ASTM E1424-1991(2016) Standard Test Method for Determining the Rate of Air Leakage Through Exterior Windows Curtain Walls and Doors Under Specified Pressure and Temperature Differe.pdf

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1、Designation: E1424 91 (Reapproved 2016)Standard Test Method forDetermining the Rate of Air Leakage Through ExteriorWindows, Curtain Walls, and Doors Under SpecifiedPressure and Temperature Differences Across theSpecimen1This standard is issued under the fixed designation E1424; the number immediatel

2、y following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope1.1 This test

3、method provides a standard laboratory proce-dure for determining the air leakage rates of exterior windows,curtain walls, and doors under specified differential air tem-perature and pressure conditions across the specimen.1.2 Specified temperature and pressure conditions are rep-resentative of those

4、 that may be encountered at the exteriorthermal envelope of buildings, excluding the effects of heatbuildup due to solar radiation.1.3 This laboratory procedure is applicable to exteriorwindows, curtain walls, and doors and is intended to measureonly such leakage associated with the assembly and not

5、 theinstallation; however, the test method can be adapted for thelatter purpose.1.4 This is a laboratory procedure for testing at differentialtemperature conditions. Persons interested in a laboratory testat ambient conditions should reference Test Method E283.Persons interested in a field test on i

6、nstalled windows anddoors should reference Test Method E783.1.5 Persons using this procedure should be knowledgeablein the areas of heat transfer, fluid mechanics, and instrumen-tation practices, and shall have a general understanding offenestration products and components.1.6 The values stated in S

7、I units are to be regarded asstandard. The inch-pound units given in parenthesis are pro-vided for information only.1.7 This standard does not purport to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate

8、 safety and health practices and determine the applica-bility of regulatory limitations prior to use. For specific hazardstatements, see Section 7.2. Referenced Documents2.1 ASTM Standards:2E283 Test Method for Determining Rate of Air LeakageThrough Exterior Windows, Curtain Walls, and DoorsUnder Sp

9、ecified Pressure Differences Across the Speci-menE631 Terminology of Building ConstructionsE783 Test Method for Field Measurement of Air LeakageThrough Installed Exterior Windows and Doors3. Terminology3.1 DefinitionsTerms used in this test method are definedin Terminology E631.3.2 Definitions of Te

10、rms Specific to This Standard:3.2.1 air leakage rate (qAor qL)the air leakage per unit ofspecimen area (A) or per unit length of operable crackperimeter (L), expressed as m3/s-m2(ft3/min-ft2)orm3/s-m(ft3/min-ft).3.2.2 extraneous air leakage (Qe)the volume of airflowing per unit of time through the t

11、est chamber and testapparatus, exclusive of the air flowing through the testspecimen, under a test pressure difference and test temperaturedifference, converted to standard conditions, expressed in m3/s(ft3/min).3.2.2.1 DiscussionExtraneous leakage is the sum of allleakage other than that intended t

12、o be measured by the test.3.2.3 specimen air leakage (Qs)the volume of air flowingper unit of time through the specimen under a test pressuredifference and test temperature difference, converted to stan-dard conditions, expressed in m3/s (ft3/min).1This test method is under the jurisdiction of ASTM

13、Committee E06 onPerformance of Buildings and is the direct responsibility of Subcommittee E06.51on Performance of Windows, Doors, Skylights and Curtain Walls.Current edition approved Oct. 1, 2016. Published October 2016. Originallyapproved in 1991. Last previous edition approved in 2008 as E1424 91

14、(2008).DOI: 10.1520/E1424-91R16.2For referenced ASTM standards, visit the ASTM website, www.astm.org, orcontact ASTM Customer Service at serviceastm.org. For Annual Book of ASTMStandards volume information, refer to the standards Document Summary page onthe ASTM website.Copyright ASTM International,

15、 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959. United States13.2.4 specimen area (A)the area determined by the overalldimensions of the frame that fits into the rough opening,expressed as m2(ft2).3.2.5 test mask assemblya wall construction that sur-rounds and supports the tes

16、t specimen.3.2.6 test pressure differencesthe specified differentialstatic air pressure across the specimen, expressed in PA(lbf/ft2).3.2.7 test temperature differencethe specified difference intemperature across the test specimen, expressed as a set ofroom-side and weather-side temperatures, in C (

17、F).3.2.8 total air flow (Qt)the volume of air flowing per unitof time through the test chamber and test apparatus, inclusiveof the air flowing through the test specimen, under a testpressure difference and test temperature difference, convertedto standard conditions, expressed in m3/s (ft3/min).3.2.

18、9 unit length of operable crack perimeter (L)the sumof all perimeters of operable ventilators, sash, or doors con-tained in the test specimen, based on the overall dimensions ofsuch parts, expressed as m (ft). Where two such operable partsmeet, the two adjacent lengths of perimeter shall be counted

19、asonly one length.4. Summary of Test Method4.1 The procedure consists of sealing a specimen into oragainst a chamber capable of maintaining a specified airtemperature differential across the specimen. When the speci-men has been conditioned for a specified period of time, air issupplied to, or exhau

20、sted from, the chamber at a rate requiredto maintain the specified test pressure difference across thespecimen. The resultant air flow through the specimen is thenmeasured.5. Significance and Use5.1 The exterior building envelope and its components (forexample, windows and doors) separate the interi

21、or conditionedspaces from exterior environmental factors such as heat, cold,rain, wind, noise dust, etc. Building materials and componentscan expand or contract to varying degrees, depending onseasonal and diurnal exterior ambient air temperatures. Fluc-tuations in the ambient air temperatures can a

22、lter the sealingcharacteristics of windows, curtain walls, and doors by chang-ing weather seal compression ratios. Thermal expansion orcontraction of framing materials coupled with thermal blowingdue to temperature gradients through the product, and altera-tions in the effective leakage areas due to

23、 weather sealshrinkage and compression set, can also significantly alter theair leakage rates of these products in field service applications.Air leakage tests performed using Test Method E283 (alaboratory air leakage test performed at ambient temperatureconditions) will not account accurately for c

24、hanges in airleakage rates that may occur from dimensional changes infenestration systems, materials, and components.5.2 It is recommended that test specifiers consult the manu-facturer for recommended test temperature extremes.5.3 This procedure provides a means for evaluating airleakage rates of f

25、enestration systems under various temperatureand pressure conditions and air flow directions. It is alsoapplicable for use in evaluating the efficiency of weathersealing products in fenestration systems. All air flow rates areconverted to standard conditions to provide a means ofcomparison between m

26、easurements made at different ambientair temperature and pressure conditions.5.4 Air leakage rates are sometimes used for comparisonpurposes. Such comparisons may not be valid unless thecomponents being tested and compared are of essentially thesame size, configuration, and design.6. Apparatus6.1 Th

27、e description of the apparatus in this section isgeneral. Any suitable arrangement of equipment capable ofmaintaining the required test tolerances is permitted.6.1.1 Test ChamberA well sealed box, wall, or otherapparatus into or against which the specimen is mounted andsecured for testing. An air su

28、pply shall be provided to allow apositive or negative pressure differential to be applied acrossthe specimen without significant extraneous losses. The cham-ber should also be constructed of materials that have goodresistance to heat flow. The chamber shall be capable ofwithstanding the differential

29、 test pressures and temperaturesthat may be encountered in this procedure. At least one staticair pressure tap shall be provided on each side of the specimento measure the test pressure differences. The pressure tap shallbe located in an area of the chamber in which pressure readingswill not be affe

30、cted by any supply air or air conditioning fans.The air supply to the chamber shall be located in an area inwhich it does not directly impinge upon the test specimen. Aschematic is given in Fig. 1.6.1.2 Supply Air SystemA controllable dry air supply orexhaust system designed to provide conditioned a

31、ir flowthrough the test specimen at constant pressure and temperatureFIG. 1 Environmental Chamber, SchematicE1424 91 (2016)2conditions for sufficient time to obtain required pressure and airflow readings. The system shall be designed to eliminatepressure fluctuations during the air flow measurements

32、. Thismay be accomplished through the use of a heat exchangersystem connected to the air supply port inside of the weather-ing portion of the test apparatus (see Fig. 1).6.1.3 Air Temperature Conditioning SystemA system tomaintain weather-side and room-side air test temperatures towithin 61C (2F) of

33、 setpoint. The system shall consist ofheating and refrigeration equipment designed to maintain therequired test temperatures for extended periods of time. Ameans of dehumidification shall be available to control theroom-side relative humidity levels to the limits recommendedin Table 1.6.1.4 Pressure

34、 Measuring ApparatusA device to measurethe differential test pressures to 62 % of setpoint or 62.5 Pa(60.01 in. of water column), whichever is greater.6.1.5 Air Flow Metering SystemA device to measure theair flow into the test chamber or through the test specimen. Theair flow measurement error shall

35、 not exceed 65 % when the airflow equals or exceeds 9.44 104m3/s (2 ft3/min) or 610 %when the air flow is less than 9.44410m3/s (2 ft3/min).NOTE 1At lower flows, a greater percentage of errors will beacceptable. Special flow metering techniques are necessary if higherprecision is required. The accur

36、acy of the specimen air leakage flowmeasurement is affected by the accuracy of the flowmeter and the amountof extraneous air leakage (see Annex A1).6.1.6 Air Temperature Measuring SystemTemperaturesensing devices (TSD) such as thermocouples, RTDS, etc.,suspended in air, surrounded by shields to redu

37、ce radiative heattransfer effects, as shown in Fig. 2. The thermocouples shall belocated at the intersection of the vertical and horizontalcenterlines of the test specimen. The air TSD shall be movableto maintain a distance of 76 6 8mm(36 0.3 in.) measuredperpendicular to the outermost plane of the

38、test specimen. Theambient air and surface temperature measuring and indicatinginstrumentation shall have resolution of 1C or 1F andprecision of 61C (62F).6.1.7 Humidity Control SystemInstrumentation to mea-sure and control the room-side humidity. The system shall haveresolution to 1 % RH and shall h

39、ave precision to 63%ofsetpoint.7. Hazards7.1 Glass breakage may occur at the test pressure differ-ences applied in this test.Adequate precautions should be takento protect personnel.7.2 The interior walls of the weather-side compartment aswell as other surfaces within this compartment may be dan-ger

40、ous to the exposed skin of testing personnel when extremeelevated or depressed test temperature conditions are in effect.Proper care and precautions should be taken to prevent injuries.8. Test Specimen8.1 The specimen is the entire assembled unit submitted fortesting as described in this section.8.2

41、 The test specimen for a wall shall be of sufficient size todetermine the performance of all typical parts of the wallsystem. For curtain walls or walls constructed with prefabri-cated units, the specimen width shall be not less than twotypical units plus the connections and supporting elements atbo

42、th sides, and sufficient to provide full loading on at least onetypical vertical joint or framing member, or both. The heightshall be not less than the full building story height or the heightof the unit, whichever is greater, and shall include at least onefull horizontal joint, accommodating vertic

43、al expansion, withsuch joint being at or near the bottom of the specimen, as wellas all connections at the top and bottom of the units.8.2.1 All parts of the wall test specimen shall be full size,using the same materials, details, and methods of constructionand anchorage as used on the actual buildi

44、ng.8.2.2 Conditions of structural support shall be simulated asaccurately as possible.8.3 The test specimen for a window, door, or other compo-nent shall consist of the entire assembled unit, including frameand anchorage as supplied by the manufacturer for installationin the building. If only one sp

45、ecimen is to be tested, theselection shall be determined by the specifying authority.NOTE 2The air leakage rate is likely to be a function of size andgeometry of the specimen.TABLE 1 Recommended Maximum Room-Side Humidity Levelsfor Glass SpecimensNatural Convection, Indoor Air at23.3C (74F)AOutdoor

46、Temperature, C (F)Single Glazing, RH,%Double Glazing,RH, %4.4 (40) 39 591.1 (30) 29 506.7 (20) 21 4312.2 (10) 15 3617.8 (0) 10 3023.3 (10) 7 2628.9 (20) 5 2134.4 (30) 3 17AReference: 1983 ASHRAE EQUIPMENT MANUAL,p.5.FIG. 2 Test Specimen Mask DetailE1424 91 (2016)39. Preparation of Test Specimen9.1 T

47、he location of surface temperature measuring devicesshall conform to the configurations shown in Figs. 3-6.9.2 A test mask assembly shall be provided for the instal-lation of the specimen to the test apparatus.Atypical test maskassembly is shown in Fig. 7. The thickness of the test maskassembly shal

48、l not be less than the test specimen. Mount thetest specimen to the test mask assembly to simulate, as closelyas possible, the actual installation conditions anticipated. Sealperimeter joints between the test specimen and the test maskassembly to eliminate extraneous air leakage.10. Calibration10.1

49、Specific procedures for calibration of the total air flowmeasurement system are being developed in a separate ASTMdocument; when complete, that document will be referenced.However, all test apparatus shall be calibrated at a minimum ofevery six months to the tolerances established in Section 6. Theprocedures for this calibration are, at this time, the responsi-bility of the testing agency. Calibration should be conducted ator near the environmental conditions (temperature, relativehumidity, etc.) under which the tests are to be condu

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