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Reinforced Concrete Design

Reinforced Concrete Design

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This book on Reinforced Concrete Design has undergone regular revisions following its first publication in 1998 - in order to keep pace with developments in theory and practice, and corresponding periodic revisions and updates of related Codes. This book lays great emphasis on conceptual clarity and strength in fundamentals. This edition has undergone many structural and conceptual revision. It comes with two new chapters and the extant chapters have been thoroughly reviewed and revised. It is also relevant for post-graduate students, instructors and practising engineers. Salient Features: 1. 2 additional chapters a. Design of liquid storage tanks b. Estimation of wind and seismic forces on buildings 2. Addition of exhaustive List of Symbols 3. Inclusion of Learning Objectives at the beginning of each chapter 4. Margin Notes callouts giving relevant key insights to the topics 5. Chapter-end pedagogical features a. Set of stimulating Review Questions and Multiple Choice Questions b. Exhaustive set of problems (with answers for analysis type problems) c. Extensive references to enable further research d. Relevant questions useful for GATE examination 6. Encapsulation of concepts with illustrative worked examples for better understanding 7. Graded series of laboratory assignments of Design-build-test-analyse-report type added as Appendix About the Author Dr. S Unnikrishna Pillai pursued his engineering education at the University of Kerala and Queens University, Canada. He has taught at College of Engineering, Thiruvananthapuram; Queens University, Canada; University of Sulaimaniya, Iraq; Royal Military College of Canada and Regional Engineering College (presently NIT), Calicut. As the Founder-Director of the Co-operative Academy of Professional Education (CAPE), he has built up five Engineering Colleges and a Medical College in Kerala. His major research interests have been in the areas of Limit States Design of concrete structures, Strength and Stability of Beam-Columns in metal structures and Rehabilitation of structures. He also has wide experience in design and construction of various RC structures. Dr. Pillai has published several technical papers, authored the book Reinforced Concrete Design (McGraw-Hill Ryerson, Canada) and co-authored Ch. 8 - Beam-Columns of SSRC Guide to Stability Design Criteria for Metal Structures, 3rd Ed. (Edited by Bruce G. Johnston; John Wiley & Sons, New York, 1976). He has received several awards, including Kerala University Scholarships for First Rank, Canadian Commonwealth Scholarship, UP Government National Award, and Fellowship of NRC, Canada. Prof. Devdas Menon pursued his civil engineering education at IIT Madras and IIT Delhi. Soon after graduation, he worked as a structural engineer at New Delhi, and later took to academics, teaching initially at REC Calicut and later at IIT Madras (since 1998). He is presently Professor & PC Varghese Institute Chair at the Department of Civil Engineering at IIT Madras. He is a structural consultant involved in various infrastructure projects. Prof. Menons primary research interests are in the area of structural concrete design. He has also carried out innovative research and development in affordable and sustainable building systems and in biomechanical orthopaedic devices. He has published numerous technical papers and has been conferred several awards for his contributions to teaching and research. He has a special interest in developing codes of practice and has served as Chairman of the Bureau of Indian Standards CED38 Committee on Special Structures since 2006. He is the author of textbooks titled Structural Analysis and Advanced Structural Analysis, and the editor of Trends in Prestressed Concrete and Handbook on Seismic Retrofit of Buildings. Prof. Menon promotes a holistic approach to education and on finding meaning and fulfilment in life through self-awareness and inne

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About the Book

This revised edition follows provisions of IS 456:2000 as well as related current codes and the advanced development that have taken place in the field of  Reinforced Concrete Design.  Written for students and engineers, this book lays great emphasis on conceptual clarity through state-of-the art coverage of all required topics. Salient Features Follows provision of IS 456:2000. Distinctive coverage of Earthquake resistant design, Structural Systems, Green buildings, Good detailing and Construction practice. Expanded coverage on Strut-and-Tie method, Yield line theory, Modified compression field theory. Incorporates the latest developments in the field. Rich pool of pedagogy includes: 98 Solved examples 288 Review problems 127 Chapter-end exercises



Table of Contents:
1. Reinforced Concrete Structures 2. Basic Material Properties 3. Basic Design Concepts 4. Behaviour inFlexure 5. Design of Beams and One-Way Slabs for Flexure 6. Design For Shear 7. Design For Torsion 8. Design For Bond 9. Analysis for Design Moments in Continuous Systems 10. Serviceability Limit States: Deflection and Cracking 11. Design of Two-Way Slab Systems 12. Design of Staircases 13. Design of Compression Members 14. Design of Footings and Retaining Walls 15. Good Detailing and Construction Practices 16. Special Provisions for Earthquake-Resistant Design 17. Selected Special Topic


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Product Details
  • ISBN-13: 9780070141100
  • Publisher: Mcgraw Hill Higher Education
  • Binding: PAPERBACK
  • Height: 154 mm
  • Returnable: Y
  • Weight: 930 gr
  • ISBN-10: 007014110X
  • Publisher Imprint: Mcgraw Hill Higher Education
  • Edition: 3 ed
  • Language: ENGLISH
  • Spine Width: 31 mm
  • Width: 224 mm


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