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This book provides structural reliability and design students with
fundamental knowledge in structural reliability, as well as an
overview of the latest developments in the field of reliability
engineering. It addresses the mathematical formulation of
analytical tools for structural reliability assessment. This book
offers an accessible introduction to structural reliability
assessment and a solid foundation for problem-solving. It
introduces the topic and background, before dealing with
probability models for random variables. It then explores
simulation techniques for single random variables, random vectors
consisting of different variables, and stochastic processes. The
book addresses analytical approaches for structural reliability
assessment, including the reliability models for a single structure
and those for multiple structures, as well as discussing the
approaches for structural time-dependent reliability assessment in
the presence of discrete and continuous load processes. This book
delivers a timely and pedagogical textbook, including over 170
worked-through examples, detailed solutions, and analytical tools,
making it of interest to a wide range of graduate students,
researchers, and practitioners in the field of reliability
engineering.
This book provides structural reliability and design students with
fundamental knowledge in structural reliability, as well as an
overview of the latest developments in the field of reliability
engineering. It addresses the mathematical formulation of
analytical tools for structural reliability assessment. This book
offers an accessible introduction to structural reliability
assessment and a solid foundation for problem-solving. It
introduces the topic and background, before dealing with
probability models for random variables. It then explores
simulation techniques for single random variables, random vectors
consisting of different variables, and stochastic processes. The
book addresses analytical approaches for structural reliability
assessment, including the reliability models for a single structure
and those for multiple structures, as well as discussing the
approaches for structural time-dependent reliability assessment in
the presence of discrete and continuous load processes. This book
delivers a timely and pedagogical textbook, including over 170
worked-through examples, detailed solutions, and analytical tools,
making it of interest to a wide range of graduate students,
researchers, and practitioners in the field of reliability
engineering.
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