This book is suited for a first course in pre-stressed concrete design offered to senior undergraduate students in civil engineering and postgraduate students in structural engineering. The book focuses on the behaviour of the pre-stressed concrete structural elements. Carefully-chosen worked examples are included to delineate the design aspects while relevant chapter-end questions enable effortless recapitulation of the subject. The content, while being useful to both the students and teachers, will also serve as an invaluable reference for engineers.
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Autodesk Robot Structural analysis Professional 2021
Size: 1 GB
Another advanced software development by Autodesk, which is actually part of the company's Simulation software series called Autodesk Simulation , is the Autodesk Robot Structural Analysis Professional program, which is used for advanced building analysis. The program communicates with the Autodesk Revit software collection and calculates structural models and professional structures in three dimensions.
And
Autodesk Robot Structural Analysis Professional Software Features and Features:
- Existence of a wide range of tools for analyzing and examining the linear and nonlinear structures of the structure
- Dynamic analysis of various types of complex structures
- Investigation and simulation of various types of pressures and natural loads such as earthquakes
- Make two-way communication with Autodesk Revit software
- Has a one-piece design for concrete and steel with more than 40 international codes for steel and more than 30 codes for concrete
- Having a direct analysis method (Direct Analysis Method or DAM)
- Ability to simulate wind tunnel and check the amount of wind created load
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I'm looking to download as a PDF these ebooks. They are free for reading online but I would like to have it on PDF.
Could you help please!!
Thanks in advance!!
Article/eBook Full Name:
Seismic Design of Highway Bridges: Workshop Manual 1981
Author(s):
Roy A. Imbsen
Publish Date:
1981
Published By:
U.S. Department of Transportation, Federal Highway Administration
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U.S. Department of Transportation, Federal Highway Administration
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Title: 'Factors Influencing the Computational Determination of Earthquake- Induced Shear Stresses in Sandy Soils"
Author: Ramin Golesorkhi
Year: 1989 University of California, Berkeley
Book Full Name: Fatigue Design of Marine Structures Author(s): Inge Lotsberg Publish Date: 2017 ISBN: 978-1-107-12133-1 Published By: Cambridge University Press File: PDF, 23.86 MB
Fatigue Design of Marine Structures provides students and professionals with a theoretical and practical background for fatigue design of marine structures including sailing ships, offshore structures for oil and gas production, and other welded structures subject to dynamic loading such as wind turbine structures. Industry expert Inge Lotsberg brings more than forty years of experience in design and standards-setting to this comprehensive guide to the basics of fatigue design of welded structures. Topics covered include laboratory testing, S-N data, different materials, different environments, stress concentrations, residual stresses, acceptance criteria, non-destructive testing, improvement methods, probability of failure, bolted connections, grouted connections, and fracture mechanics. Featuring twenty chapters, three hundred diagrams, forty-seven example calculations, and resources for further study, Fatigue Design of Marine Structures is intended as the complete reference work for study and practice
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Part 1 Single degree of Freedom Systems 1
Chapter 1 Introduction to Structural Dynamics 3
Chapter 2 Single Degree of Freedom System: Free Vibrations 33
Chapter 3 Single Degree of Freedom System: Harmonic Loading 63
Chapter 4 Single Degree of Freedom System: Periodic Loading 91
Chapter 5 Single Degree of Freedom System: Impulse Loading 129
Chapter 6 Single Degree of Freedom System: Machine Vibrations 161
Chapter 7 Direct Integration of Equation of Motion 185
Chapter 8 Elastic Response Spectra 217
Part 2 M ulti-degree of Freedom Systems261
Chapter 9 Two-degree of Freedom Systems 263
Chapter 10 Multi-degree of Freedom Systems 305
Chapter 11 Systems with Distributed Mass and Elasticity 363
Part 3 Application to Earthquake Engineering 387
Chapter 12 Analysis of Buildings for Earthquake Force 389
Chapter 13 Nonlinear Analysis of Structures 447
Chapter 14 Performance-based Seismic Design of Structures 519
Part 4 Wind Load 575
Chapter 15 Wind Load 577
Appendix 1 Measuring Earthquakes: Magnitude and Intensity 615
Appendix 2 MATLAB Basics 621
Answers to Selected Problems 637
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A comprehensive guide to modern-day methods for earthquake engineering of concrete dams
Earthquake analysis and design of concrete dams has progressed from static force methods based on seismic coefficients to modern procedures that are based on the dynamics of dam-water-foundation systems.Earthquake Engineering for Concrete Damsoffers a comprehensive, integrated view of this progress over the last fifty years. The book offers an understanding of the limitations of the various methods of dynamic analysis used in practice and develops modern methods that overcome these limitations.
This important book:
Develops procedures for dynamic analysis of two-dimensional and three-dimensional models of concrete dams Identifies system parameters that influence their response Demonstrates the effects of dam-water-foundation interaction on earthquake response Identifies factors that must be included in earthquake analysis of concrete dams Examines design earthquakes as defined by various regulatory bodies and organizations Presents modern methods for establishing design spectra and selecting ground motions Illustrates application of dynamic analysis procedures to the design of new dams and safety evaluation of existing dams. Written for graduate students, researchers, and professional engineers,Earthquake Engineering for Concrete Damsoffers a comprehensive view of the current procedures and methods for seismic analysis, design, and safety evaluation of concrete dams.
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This book deals with the design and optimization of the bucket elevator using the discrete element method (DEM). It describes the underlying scientific basis for the design of transport equipment using computer simulations and is focused on issues relevant to the industrial sector, mechanical engineering; and the transport, treatment, measurement, and storage of bulk materials. It presents solutions for mitigating bulk material supply chain interruptions due to process malfunctions and failures, utilizing research on monitoring and evaluating of the dynamic processes of particulate matter.
The aim of the book is to help readers new to the field with the design of innovative devices. Imparting practical information aimed at saving time and money in project design, the book is ideal for engineers, designers, and researchers concerned with all aspects of bulk materials.Introduces and explains fully the Discrete Element Method using measured values as inputs for the method;Shows whether calculated simulations and real measured values models can be used for design;Illustrates how to validate, calibrate, and optimize the dynamic processes of bulk elevators;Explains how to test transport and storage equipment before it is produced using dynamic simulation of material flow on transport lines, saving time and money.
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