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Research Article
Apr 28, 2022

Envelope Method for Time- and Space-Dependent Reliability Prediction

Publication: ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering
Volume 8, Issue 4

Abstract

Reliability can be predicted by a limit-state function, which may vary with time and space. This work extends the envelope method for a time-dependent limit-state function to a time- and space-dependent limit-state function. The proposed method uses the envelope function of time- and space-dependent limit-state function. It at first searches for the most probable point (MPP) of the envelope function using the sequential efficient global optimization in the domain of the space and time under consideration. Then the envelope function is approximated by a quadratic function at the MPP for which analytic gradient and Hessian matrix of the envelope function are derived. Subsequently, the second-order saddlepoint approximation method is employed to estimate the probability of failure. Three examples demonstrate the effectiveness of the proposed method. The method can efficiently produce an accurate reliability prediction when the MPP is within the domain of the space and time under consideration. This article is available in the ASME Digital Collection at https://doi.org/10.1115/1.4054171.

Information & Authors

Information

Published In

Go to ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering
ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B: Mechanical Engineering
Volume 8Issue 4December 2022

History

Received: Sep 26, 2021
Revision received: Mar 18, 2022
Published online: Apr 28, 2022
Published in print: Dec 1, 2022

Authors

Affiliations

School of Mechanical Engineering, Purdue University, West Lafayette, IN 47907 e-mail: [email protected]
Xiaoping Du [email protected]
Professor
Department of Mechanical and Energy Engineering, Indiana University—Purdue University Indianapolis, 723 West Michigan Street, Indianapolis, IN 46202 e-mail: [email protected]

Funding Information

Directorate for Engineering10.13039/100000084: 1923799

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