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Reliability Analysis of Dynamic Systems. Shanghai Jiao Tong University Press Aerospace Series

معرفی کتاب «Reliability Analysis of Dynamic Systems. Shanghai Jiao Tong University Press Aerospace Series» نوشتهٔ Bin Wu (Auth.)، منتشرشده توسط نشر Elsevier در سال 2013. این کتاب در فرمت pdf، زبان انگلیسی ارائه شده است.

Featuring aerospace examples and applications, Reliability Analysis of Dynamic Systems presents the very latest probabilistic techniques for accurate and efficient dynamic system reliability analysis. While other books cover more broadly the reliability techniques and challenges related to large systems, Dr Bin Wu presents a focused discussion of new methods particularly relevant to the reliability analysis of large aerospace systems under harmonic loads in the low frequency range. Developed and written to help you respond to challenges such as non-linearity of the failure surface, intensive computational costs and complexity in your dynamic system, Reliability Analysis of Dynamic Systems is a specific, detailed and application-focused reference for engineers, researchers and graduate students looking for the latest modeling solutions. The Shanghai Jiao Tong University Press Aerospace Series publishes titles that cover the latest advances in research and development in aerospace. Its scope includes theoretical studies, design methods, and real-world implementations and applications. The readership for the series is broad, reflecting the wide range of aerospace interest and application, but focuses on engineering. Forthcoming titles in the Shanghai Jiao Tong University Press Aerospace Series: Reliability Analysis of Dynamic Systems • Wake Vortex Control • Aeroacoustics: Fundamentals and Applications in Aeropropulsion Systems • Computational Intelligence in Aerospace Design • Unsteady Flow and Aeroelasticity in Turbomachinery Authored by a leading figure in Chinese aerospace with 20 years'professional experience in reliability analysis and engineering simulation. Offers solutions to the challenges of non-linearity, intensive computational cost and complexity in reliability assessment. Aerospace applications and examples used throughout to illustrate accuracy and efficiency achieved with new methods.

Featuring aerospace examples and applications, Reliability Analysis of Dynamic Systems presents the very latest probabilistic techniques for accurate and efficient dynamic system reliability analysis. While other books cover more broadly the reliability techniques and challenges related to large systems, Dr Bin Wu presents a focused discussion of new methods particularly relevant to the reliability analysis of large aerospace systems under harmonic loads in the low frequency range. Developed and written to help you respond to challenges such as non-linearity of the failure surface, intensive computational costs and complexity in your dynamic system, Reliability Analysis of Dynamic Systems is a specific, detailed and application-focused reference for engineers, researchers and graduate students looking for the latest modeling solutions.

The Shanghai Jiao Tong University Press Aerospace Series publishes titles that cover the latest advances in research and development in aerospace. Its scope includes theoretical studies, design methods, and real-world implementations and applications. The readership for the series is broad, reflecting the wide range of aerospace interest and application, but focuses on engineering.

Forthcoming titles in the Shanghai Jiao Tong University Press Aerospace Series:

Reliability Analysis of Dynamic Systems • Wake Vortex Control • Aeroacoustics: Fundamentals and Applications in Aeropropulsion Systems • Computational Intelligence in Aerospace Design • Unsteady Flow and Aeroelasticity in Turbomachinery



  • Authored by a leading figure in Chinese aerospace with 20 years’ professional experience in reliability analysis and engineering simulation.
  • Offers solutions to the challenges of non-linearity, intensive computational cost and complexity in reliability assessment.
  • Aerospace applications and examples used throughout to illustrate accuracy and efficiency achieved with new methods.
Content: Front-matter , Pages i,iii Copyright , Page iv Dedication , Page ix Preface , Pages xi-xii Acknowledgments , Page xiii Nomenclature , Pages xv-xvi List of Figures , Pages xvii-xix List of Tables , Page xxi Chapter 1 - Introduction , Pages 1-24 Chapter 2 - Technical Background , Pages 25-41 Chapter 3 - Theoretical Fundamentals of the Perturbation Approach , Pages 43-67 Chapter 4 - Application to a 2D System , Pages 69-118 Chapter 5 - Application to a 3D Helicopter Model , Pages 119-139 Chapter 6 - Complete Combined Approach , Pages 141-158 Chapter 7 - Conclusions and Future Work , Pages 159-163 Appendix I - Transforming Random Variables from Correlated to Uncorrelated , Page 165 Appendix II - Analytical Solution of HL Safety Index , Pages 167-168 Appendix III - Modal Analysis of Dynamic Systems [,] , Pages 169-172 Appendix IV - Multiple Force Analysis , Pages 173-177 Appendix V - Summary of the Defined Parameters , Pages 179-184 Appendix VI - Nodal Coordinates of the Helicopter Model , Page 185 Appendix VII - Element Connectivity and Properties of the Helicopter Model , Pages 187-189 References , Pages 191-197 Index , Pages 199-202 Featuring aerospace examples and applications, this title presents the very probabilistic techniques for accurate and efficient dynamic system reliability analysis. It presents a focused discussion of methods particularly relevant to the reliability analysis of large aerospace systems under harmonic loads in the low frequency range. This book presents the latest probabilistic techniques for accurate and efficient dynamic system reliability analysis. In particular, it focuses on large aerospace systems under harmonic loads in the low frequency range
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