ASHRAE GUIDELINE 26-2012 Guideline for Field Testing of General Ventilation Filtration Devices and Systems for Removal Efficiency In-Situ by Particle Size and Resistance to Airflow.pdf
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1、 CONTENTSASHRAE Guideline 26-2012Guideline for Field Testing of General Ventilation Filtration Devices and Systems forRemoval Efficiency In-Situ by Particle Size and Resistance to AirflowSECTION PAGEForeword. 21 Purpose 22 Scope . 23 Definitions, Acronyms, and Abbreviations 34 Test Equipment and Set
2、up. 35 Site Evaluation 66 Test Procedure . 67 Expression of Results. 108 Errors and Data Analyses. 119 Calculation of Results. 1110 Optional Enhanced Test System 1311 References . 15Informative Appendix A: Filter Installation Pretesting Inspection Form 16Informative Appendix B: “Approval for Testing
3、” Form. 18Informative Appendix C: Example of How to Complete Testing. 19Informative Appendix D: Bibliography. 30NOTEApproved addenda, errata, or interpretations for this guideline can be downloaded free of charge from the ASHRAE Web site at www.ashrae.org/technology. 2012 ASHRAE1791 Tullie Circle NE
4、Atlanta, GA 30329www.ashrae.orgAll rights reserved. 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 ASHRAE Guideline 26-2012(This foreword is not part of
5、 this guideline. It is merelyinformative and does not contain recommendations orrequirements necessary for conformance to theguideline.)FOREWORDThe purpose of this guideline is to provide a test proce-dure for evaluating the in-situ performances of general venti-lation filtration devices and systems
6、. Although any filter withan ASHRAE Standard 52.2-2010 efficiency from MERV 1-16could theoretically be tested using this guideline, it may be dif-ficult to achieve statistically acceptable results for filters withperformance below a typical MERV 11 value.Supply air to the HVAC system contains viable
7、 and non-viable particles of a broad size range. Over time, these parti-cles will cause problems for fans, heat exchangers, and othersystem parts, decreasing their function and increasing energyconsumption and maintenance. For health issues, the fine par-ticles (1.0 m will therefore have lower accur
8、acy, so the resultsshould be interpreted with respect to this.Particles in the 0.3 to 5.0 m size range are typically mea-sured by particle counters that can determine the concentra-tion of particles in specific size ranges. These instruments arecommercially available and will determine particle size
9、 alongwith the concentration level by several techniques (e.g., lightscattering, electrical mobility separation, or aerodynamicdrag). Devices based on light scattering are currently the mostconvenient and commonly used instruments for this type ofmeasurement and are, therefore, the type of device us
10、ed withinthis guideline.During in-situ measurement conditions, the optical prop-erties of the particles may differ from the optical properties ofthe particles used for calibrating the particle counter and test-ing it in the laboratory. Thus, the particle counter could sizethe particles differently b
11、ut count the overall number of parti-cles correctly. By adding an extra reference filter, the effect of varyingmeasuring conditions can be reduced. Additionally, using thisenhanced test method, the results can be used to correct themeasured efficiencies in relation to the efficiency of the refer-enc
12、e filter measured in laboratory using a standardized testaerosol.The results from using the standard method or theenhanced method will give both users and manufacturers abetter knowledge of actual filter and installation properties.It is important to note that field measurements generallyresult in l
13、arger uncertainties in the results compared to labo-ratory measurements. Field measurements may produceuncertainty from temporal and spatial variability in particleconcentrations, from limitations on sampling locations due toair-handling unit configurations, and from the use of fieldinstrumentation.
14、 These factors may result in lower accuracyand precision in the calculated fractional efficiencies as com-pared to laboratory measurements. It is the intent of thisguideline to provide a practical method in which the accuracyand precision of the result are maximized (and the precision ofthe result q
15、uantified) by recommending appropriate samplinglocations, sample quantities, and instrumentation. This guide-line is not intended to serve as a filter performance ratingmethod.The guideline also describes performance specificationsfor the equipment and defines methods of calculating andreporting the
16、 results.This is a revision of ASHRAE Guideline 26-2008. Thisguideline was prepared under the auspices of ASHRAE. Itmay be used, in whole or in part, by an association or gov-ernment agency with due credit to ASHRAE. Adherence isstrictly on a voluntary basis and merely in the interests ofobtaining u
17、niform standards throughout the industry. The changes made for the 2012 revision were as follows: Updated referencesMinor editorial changesACKNOWLEDGMENTThe ASHRAE Guideline Project Committee would liketo thank Eurovent for allowing ASHRAE to build upon theexcellent work this organization published
18、with Eurovent 4/10-2005, In Situ Fractional Efficiency Determination ofGeneral Ventilation Filters (see Informative Appendix DBibliography). Without the help of Eurovent, this projectwould have been more difficult and time consuming tocomplete.1. PURPOSETo establish a guideline for evaluating the re
19、moval effi-ciency by particle size and the resistance to airflow of an air-cleaning device as installed in a field HVAC system. Theguideline includes a separate procedure for evaluating partic-ulate filtration system efficiency for systems that meet thedefined criteria.2. SCOPEThis guideline describ
20、es a procedure for measuring theperformance of general ventilation air-cleaning devices in anend-use installed configuration. The performance measure-ments include removal efficiency by particle size and the resis-tance to airflow. The procedures for test include the definitionand reporting of the s
21、ystem airflow.The procedure describes a method of counting ambientair particles of 0.3 to 5.0 m upstream and downstream of thein-place air cleaner(s) in a functioning air-handling system.The procedure describes the reduction of particle counter datato calculate removal efficiency by particle size. S
22、ince filter installations vary dramatically in design andshape, a protocol for assessing the suitability of a site withregard to filter and system evaluation is included. When the ASHRAE (www.ashrae.org). For personal use only. Additional reproduction, distribution, or transmission in either print o
23、r digital form is not permitted without ASHRAEs prior written permission.ASHRAE Guideline 26-2012 3evaluated site conditions meet the minimum criteria estab-lished for system evaluation, the performance evaluation ofthe system can also be performed according to this procedure.The procedure for testi
24、ng also describes performancespecifications for the testing equipment and defines proce-dures for calculating and reporting these results. This proce-dure is not intended for measuring performance of portable ormovable room air cleaners. This guideline is not intended forevaluation of HEPA and ULPA
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