Reliability Calculations with the Stochastic Finite Element

Reliability Calculations with the Stochastic Finite Element
Title Reliability Calculations with the Stochastic Finite Element PDF eBook
Author Wenhui Mo
Publisher Bentham Science Publishers
Pages 117
Release 2020-12-01
Genre Science
ISBN 9811485518

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Reliability Calculations with the Stochastic Finite Element presents different methods of reliability analysis for systems. Chapters explain methods used to analyze a number of systems such as single component maintenance system, repairable series system, rigid rotor balance, spring mechanics, gearbox design and optimization, and nonlinear vibration. The author proposes several established and new methods to solve reliability problems which are based on fuzzy systems, sensitivity analysis, Monte Carlo simulation, HL-RF methods, differential equations, and stochastic finite element processing, to name a few. This handbook is a useful update on reliability analysis for mechanical engineers and technical apprentices.

Reliability Assessment Using Stochastic Finite Element Analysis

Reliability Assessment Using Stochastic Finite Element Analysis
Title Reliability Assessment Using Stochastic Finite Element Analysis PDF eBook
Author Achintya Haldar
Publisher John Wiley & Sons
Pages 356
Release 2000-05-22
Genre Technology & Engineering
ISBN 9780471369615

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The first complete guide to using the Stochastic Finite Element Method for reliability assessment Unlike other analytical reliability estimation techniques, the Stochastic Finite Element Method (SFEM) can be used for both implicit and explicit performance functions, making it a particularly powerful and robust tool for today's engineer. This book, written by two pioneers in SFEM-based methodologies, shows how to use SFEM for the reliability analysis of a wide range of structures. It begins by reviewing essential risk concepts, currently available risk evaluation procedures, and the use of analytical and sampling methods in estimating risk. Next, it introduces SFEM evaluation procedures, with detailed coverage of displacement-based and stress-based deterministic finite element approaches. Linear, nonlinear, static, and dynamic problems are considered separately to demonstrate the robustness of the methods. The risk or reliability estimation procedure for each case is presented in different chapters, with theory complemented by a useful series of examples. Integrating advanced concepts in risk-based design, finite elements, and mechanics, Reliability Assessment Using Stochastic Finite Element Analysis is vital reading for engineering professionals and students in all areas of the field.

Stochastic Finite Element Methods

Stochastic Finite Element Methods
Title Stochastic Finite Element Methods PDF eBook
Author Vissarion Papadopoulos
Publisher Springer
Pages 151
Release 2017-10-28
Genre Science
ISBN 3319645285

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The book provides a self-contained treatment of stochastic finite element methods. It helps the reader to establish a solid background on stochastic and reliability analysis of structural systems and enables practicing engineers to better manage the concepts of analysis and design in the presence of uncertainty. The book covers the basic topics of computational stochastic mechanics focusing on the stochastic analysis of structural systems in the framework of the finite element method. The target audience primarily comprises students in a postgraduate program specializing in structural engineering but the book may also be beneficial to practicing engineers and research experts alike.

Uncertain Analysis in Finite Elements Models

Uncertain Analysis in Finite Elements Models
Title Uncertain Analysis in Finite Elements Models PDF eBook
Author Wenhui Mo
Publisher Bentham Science Publishers
Pages 178
Release 2022-08-31
Genre Science
ISBN 9815079077

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This book explains uncertainty analysis for finite elements and general nonlinear problems. It starts with the fundamentals of the topic and progresses to complex methods through 9 chapters. Each chapter focuses on a specific, relevant topic and provides information in a structured reading format for advanced learners. The author explains different models relevant to the topic where applicable, in an effort to cover the diverse aspects of mathematical analysis. Topics covered in the book include: - Nonlinear stochastic finite element methods - Reliability calculations - Static analysis of interval finite element - Linear and nonlinear vibration analysis - Stochastic, random, fuzzy and mixed fields - Mixed finite element analysis Uncertainty Analysis in Finite Elements Models is an ideal reference for advanced courses in mathematical analysis and engineering that require students to understand the basics of uncertainty analysis and basic reliability calculations.

Stochastic finite element methods and reliability : a state-of-the-art report

Stochastic finite element methods and reliability : a state-of-the-art report
Title Stochastic finite element methods and reliability : a state-of-the-art report PDF eBook
Author Bruno Sudret
Publisher
Pages 179
Release 2000
Genre Finite element method
ISBN

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Stochastic finite element method for the reliability analysis of nonlinear frames with PR connections (PHD).

Stochastic finite element method for the reliability analysis of nonlinear frames with PR connections (PHD).
Title Stochastic finite element method for the reliability analysis of nonlinear frames with PR connections (PHD). PDF eBook
Author Liwei Gao
Publisher
Pages 0
Release 1994
Genre
ISBN

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Finite Element Methods for Structures with Large Stochastic Variations

Finite Element Methods for Structures with Large Stochastic Variations
Title Finite Element Methods for Structures with Large Stochastic Variations PDF eBook
Author Isaac Elishakoff
Publisher Oxford University Press, USA
Pages 282
Release 2003
Genre Language Arts & Disciplines
ISBN 9780198526315

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The finite element method (FEM) can be successfully applied to various field problems in solid mechanics, fluid mechanics and electrical engineering. This text discusses finite element methods for structures with large stochastic variations.