Time-Dependent Reliability Analysis Using the Total Probability Theorem

Author:

Mourelatos Zissimos P.1,Majcher Monica1,Pandey Vijitashwa1,Baseski Igor1

Affiliation:

1. Mechanical Engineering Department, Oakland University, 2200 N. Squirrel Road, Rochester, MI 48309 e-mail:

Abstract

A new reliability analysis method is proposed for time-dependent problems with explicit in time limit-state functions of input random variables and input random processes using the total probability theorem and the concept of composite limit state. The input random processes are assumed Gaussian. They are expressed in terms of standard normal variables using a spectral decomposition method. The total probability theorem is employed to calculate the time-dependent probability of failure using time-dependent conditional probabilities which are computed accurately and efficiently in the standard normal space using the first-order reliability method (FORM) and a composite limit state of linear instantaneous limit states. If the dimensionality of the total probability theorem integral is small, we can easily calculate it using Gauss quadrature numerical integration. Otherwise, simple Monte Carlo simulation (MCS) or adaptive importance sampling are used based on a Kriging metamodel of the conditional probabilities. An example from the literature on the design of a hydrokinetic turbine blade under time-dependent river flow load demonstrates all developments.

Publisher

ASME International

Subject

Computer Graphics and Computer-Aided Design,Computer Science Applications,Mechanical Engineering,Mechanics of Materials

Reference32 articles.

1. Design for Lifecycle Cost Using Time-Dependent Reliability;ASME J. Mech. Des.,2010

2. Design for Lifecycle Cost and Preventive Maintenance Using Time-Dependent Reliability;Adv. Mater. Res.,2010

3. The PHI2 Method: A Way to Compute Time-Variant Reliability;Reliab. Eng. Saf. Syst.,2004

4. Mathematical Analysis of Random Noise;Bell Syst. Tech. J.,1954

5. Computational Techniques in Stationary and NonStationary Load Combination—A Review and Some Extensions;J. Struct. Eng.,1998

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