ACI 357R-1984 Guide for the Design and Construction of Fixed Offshore Concrete Structures《固定式海上混凝土建筑的设计和施工指南》.pdf
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1、ACI 357R-84(Reapproved 1997)Guide for the Design and Construction ofFixed Offshore Concrete StructuresReported by ACI Committee 357Harvey H. Haynes, chairmanA. Leon AbolitzArthur R. AndersonJal N. BirdyIrvin BoazAnthony D. BoydWilliam J. CichanskiAssociate MembersNicholas CarinoJohn ClarkeA.E. Fiora
2、to, secretaryGeorge F DavenportJoseph A. DobrowolskiJ.M. DuncanSvein FjeldBen C. Gerwick, Jr.Odd E. GjervEivind HognestadThe report provides a guide for the design and construc-tion of fixed reinforced andlor prestressed concrete struc-tures for service in a marine environment. Only fixed struc-ture
3、s which are founded on the seabed and obtain theirstability from the vertical forces of gravity are covered.Contents include: materials and durability; dead, defor-mation, live, environmental, and accidental loads; designand analysis; foundations; construction and installation;and inspection and rep
4、air. Two appendixes discuss environ-mental loads such as wave, wind, and ice loads in detail, andthe design of offshore concrete structures for earthquakeresistance.Keywords: anchorage (structural); concrete construction; constructionmaterials; cracking (fracturing); dynamic loads; earthquakes; eart
5、hquake re-sistant structures; foundations; grouting; harbor structures; inspection;loads (forces); ocean bottom; offshore structures; post-tensioning; pre-stressed concrete; prestressing steels; reinforced concrete; repairs; staticloads; structural analysis; structural design; underwater constructio
6、n.CONTENTSPreface, page 357R-2Notation, page 357R-2Chapter 1-General, page 357R-21.1 -scope 1.3-Auxiliary systems and1.2-Instrumentation interfacesACI Committee Reports, Guides, Standard Practices, and Commen-taries are intended for guidance in designing, planning, executing, orinspecting constructi
7、on and in preparing specifications. Reference tothese documents shall not be made in the Project Documents. If itemsfound in these documents are desired to be part of the Project Docu-ments, they should be phrased in mandatory language and incorpo-rated into the Project Documents.William A. lngraham
8、 Charles E. SmithRichard W. Litton Raymond J. SmithAlan H. Mattock Stanley G. StiansenKarl H. Runge Alfred A. YeeB.P. Malcolm Sharples Shu-Yin YuMasatane KokubuW. Frank ManningT.H. MonnierChapter 2-Materials and durability, page 357R-32.l-General 2.13-Concrete cover of2.2-Testing reinforcement2.3-Qu
9、ality control 2.14-Details of reinforcement2.4-Durability 2.15-Physical and chemical2.5-Cement damage2.6-Mixing water 2.16-Protection of prestressed2.7-Aggregates anchorages2. g-concrete 2.17-Anchorages for embedments2.9-Admixtures and connections to steel work2.10-Reinforcing and 2.18-Electrical gr
10、oundprestressing steel 2.19-Durability of pipes containing2.11-Post-tensioning ducts pressure2.12-Grout 2.20-Epoxy resinsChapter 3-Loads, page 357R-63.1-Classifications 3.2-Design phasesChapter 4-Design and analysis, page 357R-64.l-General 4.5-Special requirements4.2-Strength 4.6-Other strength requ
11、irements4.3-Serviceability 4.7-Structural analysis4.4-Design conditionsChapter 5-Foundations, page 357R-105.1 -Site investigation 5.3-Scour5.2-Stability of the sea floor 5.4-Design of mat foundationsChapter 6-Construction, installation, andrelocation, page 357R-12Supersedes ACI 357-78 (Reaffirmed 19
12、82).Copyright 0 1984, American Concrete Institute. All rights reserved including rightsof reproduction and use in any form or by any means, including the making of copiesby any photo process, or by any electronic or mechanical device, printed or written ororal, or recording for sound or visual repro
13、duction or for use in any knowledge or re-trieval system or device, unless permission in writing is obtained from the copyrightproprietors.357R-1357R-2ACI COMMITTEE REPORT6.1- General6.2- Buoyancy and floatingstability6.3- Construction joints6.4- Concreting in hot orcold weather6.5- Curing of concre
14、te6.6- Reinforcement6.7- Prestressing tendons,ducts, and grouting6.9- Construction while afloat ortemporarily grounded6.10- Towing6.11- Installation6.12- Construction on site6.13- Connection of adjoiningstructures6.14- Prevention of damagedue to freezing6.15- Relocation6.8- Initial flotationChapter
15、7- lnspectlon and repair, page 357R-167.1- General 7.3- Repair of concrete7.2- Surveys 7.4- Repairs to cracksChapter References, page 357R-178.1- Standards-type referencesAppendix A-Environmental loads,page 357R-18A.1- IntroductionA.2- Wave loadsA.3- Wave diffractionA.4- CurrentsA.5- Design wave ana
16、lysisA.6- Wave responsespectrum analysisA.7- Dynamic response analysisA.8- Wind loadsA.9- Ice loadsA.10- EarthquakesA.11- ReferencesAppendix B-Design for earthquakes,page 357R-19B.1- Introduction B.6- Dynamic analysisB.2- Overall design B.7- Stress analysisprocedure B.8- Failure modesB.3- Seismicity
17、 study B.9- Ductility requirementsB.4- Site response study B.10- Aseismic design detailsB.5- Selection of design B.11- Other factorscriteriaPREFACEConcrete structures have been used in the North Sea andother offshore areas of the world. With the rapid expansion ofknowledge of the behavior of concret
18、e structures in the sea,and discoveries of hydrocarbons off North American shores,there will likely be an increased use of such structures. Thisreport was developed to provide a guide for the design andconstruction of fixed offshore concrete structures. Referenceto the following documents is acknowl
19、edged:API Recommended Practice for Planning, Designing, andConstructing Fixed Offshore Platforms, API RP2A, Ameri-can Petroleum Institute.Recommendations for the Design and Construction ofConcrete Sea Structures, Federation International de laPrecontrainte. Rules for the Design, Construction, and In
20、spection of Off-shore Structures, Det Norske Veritas.Where adequate data were available, specific recommen-dations were made, while in less developed areas particularpoints were indicated for consideration by the designer. Thedesign of offshore structures requires much creativity of thedesigner, and
21、 it is intended that this guide permit and encour-age creativity and usage of continuing research advance-ments in the development of structures that are safe, service-able and economical.NOTATIONA = accidental loadcm= hydrodynamic coefficientD = dead load, diameter of structural memberE = environme
22、ntal loadEC= concrete modulus of elasticityEi= initial modulus of elasticityEo= frequently occurring environmental loadEImu= extreme environmental load4= reinforcing steel modulus of elasticityL = live loadLX= maximum live loadL, = minimum live loadT = deformation loadW/C = water-cement ratiob = sec
23、tion width4= diameter of reinforcing bar:= effective tension zone= stress in concreteP= allowable design stress in concreteL= stress in reinforcing bar= allowable design stress in reinforcing barf= mean tensile strength of concretek= yield stress of reinforcing bars= 28-day strength of concrete (ACI
24、 318)h = section thicknessX = depth of compression zoneYC= material factor for cohesive soilsYf= material factor for friction type soilsYL= load multiplierY,= material factorY IlKY = material factor for concreteYms= material factor for reinforcing barsA*$= increase in tensile stress in prestressing
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