Building Structures 3rd Edition [Kõva köide]

  • Formaat: Hardback, 544 pages, kõrgus x laius x paksus: 286x217x32 mm, kaal: 1494 g, Illustrations
  • Ilmumisaeg: 27-Sep-2011
  • Kirjastus: John Wiley & Sons Inc
  • ISBN-10: 0470542608
  • ISBN-13: 9780470542606
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  • Formaat: Hardback, 544 pages, kõrgus x laius x paksus: 286x217x32 mm, kaal: 1494 g, Illustrations
  • Ilmumisaeg: 27-Sep-2011
  • Kirjastus: John Wiley & Sons Inc
  • ISBN-10: 0470542608
  • ISBN-13: 9780470542606
Teised raamatud teemal:
"This new edition continues its legacy as the reference of choice for architects studying contemporary issues and design practices for building structures by taking a conceptual approach that foregos complicated mathematics. Looking at the role of the structure as a building subsystem, it offers the fundamentals of computational methods for design of wood, steel, and reinforced concrete structures, along with new material such as discussion of the LRFD method of design. Profusely illustrated with new case studies, this go-to guide is perfect for non-engineers to understand and visualize structural design"--

Provided by publisher.

This new edition continues its legacy as the reference of choice for architects studying contemporary issues and design practices for building structures by taking a conceptual approach that foregos complicated mathematics. Looking at the role of the structure as a building subsystem, it offers the fundamentals of computational methods for design of wood, steel, and reinforced concrete structures, along with new material such as discussion of the LRFD method of design. Profusely illustrated with new case studies, this go-to guide is perfect for non-engineers to understand and visualize structural design.
Preface ix
Introduction xi
1 Basic Concepts
1(38)
1.1 Basic Concerns
1(2)
1.2 Architectural Considerations
3(9)
1.3 Structural Functions
12(6)
1.4 Structural Materials
18(3)
1.5 Structural Systems
21(18)
2 Investigation of Structures
39(41)
2.1 Introduction to Structural Investigation
39(2)
2.2 Static Forces
41(15)
2.3 Stresses and Strains
56(7)
2.4 Special Topics
63(12)
2.5 Dynamic Behavior
75(5)
3 Structural Elements
80(34)
3.1 Beams
80(8)
3.2 Tension Elements
88(5)
3.3 Compression Elements
93(6)
3.4 Trusses
99(5)
3.5 Rigid Frames
104(8)
3.6 Special Structures
112(2)
4 Wood Structures
114(39)
4.1 General Concerns for Wood
114(3)
4.2 Wood Products and Systems
117(7)
4.3 Design Data for Structural Lumber
124(2)
4.4 Wood-Spanning Systems
126(8)
4.5 Wood Trusses
134(5)
4.6 Wood Columns
139(8)
4.7 Fasteners and Connections for Wood
147(6)
5 Steel Structures
153(50)
5.1 General Concerns for Steel
153(5)
5.2 Steel Beams, Joists, and Decks
158(29)
5.3 Steel Columns
187(9)
5.4 Bolted Connections for Steel Structures
196(6)
5.5 Steel Trusses
202(1)
6 Concrete Structures
203(56)
6.1 General Concerns for Concrete
203(8)
6.2 Reinforced Concrete Flexural Members
211(27)
6.3 Concrete Columns
238(9)
6.4 Concrete Foundations
247(12)
7 Masonry Structures
259(22)
7.1 General Concerns for Masonry
259(3)
7.2 Structural Masonry
262(5)
7.3 Masonry with Concrete Units
267(3)
7.4 Form and Classification of Compression Elements
270(1)
7.5 Brick Masonry
271(5)
7.6 Miscellaneous Masonry Construction
276(3)
7.7 Adobe Construction
279(1)
7.8 Hollow Clay Tile
279(2)
8 Building Foundations and Site Structures
281(35)
8.1 General Considerations
281(2)
8.2 Soil Properties and Foundation Behavior
283(10)
8.3 Shallow Bearing Foundations
293(5)
8.4 Elements of Foundation Systems
298(6)
8.5 Deep Foundations
304(4)
8.6 Special Problems and Construction
308(8)
9 Lateral-Force Effects
316(65)
9.1 General Considerations for Lateral Effects
316(19)
9.2 Wind Effects on Buildings
335(6)
9.3 Earthquake Effects on Buildings
341(9)
9.4 Elements of Lateral Resistive Systems
350(31)
10 Building Structures Design Examples
381(87)
10.1 General Concerns for Structural Design
381(11)
10.2 Building One
392(7)
10.3 Building Two
399(11)
10.4 Building Three
410(4)
10.5 Building Four
414(2)
10.6 Building Five
416(2)
10.7 Building Six
418(12)
10.8 Building Seven
430(25)
10.9 Building Eight
455(3)
10.10 Building Nine
458(10)
Appendix A Properties of Sections 468(15)
Appendix B Glossary 483(6)
Appendix C Exercise Problems 489(15)
Appendix D Study Aids 504(15)
References 519(2)
Index 521
James Ambrose is Editor of the Parker/Ambrose Series of Simplified Design Guides. He practiced as an architect in California and Illinois and as a structural engineer in Illinois. He was a professor of architecture at the University of Southern California. Patrick Tripeny is an Associate Professor, former director of the School of Architecture, and the current Director of the Center for Teaching and Learning Excellence at the University of Utah. He is a licensed architect in California. He has been the recipient of a number of teaching awards at the local and national level for his work in teaching structures and design. With James Ambrose, he is the coauthor of Simplified Engineering for Architects and Builders, Eleventh Edition; Simplified Design of Steel Structures, Eighth Edition; Simplified Design of Concrete Structures, Eighth Edition; and Simplified Design of Wood Structures, Sixth Edition, all published by Wiley.

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