This paper presents a stochastic mesh-free method for probabilistic fracture-mechanics analysis of nonlinear cracked structures. The method involves enriched element-free Galerkin formulation for calculating the J-integral; statistical models of uncertainties in load, material properties, and crack geometry; and the first-order reliability method (FORM) for predicting probabilistic fracture response and reliability of cracked structures. The sensitivity of fracture parameters with respect to crack size, required for probabilistic analysis, is calculated using a virtual crack extension technique. Numerical examples based on mode-I fracture problems have been presented to illustrate the proposed method. The results from sensitivity analysis indicate that the maximum difference between sensitivity of the J-integral calculated using the proposed method and reference solutions obtained by the finite-difference method is about six percent. The results from reliability analysis show that the probability of fracture initiation using the proposed sensitivity and meshless-based FORM are very accurate when compared with either the finite-element-based Monte Carlo simulation or finite-element-based FORM. Since all gradients are calculated analytically, the reliability analysis of cracks can be performed efficiently using meshless methods.
Skip Nav Destination
ASME 2002 Pressure Vessels and Piping Conference
August 5–9, 2002
Vancouver, BC, Canada
Conference Sponsors:
- Pressure Vessels and Piping Division
ISBN:
0-7918-1949-3
PROCEEDINGS PAPER
Stochastic Meshless Analysis of Elastic-Plastic Cracked Structures Available to Purchase
B. N. Rao
University of Iowa, Iowa City, IA
S. Rahman
University of Iowa, Iowa City, IA
Paper No:
PVP2002-1201, pp. 133-146; 14 pages
Published Online:
August 14, 2008
Citation
Rao, BN, & Rahman, S. "Stochastic Meshless Analysis of Elastic-Plastic Cracked Structures." Proceedings of the ASME 2002 Pressure Vessels and Piping Conference. New and Emerging Computational Methods: Applications to Fracture, Damage, and Reliability. Vancouver, BC, Canada. August 5–9, 2002. pp. 133-146. ASME. https://doi.org/10.1115/PVP2002-1201
Download citation file:
7
Views
Related Proceedings Papers
Related Articles
Stochastic Fatigue Crack Growth Analysis for Space System
Reliability
ASME J. Risk Uncertainty Part B (June,2018)
Structural Reliability of a Suezmax Oil Tanker Designed According to New Common Structural Rules
J. Offshore Mech. Arct. Eng (May,2008)
Deterministic and Probabilistic Fracture Mechanics Analysis for Structural Integrity Assessment of Pressurized Water Reactor Pressure Vessel
J. Pressure Vessel Technol (June,2016)
Related Chapters
A Smart Sampling Strategy for One-at-a-Time Sensitivity Experiments (PSAM-0360)
Proceedings of the Eighth International Conference on Probabilistic Safety Assessment & Management (PSAM)
Establishing Unmanning Criteria for a Jacket Structure on the NCS
Ageing and Life Extension of Offshore Facilities
Approximate Analysis of Plates
Design of Plate and Shell Structures