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REFERENCES [1] KASEBZADEH, J., NOORZAD, A., & MAHBOUBI, A. R. Reliability Analysis of Liquefaction Utilizing Monte Carlo Simulation Based on Simplified Stress Method. Journal of Seismology and Earthquake Engineering, 2015, VOL.17, Nr. 4, 233-248. [2] TERZAGHI, K. Theoretical soil mechanics (Vol. 18).1943, New York: John Wiley & Sons. [3] MICHALOWSKI, R. An estimate of the influence of soil weight on bearing capacity using limit analysis. Soils and Foundations, 1997, Vol. 37, Nr. 4, pr. 57-64. [4] JOHARI, A., JAVADI, A. A., MAKIABADI, M. H., & KHODAPARAST, A. R. Reliability assessment of liquefaction potential using the jointly distributed random variables method. Soil Dynamics and Earthquake Engineering, 2012, Vol. 38, 81-87. [5] JOHARI, A., & KHODAPARAST, A. R. Modelling of probability liquefaction based on standard penetration tests using the jointly distributed random variables method. Engineering Geology, 2013, Vol. 158, 1-14. [6] JOHARI, A., FAZELI, A., & JAVADI, A. A. An investigation into application of jointly distributed random variables method in reliability assessment of rock slope stability. Computers and Geotechnics, 2013, Vol. 47, 42-47. [7] Johari, A., & Javadi, A. A.. Reliability assessment of infinite slope stability using the jointly distributed random variables method. Scientia Iranica, 2012, Vol.19, Nr. 3, 423-429. [8] HASOFER, A.M. AND LIND, N.C. An exact and invariant first-order reliability format. Journal of the Engineering Mechanics, 1974, Vol.100, Nr. 1, 111-121. [9] ANG, A. H., & TANG, W. H. Probability concepts in engineering planning and design.1975, New York: John Wiley & Sons. [10] ROSENBLUETH, E. Point estimates for probability moments. Proceedings of the National Academy of Sciences, 1975, Vol.72, Nr. 10, 3812-3814. [11] HALDAR, A., & TANG, W. H. Probabilistic Evaluation of Liquefaction Potential. ASCE Journal of the Geotechnical Engineering Division, 1979, Vol.105, Nr.2, 145-163. [12] FARDIS, M.N. & VENEZIANO, D. Probabilistic analysis of deposit liquefaction. ASCE Journal of Geotechnical and Geoenvironmental Engineering, 1982, Vol. 108, Nr. 3, 395-417. [13] CHAMEAU, J. L., & CLOUGH, G. W. Probabilistic pore pressure analysis for seismic loading. Journal of Geotechnical Engineering, 1983, Vol. 109, Nr. 4, 507-524. [14] JUANG, C. H., ROSOWSKY, D. V., & TANG, W. H. Reliability-based method for assessing liquefaction potential of soils. Journal of Geotechnical and Geoenvironmental Engineering, 1999, Vol. 125, Nr. 8, 684-689. [15] JUANG, C. H., YANG, S. H., YUAN, H., & KHOR, E. H. Characterization of the uncertainty of the Robertson and Wride model for liquefaction potential 869
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Book of Full Papers Symposium Hydro Engineering
Title
Book of Full Papers
Subtitle
Symposium Hydro Engineering
Author
Gerald Zenz
Publisher
Verlag der Technischen Universität Graz
Location
Graz
Date
2018
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-85125-620-8
Size
20.9 x 29.6 cm
Pages
2724
Keywords
Hydro, Engineering, Climate Changes
Categories
International
Naturwissenschaften Physik
Technik
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