
Analysis and Design of Prestressed Concrete Structures
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This book on analysis and design of prestressed concrete structural elements is an advance design course for undergraduate and post-graduate students, research scholars, and practitioners. Analysis and design of prestressed concrete elements using both the pre-tensioning and post-tensioning systems are discussed in detail for determinate as well as indeterminate framed structures with detailed design examples. ·Materials and Systems for Prestressing ·Loss of Prestress ·Analysis of Prestressed Concrete Sections for Flexural Loadings ·Flexural Strength of Prestressed Concrete Sections ·Shear and Torsional Strength of Prestressed Concrete Members ·Indeterminate Prestressed Concrete Structural Elements ·Deflection, Camber, and Crack Control of Prestressed Concrete Members ·Design of Prestressed Concrete Sections ·Design of Transfer and Anchorage Zones ·Design of Prestressed Concrete Flexural Members ·Design of Prestressed Slabs ·Design of Tension Members and Circumferential Prestressing ·Design of Compression Members
Dr. Shamsher Bahadur Singh is P.E. (Civil) license holder from the state of Michigan, USA and Postdoctorate (LTU), USA, Fellow of American Society of Civil Engineers (F.ASCE), Fellow of Structural Engineering Institute (F.SEI), Fellow of Coalition Disaster Resilience Infrastructure (F.CDRI), Fellow of Indian Association of Structural Engineers (FIAStructE), Chartered Engineer (INDIA), Fellow of Institution of Engineers (F.IE), PhD (IIT Kanpur), and currently Senior Professor of Civil Engineering Department at Birla Institute of Technology and Science (BITS), Pilani. His current areas of research are development of design guidelines for Functionally Graded Composite materials and Fiber Reinforced Polymer (FRP) reinforced prestressed concrete structures in particular and composite materials and structures in general including nonlinear finite element modeling.