Seismic Design Of Industrial Facilities

Seismic Design Of Industrial Facilities Book in PDF, ePub and Kindle version is available to download in english. Read online anytime anywhere directly from your device. Click on the download button below to get a free pdf file of Seismic Design Of Industrial Facilities book. This book definitely worth reading, it is an incredibly well-written.

Seismic Design of Industrial Facilities

Author : Sven Klinkel,Christoph Butenweg,Gao Lin,Britta Holtschoppen
Publisher : Springer Science & Business Media
Page : 642 pages
File Size : 51,8 Mb
Release : 2013-09-04
Category : Architecture
ISBN : 9783658028107

Get Book

Seismic Design of Industrial Facilities by Sven Klinkel,Christoph Butenweg,Gao Lin,Britta Holtschoppen Pdf

Seismic Design of Industrial Facilities demands a deep knowledge on the seismic behaviour of the individual structural and non-structural components of the facility, possible interactions and last but not least the individual hazard potential of primary and secondary damages. From 26.-27. September 2013 the International Conference on Seismic Design of Industrial Facilities firstly addresses this broad field of work and research in one specialized conference. It brings together academics, researchers and professional engineers in order to discuss the challenges of seismic design for new and existing industrial facilities and to compile innovative current research. This volume contains 50 contributions to the SeDIF-Conference covering the following topics with respect to the specific conditions of plant design: · International building codes and guidelines on the seismic design of industrial facilities · Seismic design of non-structural components · Seismic design of silos and liquid-filled tanks - Soil-structure-interaction effects · Seismic safety evaluation, uncertainties and reliability analysis · Innovative seismic protection systems · Retrofitting The SeDIF-Conference is hosted by the Chair of Structural Statics and Dynamics of RWTH Aachen University, Germany, in cooperation with the Institute for Earthquake Engineering of the Dalian University of Technology, China.

Seismic Design of Industrial Facilities 2020

Author : Christoph Butenweg,Benno Hoffmeister,Britta Holtschoppen,Sven Klinkel,Julia Rosin,Tim (Hrsg. Schmitt
Publisher : Unknown
Page : 128 pages
File Size : 44,5 Mb
Release : 2020-03-02
Category : Electronic
ISBN : 386359729X

Get Book

Seismic Design of Industrial Facilities 2020 by Christoph Butenweg,Benno Hoffmeister,Britta Holtschoppen,Sven Klinkel,Julia Rosin,Tim (Hrsg. Schmitt Pdf

Seismic Evaluation and Design of Petrochemical and Other Industrial Facilities

Author : American Society of Civil Engineers. Task Committee on Seismic Evaluation and Design of Petrochemical Facilities
Publisher : Unknown
Page : 356 pages
File Size : 43,7 Mb
Release : 2020
Category : Earthquake resistant design
ISBN : 078441548X

Get Book

Seismic Evaluation and Design of Petrochemical and Other Industrial Facilities by American Society of Civil Engineers. Task Committee on Seismic Evaluation and Design of Petrochemical Facilities Pdf

"This report offers practical recommendations regarding the design and safety of new and existing petrochemical facilities during and following an earthquake"--

Earthquake Analysis and Design of Industrial Structures and Infra-structures

Author : Indrajit Chowdhury,Shambhu P. Dasgupta
Publisher : Springer
Page : 1050 pages
File Size : 55,7 Mb
Release : 2018-10-06
Category : Science
ISBN : 9783319908328

Get Book

Earthquake Analysis and Design of Industrial Structures and Infra-structures by Indrajit Chowdhury,Shambhu P. Dasgupta Pdf

Despite significant development in earthquake analysis and design in the last 50 years or more, different structures related to industry, infra structure and human habitats get destroyed with monotonic regularity under strong motion earthquake. Even the recent earthquake in Mexico in September 2017 killed a number of people and destroyed national assets amounting to hundreds of millions of dollars. Careful evaluation of the technology reveals that, despite significant development in earthquake engineering, most of the books that are available on the market for reference are primarily focused towards buildings and framed type structures. It is accepted that during an earthquake it is buildings that get destroyed most and has been the biggest killers of human life. Yet, there are a number of structures like retaining walls, water tanks, Bunkers, silos, tall chimneys, bridge piers etc that are equally susceptible to earthquake, and if damaged can cause serious trouble and great economic distress. Unfortunately, many of these systems are analyzed by techniques that are too simplified, unrealistic/obsolete or nothing is done about them, ignoring completely the seismic effects, as no guidelines exist for their analysis/design (like seismic analysis of counterfort retaining walls or dynamic pressures on bunker walls etc.). This highly informative book addresses many of these items for which there exists a significant gap in technology and yet remain an important life line of considerable commercial significance.The book is an outcome of authors' academic research and practice across the four continents (USA, Europe, Africa and Asia) in the last thirty two years, where many of these technologies have been put in practice, that got tested against real time earthquakes. All methods presented herein have been published previously in peer reviewed research journals and international conferences of repute before being put to practice. Professionals working in international EPC and consulting engineering firms, graduates taking advanced courses in earthquake engineering, doctoral scholars pursuing research in earthquake engineering in the area of dynamic soil structure interaction (DSSI) and advanced under graduates wanting to self-learn and update themselves on earthquake analysis and design are greatly benefited from this book.

Performance-Based Seismic Design of Concrete Structures and Infrastructures

Author : Plevris, Vagelis,Kremmyda, Georgia,Fahjan, Yasin
Publisher : IGI Global
Page : 320 pages
File Size : 45,9 Mb
Release : 2017-02-14
Category : Technology & Engineering
ISBN : 9781522520900

Get Book

Performance-Based Seismic Design of Concrete Structures and Infrastructures by Plevris, Vagelis,Kremmyda, Georgia,Fahjan, Yasin Pdf

Solid design and craftsmanship are a necessity for structures and infrastructures that must stand up to natural disasters on a regular basis. Continuous research developments in the engineering field are imperative for sustaining buildings against the threat of earthquakes and other natural disasters. Performance-Based Seismic Design of Concrete Structures and Infrastructures is an informative reference source on all the latest trends and emerging data associated with structural design. Highlighting key topics such as seismic assessments, shear wall structures, and infrastructure resilience, this is an ideal resource for all academicians, students, professionals, and researchers that are seeking new knowledge on the best methods and techniques for designing solid structural designs.

Guidelines for Seismic Evaluation and Design of Petrochemical Facilities

Author : American Society of Civil Engineers. Task Committee on Seismic Evaluation and Design of Petrochemical Facilities
Publisher : American Society of Civil Engineers
Page : 298 pages
File Size : 50,5 Mb
Release : 1997
Category : Technology & Engineering
ISBN : UOM:39015035293318

Get Book

Guidelines for Seismic Evaluation and Design of Petrochemical Facilities by American Society of Civil Engineers. Task Committee on Seismic Evaluation and Design of Petrochemical Facilities Pdf

Topics include design and evaluation philosophy, seismic hazards such as ground shaking, fault rupture, and tsunamis, analysis and load definition, primary structural design criteria and considerations, walkdown evaluations of existing facilities, design and evaluation of tanks at grade, and retrofit design and procedures for seismically deficit structures.

Seismic Design for Buildings

Author : United States. Department of Defense. Tri-Service Seismic Design Committee
Publisher : Unknown
Page : 464 pages
File Size : 45,7 Mb
Release : 1973
Category : Buildings
ISBN : UVA:X002398805

Get Book

Seismic Design for Buildings by United States. Department of Defense. Tri-Service Seismic Design Committee Pdf

Earthquake-Resistant Structures

Author : Mohiuddin Ali Khan
Publisher : Butterworth-Heinemann
Page : 437 pages
File Size : 44,5 Mb
Release : 2013-03-18
Category : Technology & Engineering
ISBN : 9780080949444

Get Book

Earthquake-Resistant Structures by Mohiuddin Ali Khan Pdf

Earthquake engineering is the ultimate challenge for structural engineers. Even if natural phenomena involve great uncertainties, structural engineers need to design buildings, bridges, and dams capable of resisting the destructive forces produced by them. These disasters have created a new awareness about the disaster preparedness and mitigation. Before a building, utility system, or transportation structure is built, engineers spend a great deal of time analyzing those structures to make sure they will perform reliably under seismic and other loads. The purpose of this book is to provide structural engineers with tools and information to improve current building and bridge design and construction practices and enhance their sustainability during and after seismic events. In this book, Khan explains the latest theory, design applications and Code Provisions. Earthquake-Resistant Structures features seismic design and retrofitting techniques for low and high raise buildings, single and multi-span bridges, dams and nuclear facilities. The author also compares and contrasts various seismic resistant techniques in USA, Russia, Japan, Turkey, India, China, New Zealand, and Pakistan. Written by a world renowned author and educator Seismic design and retrofitting techniques for all structures Tools improve current building and bridge designs Latest methods for building earthquake-resistant structures Combines physical and geophysical science with structural engineering

Safety Design Criteria for Industrial Plants

Author : Antonio Naviglio,Maurizio Cumo
Publisher : CRC Press
Page : 253 pages
File Size : 51,5 Mb
Release : 2019-07-17
Category : Technology & Engineering
ISBN : 9781000694437

Get Book

Safety Design Criteria for Industrial Plants by Antonio Naviglio,Maurizio Cumo Pdf

First published in 1989: A generalization and rationalization of the main safety design criteria and safety analysis methodologies developed in nuclear aerospace and chemical engineering is presented in two comprehensive volumes. The concepts of risk, damage and probability of hazardous events are introduced. Risks connected with the use of main harmful substances are quantitatively identified. The methods employed for the safety analyses are described, together with the methodologies for seismic analyses and for Probabilistic Risk Assessment. The main criteria for protection of plants from internal and external events are introduced and described. In addition, the problem of emergency planning is considered. This book is particularly intended for engineers working in the nuclear field, in chemical industries, in industrial plants, in fuel storages and with high-risk substances, as well as for engineers operating in licensing organizations and for inspectors.

Displacement-based Seismic Design of Structures

Author : M. J. N. Priestley,Gian Michele Calvi,Mervyn J. Kowalsky
Publisher : Iuss Press
Page : 750 pages
File Size : 41,5 Mb
Release : 2007
Category : Science
ISBN : STANFORD:36105121441237

Get Book

Displacement-based Seismic Design of Structures by M. J. N. Priestley,Gian Michele Calvi,Mervyn J. Kowalsky Pdf

Displacement-Based Seismic Design of Structures is a book primarily directed towards practicing structural designers who are interested in applying performance-based concepts to seismic design. Since much of the material presented in the book has not been published elsewhere, it will also be of considerable interest to researchers, and to graduate and upper-level undergraduate students of earthquake engineering who wish to develop a deeper understanding of how design can be used to control seismic response. The design philosophy is based on determination of the optimum structural strength to achieve a given performance limit state, related to a defined level of damage, under a specified level of seismic intensity. Emphasis is also placed on how this strength is distributed through the structure. This takes two forms: methods of structural analysis and capacity design. It is shown that equilibrium considerations frequently lead to a more advantageous distribution of strength than that resulting from stiffness considerations. Capacity design considerations have been re-examined, and new and more realistic design approaches are presented to insure against undesirable modes of inelastic deformation. The book considers a wide range of structural types, including separate chapters on frame buildings, wall buildings, dual wall/frame buildings, masonry buildings, timber structures, bridges, structures with isolation or added damping devices, and wharves. These are preceded by introductory chapters discussing conceptual problems with current force-based design, seismic input for displacement-based design, fundamentals of direct displacement-based design, and analytical tools appropriate for displacement-based design. The final two chapters adapt the principles of displacement-based seismic design to assessment of existing structures, and present the previously developed design information in the form of a draft building code. The text is illustrated by copious worked design examples (39 in all), and analysis aids are provided in the form of a CD containing three computer programs covering moment-curvature analysis (Cumbia), linear-element-based inelastic time-history analysis (Ruaumoko), and a general fibre-element dynamic analysis program (SeismoStruct). The design procedure developed in this book is based on a secant-stiffness (rather than initial stiffness) representation of structural response, using a level of damping equivalent to the combined effects of elastic and hysteretic damping. The approach has been fully verified by extensive inelastic time history analyses, which are extensively reported in the text. The design method is extremely simple to apply, and very successful in providing dependable and predictable seismic response. Authors Bios M.J.N.Priestley Nigel Priestley is Professor Emeritus of the University of California San Diego, and co-Director of the Centre of Research and Graduate Studies in Earthquake Engineering and Engineering Seismology (ROSE School), Istituto Universitario di Studi Superiori (IUSS), Pavia, Italy. He has published more than 450 papers, mainly on earthquake engineering, and received numerous awards for his research. He holds honorary doctorates from ETH, Zurich, and Cujo, Argentina. He is co-author of two previous seismic design books “Seismic Design of Concrete and Masonry Buildings” and “Seismic Design and Retrofit of Bridges”, that are considered standard texts on the subjects. G.M.Calvi Michele Calvi is Professor of the University of Pavia and Director of the Centre of Research and Graduate Studies in Earthquake Engineering and Engineering Seismology (ROSE School), Istituto Universitario di Studi Superiori (IUSS) of Pavia. He has published more than 200 papers and is co-author of the book “Seismic Design and Retrofit of Bridges”, that is considered a standard text on the subject, has been involved in important construction projects worldwide, such as the Rion Bridge in Greece and the upgrading of the Bolu Viaduct in Turkey, and is coordinating several international research projects. M.J.Kowalsky Mervyn Kowalsky is Associate Professor of Structural Engineering in the Department of Civil, Construction, and Environmental Engineering at North Carolina State University and a member of the faculty of the ROSE School. His research, which has largely focused on the seismic behaviour of structures, has been supported by the National Science Foundation, the North Carolina and Alaska Departments of Transportation, and several industrial organizations. He is a registered Professional Engineer in North Carolina and an active member of several national and international committees on Performance-Based Seismic Design.

Progresses in European Earthquake Engineering and Seismology

Author : Radu Vacareanu,Constantin Ionescu
Publisher : Springer Nature
Page : 502 pages
File Size : 46,6 Mb
Release : 2022-08-24
Category : Science
ISBN : 9783031151040

Get Book

Progresses in European Earthquake Engineering and Seismology by Radu Vacareanu,Constantin Ionescu Pdf

This book encompasses the most challenging topics in earthquake engineering and seismology aiming at seismic risk reduction and reveals the outstanding progresses made in Europe in the past four years. Earthquakes pose a significant threat to countries around the world. But, equipped with the right knowledge and tools, engineers and seismologists can support policy and decision makers and building officials in creating a safer future for all of us. In this paradigm, the Third European Conference on Earthquake Engineering and Seismology (3ECEES) is organized in Bucharest (Romania) in September 2022 by the Romanian Association for Earthquake Engineering, Technical University of Civil Engineering of Bucharest and National Institute for Earth Physics. This outstanding scientific event is the third in a series started in 2006 in Geneva, Switzerland and continued in 2014 in Istanbul, Turkey. The papers included in this book are written by the most prominent contemporary European scholars in the two-folded fields of 3ECEES. The Distinguished Nicholas Ambraseys, along with 28 invited lectures providing the best knowledge in the fields of earthquake engineering and seismology, are shared with the general readership of this book. The book is organized in three parts, as follows: (1) Seismicity, engineering seismology and seismic hazard, (2) Seismic risk assessment and mitigation, and (3) Structural earthquake engineering. The 29 contributed papers for this book are shared among these three parts almost equally. Chapter “The Challenge of the Integrated Seismic Strengthening and Environmental Upgrading of Existing Buildings” is available open access under a Creative Commons Attribution 4.0 International License via link.springer.com.

Seismic Analysis of Structures and Equipment

Author : Praveen K. Malhotra
Publisher : Springer Nature
Page : 280 pages
File Size : 44,7 Mb
Release : 2020-11-24
Category : Science
ISBN : 9783030578589

Get Book

Seismic Analysis of Structures and Equipment by Praveen K. Malhotra Pdf

This book describes methods used to estimate forces and deformations in structures during future earthquakes. It synthesizes the topics related to ground motions with those related to structural response and, therefore, closes the gap between geosciences and engineering. Requiring no prior knowledge, the book elucidates confusing concepts related to ground motions and structural response and enables the reader to select a suitable analysis method and implement a cost‐effective seismic design. Presents lucid, accessible descriptions of key concepts in ground motions and structural response and easy to follow descriptions of methods used in seismic analysis; Explains the roles of strength, deformability, and damping in seismic design; Reinforces concepts with real‐world examples; Stands as a ready reference for performance‐based/risk-based seismic design, providing guidance for achieving a cost-effective seismic design.

Seismic Isolation, Structural Health Monitoring, and Performance Based Seismic Design in Earthquake Engineering

Author : Azer A. Kasimzade,Erdal Şafak,Carlos E. Ventura,Farzad Naeim,Yoichi Mukai
Publisher : Springer
Page : 364 pages
File Size : 42,9 Mb
Release : 2018-08-13
Category : Technology & Engineering
ISBN : 9783319931579

Get Book

Seismic Isolation, Structural Health Monitoring, and Performance Based Seismic Design in Earthquake Engineering by Azer A. Kasimzade,Erdal Şafak,Carlos E. Ventura,Farzad Naeim,Yoichi Mukai Pdf

This book features chapters based on selected presentations from the International Congress on Advanced Earthquake Resistance of Structures, AERS2016, held in Samsun, Turkey, from 24 to 28 October 2016. It covers the latest advances in three widely popular research areas in Earthquake Engineering: Performance-Based Seismic Design, Seismic Isolation Systems, and Structural Health Monitoring. The book shows the vulnerability of high-rise and seismically isolated buildings to long periods of strong ground motions, and proposes new passive and semi-active structural seismic isolation systems to protect against such effects. These systems are validated through real-time hybrid tests on shaking tables. Structural health monitoring systems provide rapid assessment of structural safety after an earthquake and allow preventive measures to be taken, such as shutting down the elevators and gas lines, before damage occurs. Using the vibration data from instrumented tall buildings, the book demonstrates that large, distant earthquakes and surface waves, which are not accounted for in most attenuation equations, can cause long-duration shaking and damage in tall buildings. The overview of the current performance-based design methodologies includes discussions on the design of tall buildings and the reasons common prescriptive code provisions are not sufficient to address the requirements of tall-building design. In addition, the book explains the modelling and acceptance criteria associated with various performance-based design guidelines, and discusses issues such as selection and scaling of ground motion records, soil-foundation-structure interaction, and seismic instrumentation and peer review needs. The book is of interest to a wide range of professionals in earthquake engineering, including designers, researchers, and graduate students.

Seismic Design Methods for Steel Building Structures

Author : George A. Papagiannopoulos,George D. Hatzigeorgiou,Dimitri E. Beskos
Publisher : Springer
Page : 0 pages
File Size : 45,8 Mb
Release : 2022-12-15
Category : Science
ISBN : 3030806898

Get Book

Seismic Design Methods for Steel Building Structures by George A. Papagiannopoulos,George D. Hatzigeorgiou,Dimitri E. Beskos Pdf

The book, after two introductory chapters on seismic design principles and structural seismic analysis methods, proceeds with the detailed description of seismic design methods for steel building structures. These methods include all the well-known methods, like force-based or displacement-based methods, plus some other methods developed by the present authors or other authors that have reached a level of maturity and are applicable to a large class of steel building structures. For every method, detailed practical examples and supporting references are provided in order to illustrate the methods and demonstrate their merits. As a unique feature, the present book describes not just one, as it is the case with existing books on seismic design of steel structures, but various seismic design methods including application examples worked in detail. The book is a valuable source of information, not only for MS and PhD students, but also for researchers and practicing engineers engaged with the design of steel building structures.