Introduction To Safety And Reliability Of Structures


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Introduction to Safety and Reliability of Structures


Introduction to Safety and Reliability of Structures

Author: Jörg Schneider

language: en

Publisher: IABSE

Release Date: 2006


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Structural engineers devote all their effort to meeting society¿s expectations efficiently. Engineers and scientists work together to develop solutions to structural problems. Given that nothing is absolutely and eternally safe, the goal is to attain an acceptably small probability of failure for a structure. Reliability analysis is part of the science and practice of engineering today, not only with respect to the safety of structures, but also for questions of serviceability and other requirements of technical systems that might be impacted by some probability. The present volume takes a rather broad approach to the safety of structures and related topics. It treats the underlying concepts of risk and safety and introduces the reader to the main concepts and strategies for dealing with hazards. A chapter is devoted to the processing of data into information that is relevant for applying reliability theory. The two main chapters deal with the modelling of structures and with methods of reliability analysis. Another chapter focuses on problems related to establishing target reliabilities, assessing existing structures, and on effective strategies against human error. The Appendix supports the application of the methods proposed and refers readers to a number of related computer programs.

Introduction to Safety and Reliability of Structures


Introduction to Safety and Reliability of Structures

Author: Jörg Schneider (Prof.)

language: en

Publisher:

Release Date: 2017


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Structural Reliability Methods


Structural Reliability Methods

Author: O. Ditlevsen

language: en

Publisher: Wiley

Release Date: 1996-06-19


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This book addresses probabilistic methods for the evaluation of structural reliability, including the theoretical basis of these methods. Partial safety factor codes under current practice are briefly introduced and discussed. A probabilistic code format for obtaining a formal reliability evaluation system that catches the most essential features of the nature of the uncertainties and their interplay is then gradually developed. The concepts presented are illustrated by numerous examples throughout the text. The modular approach of the book allows the reader to navigate through the different stages of the methods.