Strength reliability analysis of stiffened cylindrical shells considering failure correlation

Xu Bai , Liping Sun , Wei Qin , Yongkun Lv

Journal of Marine Science and Application ›› 2014, Vol. 13 ›› Issue (1) : 49 -54.

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Journal of Marine Science and Application ›› 2014, Vol. 13 ›› Issue (1) : 49 -54. DOI: 10.1007/s11804-014-1236-z
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Strength reliability analysis of stiffened cylindrical shells considering failure correlation

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Abstract

The stiffened cylindrical shell is commonly used for the pressure hull of submersibles and the legs of offshore platforms. There are various failure modes because of uncertainty with the structural size and material properties, uncertainty of the calculation model and machining errors. Correlations among failure modes must be considered with the structural reliability of stiffened cylindrical shells. However, the traditional method cannot consider the correlations effectively. The aim of this study is to present a method of reliability analysis for stiffened cylindrical shells which considers the correlations among failure modes. Firstly, the joint failure probability calculation formula of two related failure modes is derived through use of the 2D joint probability density function. Secondly, the full probability formula of the tandem structural system is given with consideration to the correlations among failure modes. At last, the accuracy of the system reliability calculation is verified through use of the Monte Carlo simulation. Result of the analysis shows the failure probability of stiffened cylindrical shells can be gained through adding the failure probability of each mode.

Keywords

stiffened cylindrical shells / failure correlation / joint failure probability / structural system reliability

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Xu Bai, Liping Sun, Wei Qin, Yongkun Lv. Strength reliability analysis of stiffened cylindrical shells considering failure correlation. Journal of Marine Science and Application, 2014, 13(1): 49-54 DOI:10.1007/s11804-014-1236-z

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References

[1]

Bhattacharya B, Basu R, Ma KT. Developing target reliability for novel structures: the case of the Mobile Offshore Base. Marine Structures, 2001, 14: 37-58

[2]

Cheng YS, Au FTK, Tham LG, Zeng GW. Optimal and robust design of docking blocks with uncertainty. Engineering Structure, 2004, 26: 499-510

[3]

Deng J, Gu D. Structural reliability analysis for implicit performance functions using artificial neural network. Structure Safety, 2005, 27: 25-48

[4]

Gayton N, Bourinet JM, Lemaire M. CQ2RS: a new statistical approach to the response surface methods for reliability analysis. Structure Safety, 2003, 25: 99-121

[5]

Grooteman F. Adaptive radial-based importance sampling method for structural reliability. Structural Safety, 2008, 30: 533-542

[6]

Herbert MG, Armando MA. Comparison of response surface and neural network with other methods of structural reliability analysis. Structure Safety, 2004, 26: 49-67

[7]

Ma Y. Reliability assessment of submarine structure considering corrosion, 2009, 30-38

[8]

Papadrakakis M, Lagaros ND. Reliability-based structural optimization using neural networks and Monte Carlo simulation. Computer Methods in Applied Mechanics and Engineering, 2002, 192(32): 3491-3507

[9]

Su C, Zhang Y, Du J. Frequency reliability analysis of rotor system with correlation failure modes. Journal of Mechanical Engineering, 2012, 48(6): 175-179

[10]

Yu Y, Liu F, Zhang W, Liang B. Improving of RSM-FORM and application to reliability calculation of ring-stiffened cylindrical shell. Journal of Ship Mechanics, 2012, 16(3): 271-276

[11]

Zoul T, Mahadevan S. A direct decoupling approach for efficient reliability-based design optimization. Structural and Multidisciplinary Optimization, 2006, 31(3): 190-200

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