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Simplified LRFD Bridge Design by Robert H. Kim (2013, Hardcover)
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Located in: Grand Rivers, Kentucky, United States
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eBay item number:286158570959
Item specifics
- Condition
- Good
- Seller Notes
- “good condition”
- ISBN
- 9781466566514
About this product
Product Identifiers
Publisher
Taylor & Francis Group
ISBN-10
1466566515
ISBN-13
9781466566514
eBay Product ID (ePID)
117352863
Product Key Features
Number of Pages
358 Pages
Publication Name
Simplified Lrfd Bridge Design
Language
English
Publication Year
2013
Subject
Construction / General, Structural, Civil / Bridges, Civil / General
Type
Textbook
Subject Area
Technology & Engineering
Format
Hardcover
Dimensions
Item Height
0.9 in
Item Weight
22.5 Oz
Item Length
9.5 in
Item Width
6.3 in
Additional Product Features
Intended Audience
College Audience
Reviews
"The book appears to be a simplified and organized approach to the basics of LRFD Bridge Superstructure Design and should serve as a good review and reference manual for the PE Examination." Stevan C. Wilver, Larson Design, "The book appears to be a simplified and organized approach to the basics of LRFD Bridge Superstructure Design and should serve as a good review and reference manual for the PE Examination." --Stevan C. Wilver, Larson Design
Dewey Edition
23
Illustrated
Yes
Dewey Decimal
624.252
Table Of Content
Introduction. LRFD Method of Bridge Design. Limit States. Load Combinations and Load Factors. Strength Limit States for Superstructure Design. Resistance Factors, Φ, for Strength Limits. Design Live Load HL-93. Fatigue Live Load. Number of Design Lanes, NL. Multiple Presence Factor of Live Load, m. Dynamic Load Allowance, IM. Live Load Distribution Factors. Load Combinations for the Strength I Limit State. Simple Beam Live Load Moments and Shears Carrying Moving Concentrated Loads per Lane. Live Load Moments and Shears for Beams (Girders). Design Examples. Design Example 1: Reinforced Concrete T-Beam Bridge. Design Example 2: Load Rating of Reinforced Concrete T-Beam by the Load and Resistance Factor Rating (LRFR) Method. Design Example 3: Composite Steel-Concrete Bridge. Design Example 4: Longitudinal Steel Girder. Design Example 5: Reinforced Concrete Slabs. Design Example 6: Prestressed Interior Concrete Girder. Design Example 7: Flexural and Transverse Reinforcement for 50 ft Reinforced Concrete Girder. Design Example 8: Determination of Load Effects Due to Wind Loads, Braking Force, Temperature Changes, and Earthquake Loads Acting on an Abutment. Practice Problems. Practice Problem 1: Non-composite 60 ft Steel Beam Bridge for Limit States Strength I, Fatigue II, and Service. Practice Problem 2: 161 ft Steel I-Beam Bridge with Concrete Slab. Practice Problem 3: Interior Prestressed Concrete I-Beam References. Primary References. Supplementary References. Appendices. Index.
Synopsis
Helping readers prepare for the civil and structural PE exam, this book presents numerous design examples that serve as a comprehensive, step-by-step guide to basic bridge design using the AASHTO LRFD Bridge Design Specifications, Fifth Edition. It offers a simplified explanation of load resistance factor design (LRFD) method-based bridge design principles and lists the AASHTO reference section numbers alongside formulas and where topics are introduced, to refer the reader to the primary source material. This is a valuable reference for civil engineering students as well as for practicing engineers., Developed to comply with the fifth edition of the AASHTO LFRD Bridge Design Specifications [2010]-- Simplified LRFD Bridge Design is "How To" use the Specifications book. Most engineering books utilize traditional deductive practices, beginning with in-depth theories and progressing to the application of theories. The inductive method in the book uses alternative approaches, literally teaching backwards. The book introduces topics by presenting specific design examples. Theories can be understood by students because they appear in the text only after specific design examples are presented, establishing the need to know theories. The emphasis of the book is on step-by-step design procedures of highway bridges by the LRFD method, and "How to Use" the AASHTO Specifications to solve design problems. Some of the design examples and practice problems covered include: Load combinations and load factors Strength limit states for superstructure design Design Live Load HL- 93 Un-factored and Factored Design Loads Fatigue Limit State and fatigue life; Service Limit State Number of design lanes Multiple presence factor of live load Dynamic load allowance Distribution of Live Loads per Lane Wind Loads, Earthquake Loads Plastic moment capacity of composite steel-concrete beam LRFR Load Rating Simplified LRFD Bridge Design is a study guide for engineers preparing for the PE examination as well as a classroom text for civil engineering students and a reference for practicing engineers. Eight design examples and three practice problems describe and introduce the use of articles, tables, and figures from the AASHTO LFRD Bridge Design Specifications. Whenever articles, tables, and figures in examples appear throughout the text, AASHTO LRFD specification numbers are also cited, so that users can cross-reference the material., Developed to comply with the fifth edition of the AASHTO LFRD Bridge Design Specifications 2010]-- Simplified LRFD Bridge Design is "How To" use the Specifications book. Most engineering books utilize traditional deductive practices, beginning with in-depth theories and progressing to the application of theories. The inductive method in the book uses alternative approaches, literally teaching backwards. The book introduces topics by presenting specific design examples. Theories can be understood by students because they appear in the text only after specific design examples are presented, establishing the need to know theories. The emphasis of the book is on step-by-step design procedures of highway bridges by the LRFD method, and "How to Use" the AASHTO Specifications to solve design problems. Some of the design examples and practice problems covered include: Load combinations and load factors Strength limit states for superstructure design Design Live Load HL- 93 Un-factored and Factored Design Loads Fatigue Limit State and fatigue life; Service Limit State Number of design lanes Multiple presence factor of live load Dynamic load allowance Distribution of Live Loads per Lane Wind Loads, Earthquake Loads Plastic moment capacity of composite steel-concrete beam LRFR Load Rating Simplified LRFD Bridge Design is a study guide for engineers preparing for the PE examination as well as a classroom text for civil engineering students and a reference for practicing engineers. Eight design examples and three practice problems describe and introduce the use of articles, tables, and figures from the AASHTO LFRD Bridge Design Specifications. Whenever articles, tables, and figures in examples appear throughout the text, AASHTO LRFD specification numbers are also cited, so that users can cross-reference the material.
LC Classification Number
TG300
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