An Introduction To Seismic Building Shear Walls


An Introduction To Seismic Building Shear Walls
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An Introduction To Seismic Building Shear Walls


An Introduction To Seismic Building Shear Walls
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Author : J. Paul Guyer, P.E., R.A.
language : en
Publisher: Guyer Partners
Release Date : 2018-02-04

An Introduction To Seismic Building Shear Walls written by J. Paul Guyer, P.E., R.A. and has been published by Guyer Partners this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-02-04 with Technology & Engineering categories.


Introductory technical guidance for civil and structural engineers interested in design of buildings to resist seismic forces. Here is what is discussed: 1. INTRODUCTION 2 DESIGN FORCES 3. WALL COMPONENTS 4. IN-PLANE EFFECTS 5. OUT-OF-PLANE EFFECTS 6. CAST-IN-PLACE CONCRETE SHEAR WALLS 7. MASONRY SHEAR WALLS 8. WOOD STUD SHEAR WALLS 9. STEEL STUD SHEAR WALLS.



An Introduction To Seismic Building Shear Walls


An Introduction To Seismic Building Shear Walls
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Author : J. Paul Guyer
language : en
Publisher: Independently Published
Release Date : 2018-03-07

An Introduction To Seismic Building Shear Walls written by J. Paul Guyer and has been published by Independently Published this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-03-07 with Technology & Engineering categories.


This publication provides introductory technical guidance for civil engineers, structural engineers and other professional engineers and construction managers interested in learning about seismic shear walls for buildings. Here is what is discussed: 1. INTRODUCTION, 2 DESIGN FORCES, 3. WALL COMPONENTS, 4. IN-PLANE EFFECTS, 5. OUT-OF-PLANE EFFECTS, 6. CAST-IN-PLACE CONCRETE SHEAR WALLS, 7. MASONRY SHEAR WALLS, 8. WOOD STUD SHEAR WALLS, 9. STEEL STUD SHEAR WALLS



An Introduction To Seismic Building Shear Walls


An Introduction To Seismic Building Shear Walls
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Author : J. Paul Guyer
language : en
Publisher: Createspace Independent Publishing Platform
Release Date : 2016-06-18

An Introduction To Seismic Building Shear Walls written by J. Paul Guyer and has been published by Createspace Independent Publishing Platform this book supported file pdf, txt, epub, kindle and other format this book has been release on 2016-06-18 with categories.


This publication provides introductory technical guidance for civil engineers, structural engineers and other professional engineers and construction managers interested in seismic shear walls for buildings. Here is what is discussed: 1. INTRODUCTION, 2 DESIGN FORCES, 3. WALL COMPONENTS, 4. IN-PLANE EFFECTS, 5. OUT-OF-PLANE EFFECTS, 6. CAST-IN-PLACE CONCRETE SHEAR WALLS, 7. MASONRY SHEAR WALLS, 8. WOOD STUD SHEAR WALLS, 9. STEEL STUD SHEAR WALLS



Seismic Design Of Building Structures


Seismic Design Of Building Structures
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Author : Michael R. Lindeburg
language : en
Publisher: Professional Publications Incorporated
Release Date : 1994

Seismic Design Of Building Structures written by Michael R. Lindeburg and has been published by Professional Publications Incorporated this book supported file pdf, txt, epub, kindle and other format this book has been release on 1994 with Education categories.


- Solid review of seismic design exam topics- More than 100 practice problems- Includes step-by-step solutions Copyright © Libri GmbH. All rights reserved.



An Introduction To Seismic Design Of Buildings


An Introduction To Seismic Design Of Buildings
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Author : J. Paul Guyer
language : en
Publisher: Independently Published
Release Date : 2017-07-23

An Introduction To Seismic Design Of Buildings written by J. Paul Guyer and has been published by Independently Published this book supported file pdf, txt, epub, kindle and other format this book has been release on 2017-07-23 with Technology & Engineering categories.


This publication provides introductory technical guidance for civil engineers, structural engineers and other professional engineers interested in seismic design of buildings. Here is what is discussed: 1. SHEAR WALLS 2. ANALYSIS PROCEDURES 3. APPLICATION OF CRITERIA 4. STEEL FRAMES 5. BASIC CONCEPTS 6. NON-STRUCTURAL BUILDING COMPONENTS 7. GROUND MOTION BACKGROUND DATA 8. GROUND MOTION AND GEOLOGICAL HAZARDS ASSESSMENT 9. ISOLATION AND ENERGY DISSIPATION 10. NOMENCLATURE.



Handbook For The Seismic Evaluation Of Existing Buildings


Handbook For The Seismic Evaluation Of Existing Buildings
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Author : Building Seismic Safety Council (U.S.)
language : en
Publisher: DIANE Publishing
Release Date : 1992

Handbook For The Seismic Evaluation Of Existing Buildings written by Building Seismic Safety Council (U.S.) and has been published by DIANE Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 1992 with Science categories.


Provides engineers involved with the seismic evaluation of existing buildings with guidance concerning the potential earthquake related risk to human life posed by a building or building component.



Nehrp Recommended Provisions For Seismic Regulations For New Buildings And Other Structures


Nehrp Recommended Provisions For Seismic Regulations For New Buildings And Other Structures
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Author : Eugene Zeller
language : en
Publisher: DIANE Publishing
Release Date : 2001-06

Nehrp Recommended Provisions For Seismic Regulations For New Buildings And Other Structures written by Eugene Zeller and has been published by DIANE Publishing this book supported file pdf, txt, epub, kindle and other format this book has been release on 2001-06 with Technology & Engineering categories.


Chap. 1 sets forth the general require. for applying the analysis & design provisions contained in Chap. 2 through 12 of the Nat. Earthquake Hazards Reduction Prog. Recommended Provisions for Seismic Reg's. for New Bldgs. & Other Structures. It is similar to what might be incorporated in a code as administrative regulations. Also includes info. on: quality assurance; ground motion; structural design criteria; architectural, mechanical, & electrical components; seismically isolated structures; & design require. for foundation, steel structure, concrete structure, composite steel & concrete structure, masonry structure, wood structure, & non-building structures. Illustrated.



Displacement Based Seismic Design Of Reinforced Concrete Buildings


Displacement Based Seismic Design Of Reinforced Concrete Buildings
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Author : fib Fédération internationale du béton
language : en
Publisher: fib Fédération internationale du béton
Release Date : 2003

Displacement Based Seismic Design Of Reinforced Concrete Buildings written by fib Fédération internationale du béton and has been published by fib Fédération internationale du béton this book supported file pdf, txt, epub, kindle and other format this book has been release on 2003 with Technology & Engineering categories.


A brief summary of the history of seismic design as given in chapter 1, indicates that initially design was purely based on strength or force considerations. When the importance of displacement, however, became better appreciated, it was attempted to modify the existing force-based approach in order to include considerations of displacement, rather than to totally reconsider the procedure on a more rational basis. In the last decade, then, several researchers started pointing out this inconsistency, proposing displacement-based approaches for earthquake engineering evaluation and design, with the aim of providing improved reliability in the engineering process by more directly relating computed response and expected structural performance. The main objective of this report is to summarize, critically review and compare the displacement - based approaches proposed in the literature, thus favouring code implementation and practical use of rational and reliable methods. Chapter 2 Seismic performance and design objectives of this report introduces concepts of performance levels, seismic hazard representation, and the coupling of performance and hazard to define performance objectives. In fact, for displacement analysis to be relevant in the context of performance-based design, the structural engineer must select appropriate performance levels and seismic loadings. A critical review of some engineering limit states appropriate to the different performance levels is therefore proposed. In chapter 3 Conceptual basis for displacement-based earthquake resistant design, the fundamental principles associated with displacement of the ground during an earthquake and the effects, in terms of displacement, in the structure, are reviewed. The historical development guides the presentation with a review of general linear and nonlinear structural dynamics principles, general approaches to estimate displacement, for both ground and structure, and finally a general presentation of the means to measure and judge the appropriateness of the displacements of the structure in section. Chapter 4 Approaches and procedures for displacement-based design can be somehow considered the fundamental part of the report, since a critical summary of the displacement - based approaches proposed by different researchers is presented there. Displacement - based design may require specific characterization of the input ground motion, a topic addressed in Chapter 5 Seismic input. In general, various pertinent definitions of input motion for non-code format analysis are included, while peak ground parameters necessary for code base shear equations are only addressed as needed for the definition of motion for analysis. Chapter 6 Displacement capacity of members and systems addresses the fundamental problem of evaluating the inelastic displacement capacity of reinforced concrete members and realistic values of their effective cracked stiffness at yielding, including effects of shear and inclined cracking, anchorage slip, bar buckling and of load cycling. In Chapter 7 Application and evaluation of displacement-based approaches, some of the many different displacement based design procedures briefly introduced in Chapter 4 are applied to various case studies, identifying and discussing the difficulties a designer may encounter when trying to use displacement based design. Results for five different case studies designed in accordance with eight different displacement based design methods are presented. Although in general case studies are considered a useful but marginal part of a state of the art document, in this case it has to be noted that chapter 7 is possibly the most innovative and fundamental part of the whole report. The conclusions of chapter 7 are the fundamental and essential conclusions of the document and allow foreseeing a bright future for displacement - based design approaches. The state-of-art report has been elaborated over a period of 4 years by Task Group 7.2 Displacement-based design and assessment of fib Commission 7Seismic design, a truly international team of experts, representing the expertise and experience of all the important seismic regions of the world. In October 2002 the final draft of the Bulletin was presented to the public during the 1st fibCongress in Osaka. It was also there that it was approved by fib Commission 7Seismic Design.



Earthquake Resistant Buildings


Earthquake Resistant Buildings
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Author : M.Y.H. Bangash
language : en
Publisher: Springer Science & Business Media
Release Date : 2011-08-19

Earthquake Resistant Buildings written by M.Y.H. Bangash and has been published by Springer Science & Business Media this book supported file pdf, txt, epub, kindle and other format this book has been release on 2011-08-19 with Technology & Engineering categories.


This concise work provides a general introduction to the design of buildings which must be resistant to the effect of earthquakes. A major part of this design involves the building structure which has a primary role in preventing serious damage or structural collapse. Much of the material presented in this book examines building structures. Due to the recent discovery of vertical components, it examines not only the resistance to lateral forces but also analyses the disastrous influence of vertical components. The work is written for Practicing Civil, Structural, and Mechanical Engineers, Seismologists and Geoscientists. It serves as a knowledge source for graduate students and their instructors.



Concrete Buildings In Seismic Regions Second Edition


Concrete Buildings In Seismic Regions Second Edition
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Author : George G. Penelis
language : en
Publisher: CRC Press
Release Date : 2018-10-25

Concrete Buildings In Seismic Regions Second Edition written by George G. Penelis and has been published by CRC Press this book supported file pdf, txt, epub, kindle and other format this book has been release on 2018-10-25 with Technology & Engineering categories.


Reinforced concrete (R/C) is one of the main building materials used worldwide, and an understanding of its structural performance under gravity and seismic loads, albeit complex, is crucial for the design of cost effective and safe buildings. Concrete Buildings in Seismic Regions comprehensively covers of all the analysis and design issues related to the design of reinforced concrete buildings under seismic action. It is suitable as a reference to the structural engineer dealing with specific problems during the design process and also for undergraduate and graduate structural, concrete and earthquake engineering courses. This revised edition provides new and significantly developed coverage of seismic isolation and passive devices, and coverage of recent code modifications as well as notes on future developments of standards. It retains an overview of structural dynamics, the analysis and design of new R/C buildings in seismic regions, post-earthquake damage evaluation, pre-earthquake assessment of buildings and retrofitting procedures, and several numerical examples. The book outlines appropriate structural systems for many types of buildings, explores recent developments, and covers the last two decades of analysis, design, and earthquake engineering. It specifically addresses seismic demand issues and the basic issues of structural dynamics, considers the "capacity" of structural systems to withstand seismic effects in terms of strength and deformation, and highlights the assessment of existing R/C buildings under seismic action. All of the material has been developed to fit a modern seismic code and offers in-depth knowledge of the background upon which the code rules are based. It complies with European Codes of Practice for R/C buildings in seismic regions, and includes references to current American Standards for seismic design.