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Handbook of CONCRETE ENGINEERING
Handbook of CONCRETE ENGINEERING
Detailed Information
- 자료유형
- 단행본
- UDC
- 666.94(02)
- DDC
- 600-23
- 청구기호
- 600 F516h
- 저자명
- Fintel, Mark
- 서명/저자
- Handbook of CONCRETE ENGINEERING / Mark Fintel 편.
- 판사항
- 2판
- 발행사항
- 미국 : VAN NOSTRAND REINHOLD COMPANY, 1983
- 형태사항
- 892p. : 삽도 ; 27cm
- 내용주기
- 완전내용1. PROPORTONING OF SECTIONS-STRENGTH DESIGN METHOD, Murat Saatcioglu완전내용1.1Introduction부분내용1완전내용1.2 SI Units in Structural Design부분내용1완전내용1.3 Behavior of Reinforced Concrete부분내용2완전내용1.4 Desing Procedure부분내용10완전내용1.5 Flexural Desing부분내용12완전내용1.6 Design for Fledure and Axial Load부분내용21완전내용1.7 Proportioning Sections for Shear and Torsion부분내용41완전내용1.8 Reinforcement Properites and Design부분내용47완전내용2. DEFLECTIONS, Dan E. Brason00완전내용2.1 Introduction부분내용5311완전내용2.2 Material Properties부분내용5322완전내용2.3 Control of Deflections부분내용5733완전내용2.4 Deflection of Nonprestressed One-Way Members부분내용5944완전내용2.5 Deflection of Nonprestressed Composite Members부분내용6855완전내용2.6 Deflection of Nonprestressed Two-Way Slab Systems부분내용7266완전내용3. ONE-AND TWO-WAY SLABS, Sidney H. Simmonds77완전내용3.1 Introduction부분내용8188완전내용3.2 Slab Terminology부분내용8299완전내용3.3 Historical Development of Slab Design부분내용8300완전내용3.4 Selecting the Slab Thickness부분내용8411완전내용3.5 One-Way Slabs부분내용8522완전내용3.6 Direct Design Method부분내용8733완전내용3.7 Equivalent Frame Method부분내용8944완전내용3.8 Shear and Shear-Moment Requirements부분내용9255완전내용3.9 slab Reinforcenemt부분내용9566완전내용3.10 Two-Way Slab design Examples부분내용9677완전내용3.11 Special Slab Problems부분내용11088완전내용3.12 Plastic Desing Procedures부분내용11499완전내용4. JOINTS IN BUILDINGS, Mark Fintel00완전내용4.1 Introduction부분내용12111완전내용4.2 Movements in Structures부분내용12122완전내용4.3 Tensile Stresses Leading to Cracking and Their Prigin부분내용12233완전내용4.4 Reinforcing Steel부분내용12344완전내용4.5 Types of Joints부분내용12355완전내용4.6 Joint Spacing부분내용12366완전내용4.7 Nonstructural Elements부분내용12477완전내용4.8 Joints in Cladding부분내용12488완전내용4.9 Construction Joints부분내용12599완전내용4.10 Expansion Joints부분내용12800완전내용4.11 Control Joints부분내용13111완전내용4.12 Shrinkage Strips부분내용13322완전내용4.13 Special Purpose Joints부분내용13433완전내용4.14 Joints for Slabs on Grade in Bulidings부분내용13544완전내용4.15 Massive Structural Concrete without Joints부분내용13755완전내용5. FOOTINGS, Fritz Kramrisch66완전내용5.1 General부분내용13977완전내용5.2 Evaluation of Bearing Pressures at Footing Bases부분내용14088완전내용5.3 Basic Design Procedure-Reinforced Concrete Footings With Equally Distributed Beating Pressures부분내용14799완전내용5.4 Special Conditions부분내용15400완전내용5.5 Reinforced Concrete Footings with Concentrated Reactions(Pile Caps)부분내용15811완전내용5.6 Retaining Walls부분내용16222완전내용6. PROPERTIES OF MATERIALS FOR REINFORCED CONCRERE, Sidney Freedman33완전내용6.1 Introduction부분내용16944완전내용6.2 Compressive Strength부분내용16955완전내용6.3 Tensile Strength부분내용17566완전내용6.4 Modulus of Elasticity부분내용18077완전내용6.5 Poisson's Ratio부분내용18488완전내용6.6 Shear and Torsion부분내용18499완전내용6.7 Volume Changes부분내용18600완전내용6.8 Bond of Concrete to Steel부분내용20011완전내용6.9 fatigue of Concrete부분내용20122완전내용6.10 Permeability부분내용20333완전내용6.11 Durability부분내용20944완전내용6.12 Acoustical Properties부분내용21955완전내용6.13 Electrical Properties부분내용22166완전내용6.14 Reinforcement부분내용22577완전내용Appendix부분내용24388완전내용7. FIRE RESISTANCE, Armand h. Gustaferro99완전내용7.1 Introduction부분내용25200완전내용7.2 Properites of Steel and Concrete at High Temperatures부분내용25311완전내용7.3 Temperatures within Concrete Menbers during Fires부분내용25422완전내용7.4 Fire Endurance Determined by 250˚ Rise of Unexposed Surface부분내용25733완전내용7.5 Fire Endurance of Simply supported (Unrestrained) Slabs and Beams부분내용26144완전내용7.6 Fire Endurance of Continuous Beams and Slabs부분내용26355완전내용7.7 Fire Endurance of Foolrs and Foofs in Which Restraint to Termal ExpansionOccurs부분내용26566완전내용7.8 Fire Endurance of Concrete Columns부분내용26677완전내용8. PRESTRESSED CONCRETE, Antoine E. Naaman88완전내용8.1 Principle and Methods of Prestressing부분내용26899완전내용8.2 Prestressing Materials부분내용27100완전내용8.3 Design Criteria부분내용27211완전내용8.4 Prestress Losses부분내용27322완전내용8.5 Flexure: Working stress Analysis and Design부분내용27533완전내용8.6 Flexure: Strength Analysis and Design부분내용28344완전내용8.7 Design for Shear부분내용28755완전내용8.8 Deflection Computation and Control부분내용29366완전내용8.9 Analysis and Design of Composite Beams부분내용29777완전내용8.10 Continuous Beams부분내용30388완전내용8.11 Prestressed Concrete Slabs부분내용31099완전내용8.12 Prestressed Concrete Tension Members부분내용31200완전내용8.13 Prestressed Concrete Compression Members부분내용31311완전내용8.14 Prestressed Concrete Bridges부분내용31622완전내용9. POST-TENSIONED SLAB SYSTEMS, CILFFORD L. Freyermuth33완전내용9.1 Introduction부분내용32144완전내용9.2 Perliminary Sizing of Members부분내용32255완전내용9.3 Load-Balancing Method of Analysis부분내용32266완전내용9.4 Strength Analysis부분내용32277완전내용9.5 Flexure and Shear in One-Way Slabs부분내용32288완전내용9.6 Flexure and Shear in Flat Plates부분내용32399완전내용9.7 Fire Resistance부분내용3270000완전내용9.8 Corrsion Protection부분내용3270101완전내용9.9 construction Joints and Closure Strips부분내용3280202완전내용9.10 Restraint Forces from Supporting Walls and Columns부분내용3280303완전내용9.11 Approximate Quantities for Post-Tensioned One-Way and Two-Way Slabs부분내용3280404완전내용9.12 Flat Plate Apartment Design Example부분내용3300505완전내용10. MULTISTORY STRUCTURES, Mark Fintel0606완전내용10.1 Defintion부분내용3390707완전내용10.2 Dhistory of Devleopment of High-Rise Buildings부분내용3390808완전내용10.3 Contributing Factors to Concrete High-Rise Buildings부분내용3410909완전내용10.4 Types of Pccupancy부분내용3491010완전내용10.5 Resistance to Wind Loads부분내용3521111완전내용10.6 Design for Vertical Loads부분내용3701212완전내용10.7 Staggered Wall-Beam Structures부분내용3751313완전내용10.8 Pipe Columns-Flat Plate Structures부분내용3821414완전내용10.9 Effects of Vertical Movements Due to Temperature, Creep, and Shrinkage부분내용3831515완전내용11. TUBULAR STRUCTURES FOR TALL BUILDINGS, Fazlur R. Khan1616완전내용11.1 Introduction부분내용3991717완전내용11.2 Behavior of the Framed Tube System부분내용4011818완전내용11.3 Intital Preliminary Design Approach부분내용4011919완전내용11.4 Preliminary Design Usng Ingluence Curves부분내용4022020완전내용11.5 Use of Nondimensional Curives for Preiminary Design부분내용4022121완전내용11.6 Reduction Modeling Approach부분내용4032222완전내용11.7 Total Bxhavior of a Framed Tube부분내용4062323완전내용11.8 Tube-in-Tube Structural System부분내용4082424완전내용Appendix부분내용4092525완전내용12. EARTHQUAKE-RESISTANT ATRUCTURES, Arnaldo T. Derecho, Mark Fintel and S. d.Ghosh2626완전내용12.1 Introduction부분내용4112727완전내용12.2 Earthquakes부분내용4122828완전내용12.3 Response of Structures to Earhquake Montions부분내용4202929완전내용12.4 Some Results of Analytical Studies on the nonlinear Behavior of Multistory Structures Subjected to Earthquake Excitation부분내용4293030완전내용12.5 Some Results of Expermental Investigations on the Seismic Behavioor of Reinfored Concrete Menbers and Connections부분내용4513131완전내용12.6 Current Practice in Design for earthquake Motins부분내용4643232완전내용12.7 Design Example-Sample Designs for Elements of a 12-Story Frame-Shear WallBuilding부분내용4893333완전내용12.8 Alternatives to Aseismic Design By Building Codes부분내용5053434완전내용13. LARGE PANEL STRUCTURES, Iain a MacLeod3535완전내용13.1 Introduction부분내용5143636완전내용13.2 Loading부분내용5163737완전내용13.3 Analysis부분내용5173838완전내용13.4 Structural and Functional Design-General부분내용5213939완전내용13.5 Design of Wall Panels부분내용5214040완전내용13.6 Design of Floor Slavs부분내용5224141완전내용13.7 design of Horizontal Connections부분내용5234242완전내용13.8 Design of Vertical Connections부분내용5254343완전내용13.9 Tie Steel부분내용5274444완전내용13.10 Desing of Transfer Beams부분내용5314545완전내용13.11 Serviceability부분내용5324646완전내용13.12 Construction Problems부분내용5324747완전내용13.13 Further Reading부분내용5334848완전내용14. THIN SHELL STRUCTURES, W. C. Schnobrich4949완전내용14.1 Introduction부분내용5365050완전내용14.2 Shells of Revolution부분내용5375151완전내용14.3 Cylindrical Shells부분내용5445252완전내용14.4 Translational Shells부분내용5535353완전내용14.5 Computer Methods부분내용5615454완전내용14.6 Proportioning and Reinforcement부분내용5615555완전내용14.7 Construction부분내용5625656완전내용15. REINFORCED cONCRETE cHIMNEYS, Wadi S. Rumman5757완전내용15.1 Introduction부분내용5655858완전내용15.2 Proportioning부분내용5655959완전내용15.3 Liners부분내용5666060완전내용15.4 Wind Loading부분내용5666161완전내용15.5 Earthquake Loading부분내용5706262완전내용15.6 Stresses부분내용5716363완전내용15.7 Strength of Ultimate Design부분내용5736464완전내용16 SILOS AND BUNKERS, Sargis S. Safarian and Ernest C. Harris6565완전내용16.1 Introduction부분내용5876666완전내용16.2 Design Considerations부분내용5876767완전내용16.3 Desig Method-USD or WSD부분내용5876868완전내용16.4 Properties of Stored Materials부분내용5886969완전내용16.5 Silo or Bunker?부분내용5897070완전내용16.6 Silos부분내용58937171완전내용16.7 Circular Silos부분내용5937272완전내용16.8 Grouped Circular Silos부분내용5957373완전내용16.9 Detals-Circular Silos and Silo Grpups부분내용5967474완전내용16.10 Square and Rectangular Silos부분내용5987575완전내용16.11 Details-Rectangular Silos and Silo Groups부분내용6007676완전내용16.12 Regular Polygonal Silos부분내용6007777완전내용16.13 Silo Bottoms부분내용6007878완전내용16.14 Design and Detailing of Reinforced Concrete Bunkers부분내용6077979완전내용16.15 Roofs for Silos and Bunkers부분내용6118080완전내용16.16 Foundations for Bunkers and Silos부분내용6118181완전내용16.17 Slipform Vonstruction of Silos부분내용6128282완전내용16.18 Examples부분내용6128383완전내용17. REINFORCED CONCRETE MASONRY CONSTRUCTION, Walter L. Dickey8484완전내용17.1 Introduction부분내용6328585완전내용17.2 Masonry Assemblages부분내용6338686완전내용17.3 Masonry Materials부분내용6358787완전내용17.4 Testing and Control부분내용6378888완전내용17.5 Recommended Waterproofing부분내용6388989완전내용17.6 Structural Design부분내용6419090완전내용17.7 Multistory Load-Bearing Walls부분내용6509191완전내용17.8 Tables and Charts부분내용6559292완전내용17.9 Specifications부분내용6569393완전내용18. SANITRAY STRUCTURES-TANKS AND RESERVOIRS, John F. Seidensticker and EdwardS. Hoffman9494완전내용18.1 General Design Vonsiderations부분내용6639595완전내용18.2 Watertightness부분내용6669696완전내용18.3 Design Parameters부분내용6689797완전내용18.4 Design of Rectangular Tanks부분내용6719898완전내용18.5 Desing of Circular Tanks부분내용6829999완전내용18.6 Other Structures부분내용6850000완전내용18.7 Corrosion Protection부분내용6860101완전내용19. CONCRETE PIPE, John G. Hendrickson, Jr.0202완전내용19.1 Introduction부분내용6880303완전내용19.2 Nonreinforced Concrete Pipe부분내용6890404완전내용19.3 Reinforced Concrete Pipe-Nonpressure부분내용6890505완전내용19.4 Precast Concrete Boxes부분내용6900606완전내용19.5 Reinforced Concrete Pipe for Low Internal Pressures부분내용6910707완전내용19.6 Reinforced Concrete Pipe for moderate and High Internal Pressures부분내용6910808완전내용19.7 Loads on Pipe in trenches부분내용6930909완전내용19.8 Loads on Pipe Under Embankments부분내용6971010완전내용19.9 Live Loads on Buried Pipe부분내용7011111완전내용19.10 Hydaulic Capacity of Concre Pipe Sewers부분내용7011212완전내용19.11 Hydraulic Capacity of Concrete Pressure Pipe부분내용7041313완전내용19.12 Hydraulic Capacity of Culverts부분내용7041414완전내용20. MARINE STRUCTURES, Ben c. Gerwick, Jr.1515완전내용20.1 General Conskderations부분내용7081616완전내용20.2 Durability and Corrsion Protection부분내용7111717완전내용20.3 Construction Methods and Procedures부분내용7121818완전내용20.4 Special Design Considerations for Marine structures부분내용7181919완전내용20.5 Specific Applications부분내용7182020완전내용21. PARKING STRUCTURES, H. Carl Walker2121완전내용21.1 Introduction부분내용7342222완전내용21.2 Structural Systems부분내용7342323완전내용21.3 Design Loads-Gerneral부분내용7342424완전내용21.4 Lateral Loads부분내용7352525완전내용21.5 Volume Change Loads부분내용7372626완전내용21.6 Pour Strips and Expansion Joints부분내용7392727완전내용21.7 Bumper Wall Design부분내용7402828완전내용21.8 Durability부분내용7402929완전내용22. CONCRETE PAVEMENT DESIGN, Robert G. Packard3030완전내용22.1 Concrete Pavement Design부분내용7423131완전내용22.2 Concrete Quality부분내용7423232완전내용22.3 Subgrades and Subbases부분내용7433333완전내용22.4 Thickness Design for Highwqy and Street Pavements부분내용7463434완전내용22.5 Joint Design for Highway and Street Pavements부분내용7493535완전내용22.6 Thickness Design for Airport Pavements부분내용7543636완전내용22.7 Joint Design for Airport Pavements부분내용7593737완전내용22.8 Use of Steel in Jointed Pavements부분내용7613838완전내용22.9 Continuously Reinforced Pavements부분내용7673939완전내용22.10 Concrete Overlays부분내용7684040완전내용23. PREPATRATION OF STRUCTURAL DRAWINGS AS RELATED TO DETAILING OF REINFORCEDCONCRETE, Paul F. Rice and William C. Black부분내용7684141완전내용23.1 General Considerations부분내용7754242완전내용23.2 Alternate Designs부분내용7764343완전내용23.3 Reinforcing Bars, Spirals and Welded-Wire Fabric부분내용7764444완전내용23.4 Estimating부분내용7764545완전내용23.5 Reinforcing Steel Placing Drawings부분내용7804646완전내용23.6 Approvals부분내용7814747완전내용23.7 Practical Considerations for Most Efficient Presentation of Desgns부분내용7824848완전내용24. CONSTRUCTION METHODS AND EQUIPMENT, J.F. Camellerie4949완전내용24.1 Construction Orientation of Design부분내용7935050완전내용24.2 Scheduling and Control of Construction부분내용7975151완전내용24.3 Concrete Construction Techniques부분내용7995252완전내용24.4 Utilization of Formwork부분내용8045353완전내용24.5 Concrete Placting Equipment부분내용8095454완전내용24.6 Safety Pays부분내용8175555완전내용25. STRUCTURAL ANALYSIS, Kurt H. Gerstle5656완전내용25.Introduction부분내용8205757완전내용25.2 Internal Forces in Structures부분내용8225858완전내용25.3 Deformations of Statically Dterminate Structures부분내용8245959완전내용25.4 The Force Method부분내용8306060완전내용25.5 The Displancement Method부분내용8396161완전내용25.6 analysis for Moving Loads부분내용8466262완전내용25.7 The Finite-Element Method부분내용8506363완전내용26. COMPUTER APPLICATIONS, Steven J. Fenves and Daniel Rehak6464완전내용26.1 Introduction부분내용8556565완전내용26.2 Dimensions of Computer Use부분내용8556666완전내용26.3 Role of Computers in The Design Process부분내용8576767완전내용26.4 Rpogram Design Process부분내용8616868완전내용26.5 Information Sources부분내용8636969완전내용27. STRUCTURAL PLAIN CONCRETE, Fritz Kramrisch7070완전내용27.1 General부분내용8657171완전내용27.2 Design부분내용8687272완전내용27.3 Specific Requirements and Examples부분내용8707373완전내용INDEX부분내용8757474
- 가격
- ₩100000
- Control Number
- gtec:8258
MARC
008021018s1983 us a 000a eng■0801 ▼a666.94(02)
■082 ▼a600▼223
■090 ▼a600▼bF516h
■1000 ▼aFintel, Mark
■24510▼aHandbook of CONCRETE ENGINEERING▼dMark Fintel 편.
■250 ▼a2판
■260 ▼a미국▼bVAN NOSTRAND REINHOLD COMPANY▼c1983
■300 ▼a892p.▼b삽도▼c27cm
■505 ▼a1. PROPORTONING OF SECTIONS-STRENGTH DESIGN METHOD, Murat Saatcioglu▼a1.1Introduction▼c1▼a1.2 SI Units in Structural Design▼c1▼a1.3 Behavior of Reinforced Concrete▼c2▼a1.4 Desing Procedure▼c10▼a1.5 Flexural Desing▼c12▼a1.6 Design for Fledure and Axial Load▼c21▼a1.7 Proportioning Sections for Shear and Torsion▼c41▼a1.8 Reinforcement Properites and Design▼c47▼a2. DEFLECTIONS, Dan E. Brason00▼a2.1 Introduction▼c5311▼a2.2 Material Properties▼c5322▼a2.3 Control of Deflections▼c5733▼a2.4 Deflection of Nonprestressed One-Way Members▼c5944▼a2.5 Deflection of Nonprestressed Composite Members▼c6855▼a2.6 Deflection of Nonprestressed Two-Way Slab Systems▼c7266▼a3. ONE-AND TWO-WAY SLABS, Sidney H. Simmonds77▼a3.1 Introduction▼c8188▼a3.2 Slab Terminology▼c8299▼a3.3 Historical Development of Slab Design▼c8300▼a3.4 Selecting the Slab Thickness▼c8411▼a3.5 One-Way Slabs▼c8522▼a3.6 Direct Design Method▼c8733▼a3.7 Equivalent Frame Method▼c8944▼a3.8 Shear and Shear-Moment Requirements▼c9255▼a3.9 slab Reinforcenemt▼c9566▼a3.10 Two-Way Slab design Examples▼c9677▼a3.11 Special Slab Problems▼c11088▼a3.12 Plastic Desing Procedures▼c11499▼a4. JOINTS IN BUILDINGS, Mark Fintel00▼a4.1 Introduction▼c12111▼a4.2 Movements in Structures▼c12122▼a4.3 Tensile Stresses Leading to Cracking and Their Prigin▼c12233▼a4.4 Reinforcing Steel▼c12344▼a4.5 Types of Joints▼c12355▼a4.6 Joint Spacing▼c12366▼a4.7 Nonstructural Elements▼c12477▼a4.8 Joints in Cladding▼c12488▼a4.9 Construction Joints▼c12599▼a4.10 Expansion Joints▼c12800▼a4.11 Control Joints▼c13111▼a4.12 Shrinkage Strips▼c13322▼a4.13 Special Purpose Joints▼c13433▼a4.14 Joints for Slabs on Grade in Bulidings▼c13544▼a4.15 Massive Structural Concrete without Joints▼c13755▼a5. FOOTINGS, Fritz Kramrisch66▼a5.1 General▼c13977▼a5.2 Evaluation of Bearing Pressures at Footing Bases▼c14088▼a5.3 Basic Design Procedure-Reinforced Concrete Footings With Equally Distributed Beating Pressures▼c14799▼a5.4 Special Conditions▼c15400▼a5.5 Reinforced Concrete Footings with Concentrated Reactions(Pile Caps)▼c15811▼a5.6 Retaining Walls▼c16222▼a6. PROPERTIES OF MATERIALS FOR REINFORCED CONCRERE, Sidney Freedman33▼a6.1 Introduction▼c16944▼a6.2 Compressive Strength▼c16955▼a6.3 Tensile Strength▼c17566▼a6.4 Modulus of Elasticity▼c18077▼a6.5 Poisson's Ratio▼c18488▼a6.6 Shear and Torsion▼c18499▼a6.7 Volume Changes▼c18600▼a6.8 Bond of Concrete to Steel▼c20011▼a6.9 fatigue of Concrete▼c20122▼a6.10 Permeability▼c20333▼a6.11 Durability▼c20944▼a6.12 Acoustical Properties▼c21955▼a6.13 Electrical Properties▼c22166▼a6.14 Reinforcement▼c22577▼aAppendix▼c24388▼a7. FIRE RESISTANCE, Armand h. Gustaferro99▼a7.1 Introduction▼c25200▼a7.2 Properites of Steel and Concrete at High Temperatures▼c25311▼a7.3 Temperatures within Concrete Menbers during Fires▼c25422▼a7.4 Fire Endurance Determined by 250˚ Rise of Unexposed Surface▼c25733▼a7.5 Fire Endurance of Simply supported (Unrestrained) Slabs and Beams▼c26144▼a7.6 Fire Endurance of Continuous Beams and Slabs▼c26355▼a7.7 Fire Endurance of Foolrs and Foofs in Which Restraint to Termal ExpansionOccurs▼c26566▼a7.8 Fire Endurance of Concrete Columns▼c26677▼a8. PRESTRESSED CONCRETE, Antoine E. Naaman88▼a8.1 Principle and Methods of Prestressing▼c26899▼a8.2 Prestressing Materials▼c27100▼a8.3 Design Criteria▼c27211▼a8.4 Prestress Losses▼c27322▼a8.5 Flexure: Working stress Analysis and Design▼c27533▼a8.6 Flexure: Strength Analysis and Design▼c28344▼a8.7 Design for Shear▼c28755▼a8.8 Deflection Computation and Control▼c29366▼a8.9 Analysis and Design of Composite Beams▼c29777▼a8.10 Continuous Beams▼c30388▼a8.11 Prestressed Concrete Slabs▼c31099▼a8.12 Prestressed Concrete Tension Members▼c31200▼a8.13 Prestressed Concrete Compression Members▼c31311▼a8.14 Prestressed Concrete Bridges▼c31622▼a9. POST-TENSIONED SLAB SYSTEMS, CILFFORD L. Freyermuth33▼a9.1 Introduction▼c32144▼a9.2 Perliminary Sizing of Members▼c32255▼a9.3 Load-Balancing Method of Analysis▼c32266▼a9.4 Strength Analysis▼c32277▼a9.5 Flexure and Shear in One-Way Slabs▼c32288▼a9.6 Flexure and Shear in Flat Plates▼c32399▼a9.7 Fire Resistance▼c3270000▼a9.8 Corrsion Protection▼c3270101▼a9.9 construction Joints and Closure Strips▼c3280202▼a9.10 Restraint Forces from Supporting Walls and Columns▼c3280303▼a9.11 Approximate Quantities for Post-Tensioned One-Way and Two-Way Slabs▼c3280404▼a9.12 Flat Plate Apartment Design Example▼c3300505▼a10. MULTISTORY STRUCTURES, Mark Fintel0606▼a10.1 Defintion▼c3390707▼a10.2 Dhistory of Devleopment of High-Rise Buildings▼c3390808▼a10.3 Contributing Factors to Concrete High-Rise Buildings▼c3410909▼a10.4 Types of Pccupancy▼c3491010▼a10.5 Resistance to Wind Loads▼c3521111▼a10.6 Design for Vertical Loads▼c3701212▼a10.7 Staggered Wall-Beam Structures▼c3751313▼a10.8 Pipe Columns-Flat Plate Structures▼c3821414▼a10.9 Effects of Vertical Movements Due to Temperature, Creep, and Shrinkage▼c3831515▼a11. TUBULAR STRUCTURES FOR TALL BUILDINGS, Fazlur R. Khan1616▼a11.1 Introduction▼c3991717▼a11.2 Behavior of the Framed Tube System▼c4011818▼a11.3 Intital Preliminary Design Approach▼c4011919▼a11.4 Preliminary Design Usng Ingluence Curves▼c4022020▼a11.5 Use of Nondimensional Curives for Preiminary Design▼c4022121▼a11.6 Reduction Modeling Approach▼c4032222▼a11.7 Total Bxhavior of a Framed Tube▼c4062323▼a11.8 Tube-in-Tube Structural System▼c4082424▼aAppendix▼c4092525▼a12. EARTHQUAKE-RESISTANT ATRUCTURES, Arnaldo T. Derecho, Mark Fintel and S. d.Ghosh2626▼a12.1 Introduction▼c4112727▼a12.2 Earthquakes▼c4122828▼a12.3 Response of Structures to Earhquake Montions▼c4202929▼a12.4 Some Results of Analytical Studies on the nonlinear Behavior of Multistory Structures Subjected to Earthquake Excitation▼c4293030▼a12.5 Some Results of Expermental Investigations on the Seismic Behavioor of Reinfored Concrete Menbers and Connections▼c4513131▼a12.6 Current Practice in Design for earthquake Motins▼c4643232▼a12.7 Design Example-Sample Designs for Elements of a 12-Story Frame-Shear WallBuilding▼c4893333▼a12.8 Alternatives to Aseismic Design By Building Codes▼c5053434▼a13. LARGE PANEL STRUCTURES, Iain a MacLeod3535▼a13.1 Introduction▼c5143636▼a13.2 Loading▼c5163737▼a13.3 Analysis▼c5173838▼a13.4 Structural and Functional Design-General▼c5213939▼a13.5 Design of Wall Panels▼c5214040▼a13.6 Design of Floor Slavs▼c5224141▼a13.7 design of Horizontal Connections▼c5234242▼a13.8 Design of Vertical Connections▼c5254343▼a13.9 Tie Steel▼c5274444▼a13.10 Desing of Transfer Beams▼c5314545▼a13.11 Serviceability▼c5324646▼a13.12 Construction Problems▼c5324747▼a13.13 Further Reading▼c5334848▼a14. THIN SHELL STRUCTURES, W. C. Schnobrich4949▼a14.1 Introduction▼c5365050▼a14.2 Shells of Revolution▼c5375151▼a14.3 Cylindrical Shells▼c5445252▼a14.4 Translational Shells▼c5535353▼a14.5 Computer Methods▼c5615454▼a14.6 Proportioning and Reinforcement▼c5615555▼a14.7 Construction▼c5625656▼a15. REINFORCED cONCRETE cHIMNEYS, Wadi S. Rumman5757▼a15.1 Introduction▼c5655858▼a15.2 Proportioning▼c5655959▼a15.3 Liners▼c5666060▼a15.4 Wind Loading▼c5666161▼a15.5 Earthquake Loading▼c5706262▼a15.6 Stresses▼c5716363▼a15.7 Strength of Ultimate Design▼c5736464▼a16 SILOS AND BUNKERS, Sargis S. Safarian and Ernest C. Harris6565▼a16.1 Introduction▼c5876666▼a16.2 Design Considerations▼c5876767▼a16.3 Desig Method-USD or WSD▼c5876868▼a16.4 Properties of Stored Materials▼c5886969▼a16.5 Silo or Bunker?▼c5897070▼a16.6 Silos▼c58937171▼a16.7 Circular Silos▼c5937272▼a16.8 Grouped Circular Silos▼c5957373▼a16.9 Detals-Circular Silos and Silo Grpups▼c5967474▼a16.10 Square and Rectangular Silos▼c5987575▼a16.11 Details-Rectangular Silos and Silo Groups▼c6007676▼a16.12 Regular Polygonal Silos▼c6007777▼a16.13 Silo Bottoms▼c6007878▼a16.14 Design and Detailing of Reinforced Concrete Bunkers▼c6077979▼a16.15 Roofs for Silos and Bunkers▼c6118080▼a16.16 Foundations for Bunkers and Silos▼c6118181▼a16.17 Slipform Vonstruction of Silos▼c6128282▼a16.18 Examples▼c6128383▼a17. REINFORCED CONCRETE MASONRY CONSTRUCTION, Walter L. Dickey8484▼a17.1 Introduction▼c6328585▼a17.2 Masonry Assemblages▼c6338686▼a17.3 Masonry Materials▼c6358787▼a17.4 Testing and Control▼c6378888▼a17.5 Recommended Waterproofing▼c6388989▼a17.6 Structural Design▼c6419090▼a17.7 Multistory Load-Bearing Walls▼c6509191▼a17.8 Tables and Charts▼c6559292▼a17.9 Specifications▼c6569393▼a18. SANITRAY STRUCTURES-TANKS AND RESERVOIRS, John F. Seidensticker and EdwardS. Hoffman9494▼a18.1 General Design Vonsiderations▼c6639595▼a18.2 Watertightness▼c6669696▼a18.3 Design Parameters▼c6689797▼a18.4 Design of Rectangular Tanks▼c6719898▼a18.5 Desing of Circular Tanks▼c6829999▼a18.6 Other Structures▼c6850000▼a18.7 Corrosion Protection▼c6860101▼a19. CONCRETE PIPE, John G. Hendrickson, Jr.0202▼a19.1 Introduction▼c6880303▼a19.2 Nonreinforced Concrete Pipe▼c6890404▼a19.3 Reinforced Concrete Pipe-Nonpressure▼c6890505▼a19.4 Precast Concrete Boxes▼c6900606▼a19.5 Reinforced Concrete Pipe for Low Internal Pressures▼c6910707▼a19.6 Reinforced Concrete Pipe for moderate and High Internal Pressures▼c6910808▼a19.7 Loads on Pipe in trenches▼c6930909▼a19.8 Loads on Pipe Under Embankments▼c6971010▼a19.9 Live Loads on Buried Pipe▼c7011111▼a19.10 Hydaulic Capacity of Concre Pipe Sewers▼c7011212▼a19.11 Hydraulic Capacity of Concrete Pressure Pipe▼c7041313▼a19.12 Hydraulic Capacity of Culverts▼c7041414▼a20. MARINE STRUCTURES, Ben c. Gerwick, Jr.1515▼a20.1 General Conskderations▼c7081616▼a20.2 Durability and Corrsion Protection▼c7111717▼a20.3 Construction Methods and Procedures▼c7121818▼a20.4 Special Design Considerations for Marine structures▼c7181919▼a20.5 Specific Applications▼c7182020▼a21. PARKING STRUCTURES, H. Carl Walker2121▼a21.1 Introduction▼c7342222▼a21.2 Structural Systems▼c7342323▼a21.3 Design Loads-Gerneral▼c7342424▼a21.4 Lateral Loads▼c7352525▼a21.5 Volume Change Loads▼c7372626▼a21.6 Pour Strips and Expansion Joints▼c7392727▼a21.7 Bumper Wall Design▼c7402828▼a21.8 Durability▼c7402929▼a22. CONCRETE PAVEMENT DESIGN, Robert G. Packard3030▼a22.1 Concrete Pavement Design▼c7423131▼a22.2 Concrete Quality▼c7423232▼a22.3 Subgrades and Subbases▼c7433333▼a22.4 Thickness Design for Highwqy and Street Pavements▼c7463434▼a22.5 Joint Design for Highway and Street Pavements▼c7493535▼a22.6 Thickness Design for Airport Pavements▼c7543636▼a22.7 Joint Design for Airport Pavements▼c7593737▼a22.8 Use of Steel in Jointed Pavements▼c7613838▼a22.9 Continuously Reinforced Pavements▼c7673939▼a22.10 Concrete Overlays▼c7684040▼a23. PREPATRATION OF STRUCTURAL DRAWINGS AS RELATED TO DETAILING OF REINFORCEDCONCRETE, Paul F. Rice and William C. Black▼c7684141▼a23.1 General Considerations▼c7754242▼a23.2 Alternate Designs▼c7764343▼a23.3 Reinforcing Bars, Spirals and Welded-Wire Fabric▼c7764444▼a23.4 Estimating▼c7764545▼a23.5 Reinforcing Steel Placing Drawings▼c7804646▼a23.6 Approvals▼c7814747▼a23.7 Practical Considerations for Most Efficient Presentation of Desgns▼c7824848▼a24. CONSTRUCTION METHODS AND EQUIPMENT, J.F. Camellerie4949▼a24.1 Construction Orientation of Design▼c7935050▼a24.2 Scheduling and Control of Construction▼c7975151▼a24.3 Concrete Construction Techniques▼c7995252▼a24.4 Utilization of Formwork▼c8045353▼a24.5 Concrete Placting Equipment▼c8095454▼a24.6 Safety Pays▼c8175555▼a25. STRUCTURAL ANALYSIS, Kurt H. Gerstle5656▼a25.Introduction▼c8205757▼a25.2 Internal Forces in Structures▼c8225858▼a25.3 Deformations of Statically Dterminate Structures▼c8245959▼a25.4 The Force Method▼c8306060▼a25.5 The Displancement Method▼c8396161▼a25.6 analysis for Moving Loads▼c8466262▼a25.7 The Finite-Element Method▼c8506363▼a26. COMPUTER APPLICATIONS, Steven J. Fenves and Daniel Rehak6464▼a26.1 Introduction▼c8556565▼a26.2 Dimensions of Computer Use▼c8556666▼a26.3 Role of Computers in The Design Process▼c8576767▼a26.4 Rpogram Design Process▼c8616868▼a26.5 Information Sources▼c8636969▼a27. STRUCTURAL PLAIN CONCRETE, Fritz Kramrisch7070▼a27.1 General▼c8657171▼a27.2 Design▼c8687272▼a27.3 Specific Requirements and Examples▼c8707373▼aINDEX▼c8757474
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