ASTM E1465-2007a Standard Practice for Radon Control Options for the Design and Construction of New Low-Rise Residential Buildings《新型低层住宅建筑物设计与建造用氡控制选项的标准实施规程》.pdf
《ASTM E1465-2007a Standard Practice for Radon Control Options for the Design and Construction of New Low-Rise Residential Buildings《新型低层住宅建筑物设计与建造用氡控制选项的标准实施规程》.pdf》由会员分享,可在线阅读,更多相关《ASTM E1465-2007a Standard Practice for Radon Control Options for the Design and Construction of New Low-Rise Residential Buildings《新型低层住宅建筑物设计与建造用氡控制选项的标准实施规程》.pdf(38页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: E 1465 07aStandard Practice forRadon Control Options for the Design and Construction ofNew Low-Rise Residential Buildings1This standard is issued under the fixed designation E 1465; the number immediately following the designation indicates the year oforiginal adoption or, in the case o
2、f revision, the year 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 This practice covers the design and construction of tworadon control options for use in new l
3、ow-rise residentialbuildings. These unobtrusive (built-in) soil depressurizationoptions are installed with a pipe route appropriate for theirintended initial mode of operation, that is, fan-powered orpassive. One of these pipe routes should be installed during aresidential buildings initial construc
4、tion. Specifications for thecritical gas-permeable layer, the radon systems piping, andradon entry pathway reduction are comprehensive and com-mon to both pipe routes.1.1.1 The first option has a pipe route appropriate for afan-powered radon reduction system. The radon fan should beinstalled after (
5、1) an initial radon test result reveals unaccept-able radon concentrations and therefore a need for an operatingradon fan or (2) the owner has specified an operating radon fan,as well as acceptable radon test results before occupancy. Fanoperated soil depressurization radon systems reduce indoorrado
6、n concentrations up to 99 %.1.1.2 The second option has a more efficient pipe routeappropriate for passively operated radon reduction systems.Passively operated radon reduction systems provide radonreductions of up to 50 %. When the radon test results for abuilding with an operating passive system a
7、re not acceptable,that system should be converted to fan-powered operation.Radon systems with pipe routes installed for passive operationcan be converted easily to fan-powered operation; such fanoperated systems reduce indoor radon concentrations up to99 %.1.2 The options provide different benefits:
8、1.2.1 The option using the pipe route for fan-poweredoperation is intended for builders with customers who wantmaximum unobtrusive built-in radon reduction and docu-mented evidence of an effective radon reduction system beforea residential building is occupied. Radon systems with fan-powered type pi
9、pe routes allow the greatest architecturalfreedom for vent stack routing and fan location.1.2.2 The option using the pipe route for passive operationis intended for builders and their customers who want unob-trusive built-in radon reduction with the lowest possibleoperating cost, and documented evid
10、ence of acceptable radonsystem performance before occupancy. If a passive systemsradon reduction is unacceptable, its performance can be sig-nificantly increased by converting it to fan-powered operation.1.3 Fan-powered, soil depressurization, radon-reductiontechniques, such as those specified in th
11、is practice, have beenused successfully for slab-on-grade, basement, and crawlspacefoundations throughout the world.1.4 Radon in air testing is used to assure the effectiveness ofthese soil depressurization radon systems. The U.S. nationalgoal for indoor radon concentration, established by the U.S.C
12、ongress in the 1988 Indoor Radon Abatement Act, is toreduce indoor radon as close to the levels of outside air as ispracticable. The radon concentration in outside air is assumedto be 0.4 picocuries per litre (pCi/l) (15 Becquerels per cubicmetre (Bq/m3); the U.S.s average radon concentration inindo
13、or air is 1.3 pCi/L (50 Bq/m3). The goal of this practice isto make available new residential buildings with indoor radonconcentrations below 2.0 pCi/L (75 Bq/m3) in occupiablespaces.1.5 This practice is intended to assist owners, designers,builders, building officials and others who design, manage,
14、 andinspect radon systems and their construction for new low-riseresidential buildings.1.6 This practice can be used as a model set of practices,which can be adopted or modified by state and local jurisdic-tions, to fulfill objectives of their residential building codes andregulations. This practice
15、 also can be used as a reference for thefederal, state, and local health officials and radiation protectionagencies.1.7 The new dwelling units covered by this practice havenever been occupied. Radon reduction for existing low riseresidential buildings is covered by Practice E 2121, or by stateand lo
16、cal building codes and radiation protection regulations.1.8 Fan-powered soil depressurization, the principal strat-egy described in this practice, offers the most effective andmost reliable radon reduction of all currently available strate-gies. Historically, far more fan-powered soil depressurizati
17、onradon reduction systems have been successfully installed andoperated than all other radon reduction methods combined.1This practice is under the jurisdiction of ASTM Committee E06 on Perfor-mance of Buildings and is the direct responsibility of Subcommittee E06.41 on AirLeakage and Ventilation Per
18、formance.Current edition approved July 15, 2007. Published August 2007. Originallypublished as E 1465 92. Discontinued in 1998 and reinstated as E 1465 06. Lastprevious edition E 1465 07.1Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United State
19、s.These methods are not the only methods for reducing indoorradon concentrations (1, 2, and 3)21.9 Section 7 is Occupational Radon Exposure and WorkerSafety.1.10 Appendix X1 is Principles of Operation for Fan-Powered Soil Depressurization Radon Reduction.1.11 Appendix X2 is a Summary of Practice E 1
20、465 Re-quirements for Installation of Radon Reduction Systems in NewLow Rise Residential Building.1.12 The values stated in inch-pound units are to be re-garded as standard. The values given in parentheses aremathematical conversions to SI units that are provided forinformation only and are not cons
21、idered standard.1.13 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 practices and determine the applica-bility of regulatory limitations prior to us
22、e.2. Referenced Documents2.1 ASTM Standards:3C 29/C 29M Test Method for Bulk Density (“Unit Weight”)and Voids in AggregateC33 Specification for Concrete AggregatesC 127 Test Method for Density, Relative Density (SpecificGravity), and Absorption of Coarse AggregateD 1785 Specification for Poly(Vinyl
23、Chloride) (PVC) Plas-tic Pipe, Schedules 40, 80, and 120D 2241 Specification for Poly(Vinyl Chloride) (PVC)Pressure-Rated Pipe (SDR Series)D 2282 Specification for Acrylonitrile-Butadiene-Styrene(ABS) Plastic Pipe4D 2466 Specification for Poly(Vinyl Chloride) (PVC) Plas-tic Pipe Fittings, Schedule 4
24、0D 2661 Specification for Acrylonitrile-Butadiene-Styrene(ABS) Schedule 40 Plastic Drain, Waste, and Vent Pipeand FittingsD 2665 Specification for Poly(Vinyl Chloride) (PVC) Plas-tic Drain, Waste, and Vent Pipe and FittingsD 2729 Specification for Poly(Vinyl Chloride) (PVC)Sewer Pipe and FittingsD 2
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