ASTM B790 B790M-2011 Standard Practice for Structural Design of Corrugated Aluminum Pipe Pipe-Arches and Arches for Culverts Storm Sewers and Other Buried Conduits《波纹铝管 管拱和涵洞 雨水管和其.pdf
《ASTM B790 B790M-2011 Standard Practice for Structural Design of Corrugated Aluminum Pipe Pipe-Arches and Arches for Culverts Storm Sewers and Other Buried Conduits《波纹铝管 管拱和涵洞 雨水管和其.pdf》由会员分享,可在线阅读,更多相关《ASTM B790 B790M-2011 Standard Practice for Structural Design of Corrugated Aluminum Pipe Pipe-Arches and Arches for Culverts Storm Sewers and Other Buried Conduits《波纹铝管 管拱和涵洞 雨水管和其.pdf(9页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: B790/B790M 11Standard Practice forStructural Design of Corrugated Aluminum Pipe, Pipe-Arches, and Arches for Culverts, Storm Sewers, and OtherBuried Conduits1This standard is issued under the fixed designation B790/B790M; the number immediately following the designation indicates the ye
2、arof original adoption or, in the case of revision, the year of last revision. A number in parentheses indicates the year of last reapproval.A superscript epsilon () indicates an editorial change since the last revision or reapproval.1. Scope*1.1 This practice is intended for the structural design o
3、fcorrugated aluminum pipe and pipe-arches, and aluminumstructural plate pipe, pipe-arches, and arches for use as culvertsand storm sewers and other buried conduits. This practice is forpipe installed in a trench or embankment and subjected tohighway, railroad, and aircraft loadings. It must be recog
4、nizedthat a buried corrugated aluminum pipe is a composite struc-ture made up of the aluminum ring and the soil envelope, andboth elements play a vital part in the structural design of thistype of structure.1.2 Corrugated aluminum pipe and pipe-arches shall be ofannular fabrication using riveted sea
5、ms, or of helical fabrica-tion having a continuous lockseam.1.3 Structural plate pipe, pipe-arches, and arches are fabri-cated in separate plates that when assembled at the job site bybolting form the required shape.1.4 This specification is applicable to design in inch-poundunits as Specification B
6、790 or in SI units as SpecificationB790M. Inch-pound units and SI units are not necessarilyequivalent. SI units are shown in brackets in the text for clarity,but they are the applicable values when the design is done inaccordance with Specification B790M.1.5 This standard does not purport to address
7、 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 use.2. Referenced Documents2.1 ASTM Standards:2B745/B745M Specif
8、ication for Corrugated Aluminum Pipefor Sewers and DrainsB746/B746M Specification for Corrugated Aluminum Al-loy Structural Plate for Field-Bolted Pipe, Pipe-Arches,and ArchesB788/B788M Practice for Installing Factory-Made Corru-gated Aluminum Culverts and Storm Sewer PipeB789/B789M Practice for Ins
9、talling Corrugated AluminumStructural Plate Pipe for Culverts and SewersD698 Test Methods for Laboratory Compaction Character-istics of Soil Using Standard Effort (12 400 ft-lbf/ft3(600kN-m/m3)D1556 Test Method for Density and Unit Weight of Soil inPlace by Sand-Cone MethodD2167 Test Method for Dens
10、ity and Unit Weight of Soil inPlace by the Rubber Balloon MethodD2487 Practice for Classification of Soils for EngineeringPurposes (Unified Soil Classification System)D2937 Test Method for Density of Soil in Place by theDrive-Cylinder MethodD6938 Test Method for In-Place Density and Water Contentof
11、Soil and Soil-Aggregate by Nuclear Methods (ShallowDepth)2.2 FAA Standards:3AC No. 150/5320-5B, Advisory Circular, “Airport Drain-age,” Department of Transportation, Federal AviationAdministration, Publication No. SN-050-007-00149-5,19702.3 AASHTO Standards:4LRFD Bridge Design SpecificationsLRFD Bri
12、dge Construction Specifications3. Terminology3.1 Definitions of Terms Specific to This Standard:3.1.1 arch, na pipe shape that is supported on footingsand does not have a full metal invert.1This practice is under the jurisdiction of ASTM Committee B07 on LightMetals and Alloys and is the direct resp
13、onsibility of Subcommittee B07.08 onCorrugated Aluminum Pipe and Corrugated Aluminum Structural Plate.Current edition approved Nov. 1, 2011. Published December 2011. Originallyapproved in 1990. Last previous edition approved in 2006 as B79000 (2006). DOI:10.1520/B0790_B0790M-11.2For referenced ASTM
14、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.3Available from Standardization Documents Order Desk, DODSSP, Bldg. 4,Section D, 7
15、00 Robbins Ave., Philadelphia, PA 19111-5098.4Available from American Association of State Highway and TransportationOfficials (AASHTO), 444 N. Capitol St., NW, Suite 249, Washington, DC 20001.1*A Summary of Changes section appears at the end of this standard.Copyright ASTM International, 100 Barr H
16、arbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.3.1.2 bedding, nthe earth or other material on which thepipe is laid consist of a thin layer of important material on topof the in-situ foundation.3.1.3 haunch, nthe portion of the pipe cross sectionbetween the maximum horizon
17、tal dimension and the top of thebedding.3.1.4 invert, nthe lowest portion of the pipe cross section;also, the bottom portion of the pipe.3.1.5 pipe, na conduit having a full circular shape or, in ageneral contex, all structure shapes covered by this practice.3.1.6 pipe-arch, na pipe shape consisting
18、 of an approxi-mate semicircular top portion, small radius corners, and largeradius invert.4. Symbols4.1 The symbols used in this practice have the followingsignificance:A = required wall area, in.2/ft mm2/mm,AL = maximum highway design axle load, lbf N,d = depth of corrugation, in. mm,E = modulus o
19、f elasticity, 10 3 106lbf/in.269 3 103MPa,EL = earth load, lbf/ft2kPa,fc = critical buckling stress, lbf/in.2MPa,FF = flexibility factor, in./lbf mm/N,fu = specified minimum tensile strength,= 31 000 lbf/in.2215 MPa for corrugated alu-minum pipe per B745/B745M using Alclad Alloy3004H34,= 27 000 lbf/
20、in.2185 MPa for corrugated alu-minum pipe per B745/B745M using Alclad Alloy3004H32,= 35 000 lbf/in.2245 MPa for 0.100 through0.150 inch 2.52 through 3.81 mm thick alumi-num structural plate per B746/B746M,= 34 000 lbf/in.2235 MPa for 0.175 through0.250 inch 4.44 through 6.35 mm thick alumi-num struc
21、tural plate per B746/B746M,fy = specified minimum yield strength,= 20 000 lbf/in.2140 MPa for corrugated alu-minum pipe per B745/B745M using Alclad Alloy3004H32,= 24 000 lbf/in.2165 MPa for all other corru-gated aluminum pipe and structural plate perB745/B745M and B746/B746M,H = depth of fill above
22、top of pipe, ft m,Hmax= maximum depth of fill, ft m,Hmin= minimum depth of fill, ft m,I = moment of inertia of corrugation, in.4/in. mm4/mm, see Tables 1-7),IL = impact load, lbf/ft2kPa,k = soil stiffness factor0.22 for good sidefill mate-rial compacted to 90 % of standard density basedon Test Metho
23、d D698,LL = live load, lbf/ft2kPa,P = total design load or pressure, lbf/ft2kPa,Pf= Factored crown pressure, lbf/ft2kPa,r = radius of gyration of corrugation, in. mm, seeTables 1-7,rc= corner radius of pipe-arch, ft mm,Rf= Factored resistance for each limit state, lbf/ftkN/m,Rn= Nominal resistance f
24、or each limit state, lbf/ftkN/m,s = pipe diameter or span, in. mm,S = pipe diameter or span, ft m,SF = safety factor,SS = required seam strength, lbf/ft kN/m,T = thrust in pipe wall, lbf/ft kN/m, andTf= Factored thrust in pipe wall, lbf/ft kN/m,W = the unit force derived from 1 ft3m3offilmaterial ab
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