ASTM E2813-2012 Standard Practice for Building Enclosure Commissioning《建造围场试运行的标准操作规程》.pdf
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1、Designation: E2813 12Standard Practice forBuilding Enclosure Commissioning1This standard is issued under the fixed designation E2813; the number immediately following the designation indicates the year oforiginal adoption or, in the case of revision, the year of last revision. A number in parenthese
2、s indicates the year of last reapproval. Asuperscript epsilon () indicates an editorial change since the last revision or reapproval.INTRODUCTIONBuilding Enclosure Commissioning (BECx) is a process that begins with the establishment of theOwners Project Requirements (OPR) and endeavors to ensure tha
3、t the exterior enclosure and thoseelements intended to provide environmental separation within a building or structure meet or exceedthe expectations of the Owner as defined in the OPR.Afundamental understanding of the most currentpublished edition ofASHRAE Guideline 0 and NIBS Guideline 3 is recomm
4、ended for optimal use andapplication of this practice.1. Scope1.1 This practice is intended to serve as a concise, authori-tative, and technically sound practice for Building EnclosureCommissioning (BECx) that establishes two levels of BECx:Fundamental and Enhanced (refer also to Section 4).1.2 The
5、BECx process as defined in this practice includesthe following phases and sub-phases:1.2.1 Pre-design,1.2.2 Design,1.2.2.1 Schematic Design,1.2.2.2 Design Development,1.2.2.3 Construction Documentation,1.2.3 Pre-Construction,21.2.4 Construction, and1.2.5 Occupancy and Operations.1.3 This practice in
6、cludes a mandatory OPR DevelopmentGuideline (AnnexA1) and requires the development of an OPRfor both Fundamental and Enhanced BECx that addresses, at aminimum, the performance attributes and metrics included inAnnex A1 of this practice.1.4 This practice includes mandatory BECx PerformanceTesting Req
7、uirements (Annex A2) approved for use with thispractice to evaluate the performance and durability of enclo-sure materials, components, systems, and assemblies.1.5 This practice mandates independent, third-party designpeer review during the Design Phase of both Fundamental andEnhanced BECx.1.6 This
8、practice recognizes that the OPR for exteriorenclosure performance and environmental separation mayexceed the baseline requirements of applicable building codesand standards and provides guidance for the development of anOPR based on the following attributes as defined in Annex A1of this practice:1.
9、6.1 Energy,1.6.2 Environment,1.6.3 Safety,1.6.4 Security,1.6.5 Durability,1.6.6 Sustainability, and1.6.7 Operation.1.7 The terms “building enclosure” and “enclosure” as theyappear in this practice refer collectively to all materials,components, systems, and assemblies intended to provideshelter and
10、environmental separation between interior andexterior, or between two or more environmentally distinctinterior spaces in a building or structure.1.8 This practice establishes that the Building EnclosureCommissioning “Agent” or “Authority” (BECxA) refers spe-cifically to the individual or firm retain
11、ed by the Owner todevelop, manage, and be in responsible charge of the BECxprocess, including individual members and technical special-ists that may comprise the BECx team (see 4.2).1.9 The role and responsibilities of the BECxA as definedby this practice are not intended to supersede or otherwisere
12、place the contractual obligations reserved specifically for theparties responsible for the design and construction of a buildingor structure, nor the duties that may otherwise be assigned tothose parties by applicable regulatory or statutory law.1This practice is under the jurisdiction of ASTM Commi
13、ttee E06 on Perfor-mance of Buildings and is the direct responsibility of Subcommittee E06.55 onExterior Building Wall Systems.Current edition approved Feb. 1, 2012. Published March 2012. DOI: 10.1520/E2813-12.2See 5.1.3, Pre-Construction Phase, which includes BECx activities that occurprior to cont
14、ract award and the start of construction, and is included in ASHRAEGuideline 0 and NIBS Guideline 3 as a sub-phase under the “Construction Phase”of the BECx process.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.1.10 This practice i
15、s not intended to warrant or otherwiseguarantee the as-built or in-service durability, or both, andperformance of enclosure materials, components, systems, andassemblies.1.11 The values stated in SI units are to be regarded asstandard. The values given in parentheses are mathematicalconversions to i
16、nch-pound units that are provided for informa-tion only and are not considered standard.1.12 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 safety and health practice
17、s and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:3C423 Test Method for Sound Absorption and Sound Ab-sorption Coefficients by the Reverberation Room MethodC510 Test Method for Staining and Color Change of Single-or Multicomponent Joi
18、nt SealantsC522 Test Method for Airflow Resistance of AcousticalMaterialsC724 Test Method for Acid Resistance of Ceramic Decora-tions on Architectural-Type GlassC732 Test Method for Aging Effects of Artificial Weather-ing on Latex SealantsC794 Test Method for Adhesion-in-Peel of ElastomericJoint Sea
19、lantsC1060 Practice for Thermographic Inspection of InsulationInstallations in Envelope Cavities of Frame BuildingsC1087 Test Method for Determining Compatibility ofLiquid-Applied Sealants with Accessories Used in Struc-tural Glazing SystemsC1153 Practice for Location of Wet Insulation in RoofingSys
20、tems Using Infrared ImagingC1193 Guide for Use of Joint SealantsC1246 Test Method for Effects of Heat Aging on WeightLoss, Cracking, and Chalking of Elastomeric SealantsAfter CureC1258 Test Method for Elevated Temperature and Humid-ity Resistance of Vapor Retarders for InsulationC1279 Test Method fo
21、r Non-Destructive Photoelastic Mea-surement of Edge and Surface Stresses in Annealed,Heat-Strengthened, and Fully Tempered Flat GlassC1294 Test Method for Compatibility of Insulating GlassEdge Sealants with Liquid-Applied Glazing MaterialsC1371 Test Method for Determination of Emittance ofMaterials
22、Near Room Temperature Using Portable Emis-sometersC1522 Test Method for Extensibility After Heat Aging ofCold Liquid-Applied Elastomeric Waterproofing Mem-branesC1549 Test Method for Determination of Solar ReflectanceNear Ambient Temperature Using a Portable Solar Reflec-tometerC1601 Test Method for
23、 Field Determination of Water Pen-etration of Masonry Wall SurfacesC1651 Test Method for Measurement of Roll Wave OpticalDistortion in Heat-Treated Flat GlassC1652 Test Method for Measuring Optical Distortion inFlat Glass Products Using Digital Photography of GridsD2203 Test Method for Staining from
24、 SealantsD4541 Test Method for Pull-Off Strength of Coatings UsingPortable Adhesion TestersD5957 Guide for Flood Testing Horizontal WaterproofingInstallationsE90 Test Method for Laboratory Measurement of AirborneSound Transmission Loss of Building Partitions and Ele-mentsE283 Test Method for Determi
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