ASTM E1186-2003 Standard Practices for Air Leakage Site Detection in Building Envelopes and Air Barrier Systems《建筑物外层和空障系统漏气现场检测的标准实施规程》.pdf
《ASTM E1186-2003 Standard Practices for Air Leakage Site Detection in Building Envelopes and Air Barrier Systems《建筑物外层和空障系统漏气现场检测的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1186-2003 Standard Practices for Air Leakage Site Detection in Building Envelopes and Air Barrier Systems《建筑物外层和空障系统漏气现场检测的标准实施规程》.pdf(7页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1186 03Standard Practices forAir Leakage Site Detection in Building Envelopes and AirBarrier Systems1This standard is issued under the fixed designation E 1186; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the yea
2、r of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 These practices cover standardized techniques for locat-ing air leakage sites in building envelopes and air barr
3、iersystems.1.2 These practices offer a choice of means for determiningthe location of air leakage sites with each offering certainadvantages for specific applications.1.3 Some of the practices require a knowledge of infraredscanning, building and test chamber pressurization and depres-surization, sm
4、oke generation techniques, sound generation anddetection, and tracer gas concentration measurement tech-niques.1.4 The practices described are of a qualitative nature indetermining the air leakage sites rather than determiningquantitative leakage rates.1.5 This standard does not purport to address a
5、ll of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use. For specific hazardstatements, see Section 6.2. Referenced Do
6、cuments2.1 ASTM Standards:E 631 Terminology of Building Constructions2E 741 Test Method for Measuring Air Leakage Rate byTracer Dilution2E 779 Test Method for Determining Air Leakage Rate byFan Pressurization22.2 Other Standards:ANSI-ASHRAE Standard 101 Application of InfraredSensing Devices to the
7、Assessment of Building Heat LossCharacteristics3ISO Standard 6781 Thermal InsulationQualitative Detec-tion of Thermal Irregularities in Building EnvelopesInfrared Method33. Terminology3.1 Definitions:3.1.1 air leakage rate, nthe volume of air movement perunit time across the building envelope or air
8、 barrier system,including flow through joints, cracks, and porous surfaces, orcombinations thereof, in which the driving force for such airleakage in buildings is either mechanical pressurization orevacuation, natural wind pressures, or air temperature differ-ences between the building interior and
9、the outdoors, orcombinations thereof.3.1.2 air leakage site, na location on the building enve-lope or air barrier system where air can move between thebuilding interior and the outdoors.3.1.3 air infiltration, nair leakage into the building.3.1.4 air exfiltration, nair leakage out of the building.3.
10、1.5 building envelope, nthe boundary or barrier sepa-rating the interior volume of a building from the outsideenvironment.3.1.5.1 DiscussionFor the purpose of these practices, theinterior volume is the deliberately conditioned space within abuilding generally not including the attic space, basements
11、pace, and attached structures, unless such spaces are con-nected to the heating and air conditioning system, such as acrawl space plenum. The actual building envelope may extendbeyond these boundaries because of ducting or other construc-tion features.3.1.6 air barrier system, na system in building
12、construc-tion that is designed and installed to reduce air leakage eitherinto or through the building envelope.3.1.7 test specimen, nthe part of the air barrier system onthe building to be tested that may consist of the selected areasof materials comprising the principle resistance to airflow,joints
13、 between such materials and joints between the materialsand structural, mechanical or other penetrations through suchmaterials, and excludes any material which does not form anintegral part of the air barrier system.3.2 For other definitions, see Terminology E 631.1These practices are under the juri
14、sdiction of ASTM Committee E06 onPerformance of Buildings and are the direct responsibility of Subcommittee E06.41on Air Leakage and Ventilation.Current edition approved April 10, 2003. Published May 2003. Originallyapproved in 1987. Last previous edition approved in 1998 as E 1186 98.2Annual Book o
15、f ASTM Standards, Vol 04.11.3Available from American National Standards Institute, 11 West 42nd Street,New York, NY 10036.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.4. Summary of Practice4.1 This standard presents the following
16、seven practices fordetecting air leakage sites in building envelopes:4.1.1 Combined building depressurization (or pressuriza-tion) and infrared scanning,4.1.2 Building depressurization (or pressurization) andsmoke tracers,4.1.3 Building depressurization (or pressurization) and air-flow measuring dev
17、ices,4.1.4 Generated sound and sound detection,4.1.5 Tracer gas detection,4.1.6 Chamber depressurization (or pressurization) andsmoke tracers, and4.1.7 Chamber depressurization and leak detection liquids.4.2 These practices are described as follows:4.2.1 Building Depressurization (or Pressurization)
18、 withInfrared Scanning TechniquesThis practice relies on theexistence of an indooroutdoor temperature difference of atleast 5 C. In most geographic locations, this condition is metduring some portion of the day over a large fraction of the year.Outdoor air is moved through the building envelope byde
19、pressurizing the building interior with a fan (see Test MethodE 779) or using the mechanical system in the building. Becausethe infiltrating air is at a different temperature than the interiorsurfaces of the building envelope, local interior surface tem-perature changes take place which can be detec
20、ted by infraredscanning equipment. The infrared pattern resulting from airleakage is different from that associated with varied levels ofthermal conductance in the envelope, allowing air leakage sitesto be identified. This practice can also be performed bypressurizing the building and scanning the e
21、xterior of thebuilding envelope.4.2.2 Smoke Tracer in Conjunction With Building Pressur-ization or DepressurizationThis practice consists of pressur-izing or depressurizing the building using a fan or the mechani-cal system in the building and moving a smoke tracer sourceover the interior or the ext
22、erior surface of the buildingenvelope. If the building is pressurized and the smoke tracersource is moved over the interior of the building envelope, airexfiltration through air leakage sites will draw smoke from thetracer source to the site, revealing its location visually. Alter-natively, if the b
23、uilding is depressurized and the smoke tracersource is moved over the interior of the building envelopesurface, then air jets at each air leakage site will cause thesmoke to move rapidly inward. Similarly, the smoke tracersource can be employed on the exterior of the buildingenvelope.4.2.3 Building
24、Depressurization (or Pressurization) in Con-junction With Airflow Measurement Devices, orAnemometersThis practice consists of depressurizing orpressurizing the building using a fan or the buildings mechani-cal systems and moving an anemometer over the interiorbuilding envelope surface. If the buildi
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