AISC DESIGN GUIDE 18-2003 Steel-Framed Open-Deck Parking Structures.pdf
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1、18Steel Design GuideSteel-Framed Open-Deck Parking Structures18Steel Design GuideSteel-Framed Open-Deck Parking Structures CHARLES H. CHURCHESStructural EngineerChurches Consulting EngineersWashington, Pennsylvaniawith additional material contributed byEMILE W.J. TROUPStructural Steel Fabricators of
2、 New EnglandCanton, MassachusettsCARL ANGELOFFManager/Market DevelopmentBayer CorporationPittsburgh, PennsylvaniaAMERICAN INSTITUTE OF STEEL CONSTRUCTION, INC.Copyright 2003byAmerican Institute of Steel Construction, Inc.All rights reserved. This book or any part thereofmust not be reproduced in any
3、 form without thewritten permission of the publisher.The information presented in this publication has been prepared in accordance with recognizedengineering principles and is for general information only. While it is believed to be accurate,this information should not be used or relied upon for any
4、 specific application without com-petent professional examination and verification of its accuracy, suitablility, and applicabilityby a licensed professional engineer, designer, or architect. The publication of the material con-tained herein is not intended as a representation or warranty on the par
5、t of the AmericanInstitute of Steel Construction or of any other person named herein, that this information is suit-able for any general or particular use or of freedom from infringement of any patent or patents.Anyone making use of this information assumes all liability arising from such use.Cautio
6、n must be exercised when relying upon other specifications and codes developed by otherbodies and incorporated by reference herein since such material may be modified or amendedfrom time to time subsequent to the printing of this edition. The Institute bears no responsi-bility for such material othe
7、r than to refer to it and incorporate it by reference at the time of theinitial publication of this edition.Printed in the United States of AmericaFirst Printing: January 2004vPreface AcknowledgementsThis design guide is specifically focused on structural engi-neering issues in the design of open-de
8、ck parking struc-tures and does not deal in depth with parking usage orgeometric topics. General parking topics and their imple-mentation in steel-framed parking structures are covered ina separate publication, Innovative Solutions in Steel: Open-Deck Parking Structures(formerly titled ADesign Aid f
9、orOpen-Deck Steel-Framed Parking Structures), also pub-lished by the American Institute of Steel Construction. This design guide approaches the development of steel-framed parking structures in the same sequence as adesigner would approach the design development. For thisreason, the discussion of th
10、e steel framing system isdeferred until after the section dealing with deck selection.The issues discussed in this design guide are: Deck Systems Framing Systems Mixed Use Structures Fire Protection Requirements Barriers and Facades Stairs and Elevators Corrosion Protection Structural MaintenanceAIS
11、C would like to thank the following people for assis-tance in the production and review of this design guide.Their comments and suggestions have been invaluable.Rashid AhmedEdmund BaumTom CalzoneCharles CarterWilliam CorbettJohn BakotaJohn CrossThomas FaraoneChristopher HewittKenneth HillerScott Ken
12、nedyGerald Loberger, Jr.Billy MilliganWilliam PascoliKimberly RobinsonLen Tsupros Gail VasonisMichael WestviTable of ContentsChapter 1Introduction 11.1 Overview of Open-Deck Parking Structures11.2 Major Components of Interest to a Structural Engineer11.3 Code Considerations 11.3.1 Code Applicability
13、11.3.2 Relevant Code Sections for Open-Deck Parking Structures21.3.3 Code Definitions 21.3.4 Fire Protection and Height21.3.5 ADAGuidelines3Chapter 2Deck Systems for Parking Structures 52.1 Types of Deck Systems 52.1.1 Cast-in-place reinforced concrete62.1.1.1 Clear Cover and Permeability 62.1.1.2 C
14、uring72.1.1.3 Joints, Cracks and Drainage72.1.1.4 Steel Deck82.1.2 Cast-in-Place Post-Tensioned Slabs and Toppings92.1.3 Precast Double Tees92.1.4 Other Systems 102.1.4.1 Filigree102.1.4.2 Hollow-Core Plank102.2 Deck System Selection by Climactic Zone102.3 Concrete Durability102.4 Plaza Deck Systems
15、122.5 Deck System Design Parameters132.5.1 Cast-in-Place Conventionally Reinforced Concrete on Stay-in-Place Metal Forms 132.5.1.1 Deck Slope142.5.2 Cast-in-Place Post-Tensioned Slabs and Toppings142.5.3 Precast Double Tees152.5.4 Filigree Precast with Post-Tensioned Deck152.5.5 Filigree Precast wit
16、h Conventionally Reinforced Slab162.5.6 Precast Hollow Core Slabs with Field Topping 162.5.7 Deck Renovation16Chapter 3Framing Systems173.1 Introduction 173.2 Economy173.2.1 Relationship Between Deck Type and Bay Size Geometry 173.3 Plan Framing Design183.3.1 Cast-in-Place Conventionally Reinforced
17、Slab Poured on Stay-in-Place Metal Decking 183.3.2 Cast-in-Place Post-Tensioned Slab Framing Plan183.3.2.1 The Effect That Post-Tensioning Forces Have on Members and Their Connection183.3.2.2 Construction Loads193.3.2.3 Camber193.3.2.4 Connection Design193.3.2.5 Member Design in Direction of Primary
18、 Reinforcing19vii3.3.3 Precast Double Tee Deck193.3.4 Cast-in-Place Post Tensioned Slab on Filigree Forms 203.3.5 Cast-in-Place Conventionally Reinforced Slab on Precast Forms 203.4 Other Framing Considerations203.4.1 Connection Type: Rigid or Semi-Rigid203.4.2 Composite Beams 203.4.3 Shored Versus
19、Un-Shored Composite Beams213.4.3.1 Cast-in-Place Post-Tensioned Deck213.4.3.2 Cast-in-Place Slab on Metal Deck213.4.3.3 Cast-in-Place Slab on a Filigree Deck213.4.4 Non-Composite Beams 213.4.5 Castellated Beams213.4.6 Perimeter Beams 213.4.7 Steel Joists223.4.8 Control/Expansion Joints223.5 Vertical
20、 Framing Design 223.5.1 Lateral Load Considerations223.5.2 Braced Frames223.5.2.1 Length Changes Due to Thermal Effects233.5.2.2 Shortening of the Deck Due to Concrete Shrinkage and Creep 233.5.2.3 Length Changes and How They Relate to Bracing233.5.3 Shear Walls 233.6 Erection Considerations243.6.1
21、Considerations for All Steel-Framed Parking Structures 243.6.2 Considerations for Deck-Specific Types24Chapter 3 Tables25Chapter 3 Figures33Chapter 4Mixed-Use Structures 63Chapter 5Fire Protection Requirements65Chapter 6Barriers and Facades676.1 Impact Requirements676.2 Railing Code Requirements676.
22、3 Facade Options676.4 Perimeter Protection676.4.1 Precast Architectural Panels686.4.2 Open Steel Member Design686.4.3 Cable Barrier Design Calculations 68Chapter 7Stairs and Elevators717.1 Stair Locations and Requirements717.2 Elevators71Chapter 8Corrosion Protection for Exposed Steel in Open-Deck P
23、arking Structures 778.1 General Overview 778.2 Environmental Factors77viii8.3 High-Performance Coating Systems 778.3.1 Overview 778.3.2 Selection788.3.2.1 Factors That Affect Cost and Performance 788.3.2.2 Recommended Coating Systems 798.3.2.3 Moderate Performance Coating Systems818.3.2.4 Low-VOC Al
24、ternative 818.4 Galvanizing 81Chapter 9Life-Cycle Costs of Steel-Framed Parking Structures83Chapter 10Checklist for Structural Inspection of Parking Structures85AppendixA1Example: Post-Tensioned Deck Parking Garage 87AppendixA2Example:Cast-in-Place Concrete on Metal Deck 95AppendixA3Example: Precast
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