size PSE in Range,% Average PSE,%1 0.30 to 1.0

    41、 5, 6, 6, 8 62 1.0 to 3.0 12, 22, 33, 55 313 3.0 to 10 70, 78, 84, 90 81Modify Informative Appendix J as follows. ASHRAE (www.ashrae.org). For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is not permitted without ASHRAEs prior written perm

    42、ission.4 ANSI/ASHRAE Addendum a to ANSI/ASHRAE Standard 52.2-2012TABLE J-13 KCl Conditioned Per Appendix J Minimum Efficiency ReportingValue (MERV-A) ParametersStandard 52.2 Appendix JMinimum EfficiencyReporting Value(MERV-A)Composite Average Particle Size Efficiency in Size Range, %Average Arrestan

    43、ce,%Range 1(0.31.0 m)Range 2(1.03.0 m)Range 3(3.010.0 m)1A n/a n/a E3A20 Aavg652A n/a n/a E3A20 65 Aavg703A n/a n/a E3A20 70 Aavg754A n/a n/a E3A20 75 Aavg5A n/a n/a 20 E3A35 n/a6A n/a n/a 35 E3A50 n/a7A n/a n/a 50 E3A70 n/a8A n/a n/a 70 E3A n/a9A n/a E2A50 85 E3A n/a10A n/a 50 E2A65 85 E3A n/a11A n

    44、/a 65 E2A80 85 E3A n/a12A n/a 80 E2A 90 E3A n/a13A E1A75 90 E2A 90 E3A n/a14A 75 E1A85 90 E2A 90 E3A n/a15A 85 E1A95 90 E2A 90 E3A n/a16A 95 E1A 95 E2A 95 E3A n/a ASHRAE (www.ashrae.org). For personal use only. Additional reproduction, distribution, or transmission in either print or digital form is

    45、 not permitted without ASHRAEs prior written permission.ANSI/ASHRAE Addendum a to ANSI/ASHRAE Standard 52.2-2012 5TABLE J-2 KCl Conditioned Per Appendix J Minimum Efficiency Reporting Value (MERV-A) ParametersStandard 52.2Minimum EfficiencyReporting Value(MERV-A)Composite Average Particle Size Effic

    46、iency,%in Size Range, mAverage Arrestance, %Range 1(0.30 to 1.0 m)Range 2(1.0 to 3.0 m)Range 3(3.0 to 10.0 m)1-A N/A N/A E3-A20 Aavg652-A N/A N/A E3-A20 65 Aavg3-A N/A N/A E3-A20 70 Aavg4-A N/A N/A E3-A20 75 Aavg5-A N/A N/A 20 E3-A N/A6-A N/A N/A 35 E3-A N/A7-A N/A N/A 50 E3-A N/A8-A N/A 20 E2-A 70

    47、E3-A N/A9-A N/A 35 E2-A 75 E3-A N/A10-A N/A 50 E2-A 80 E3-A N/A11-A 20 E1-A 65 E2-A 85 E3-A N/A12-A 35 E1-A 80 E2-A 90 E3-A N/A13-A 50 E1-A 85 E2-A 90 E3-A N/A14-A 75 E1-A 90 E2-A 95 E3-A N/A15-A 85 E1-A 90 E2-A 95 E3-A N/A16-A 95 E1-A 95 E2-A 95 E3-A N/A ASHRAE (www.ashrae.org). For personal use on

    48、ly. Additional reproduction, distribution, or transmission in either print or digital form is not permitted without ASHRAEs prior written permission.6 ANSI/ASHRAE Addendum b to ANSI/ASHRAE Standard 52.2-2012(This foreword is not part of this standard. It is merelyinformative and does not contain requirements necessaryfor conformance to the standard. It has not been pro-cessed according to the ANSI requirements for a standardand may contain material that has not been subject topublic review or a consensus process. Unresolved objec-tors on informative material are not offere


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