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Erschienen in: Geotechnical and Geological Engineering 6/2020

08.07.2020 | Original Paper

Seismic Reliability Investigation of Bearing Capacity of Foundations Based on Limit Analysis and Limit Equilibrium Methods

verfasst von: Ali Shojaeian, Faradjollah Askari

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 6/2020

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Abstract

In this paper, by considering the upper-bound limit analysis method in calculating the seismic bearing capacity of foundations, the comparison between a limit equilibrium method such as Hansen and limit analysis method in terms of reliability is investigated. Limit equilibrium has been the oldest method for performing bearing capacity of foundations. However, it seems that theoretical equations proposed by the majority of old limit equilibrium methods to calculate the bearing capacity of foundations (such as Hansen) do not consider the effects of inertial forces of the earthquake in the soil mass. These methods only take into account the horizontal load applied to the foundation and disregard the earthquake forces applied to the soil. By comparing the results of this study, it can be inferred that the reliability of the Hansen approach is very close to the limit analysis method that ignores the impact of horizontal earthquake forces applied to rigid soil blocks. Since the upper-bound limit analysis takes into account the seismic effect of inertial forces in an earthquake, its results may be considered more accurate than Hansen. This study shows that in both granular and cohesive soils in high seismicity-prone areas, usage of a more realistic method as the limit analysis is more reasonable. Considering the facility of RBD by Hansen method using EXCEL spreadsheet in comparison to the seismic reliability-based design using MATLAB programming following the upper-bound limit analysis method, graphs that offer coefficients for obtaining the equivalent value of target reliability in the limit analysis by using the Hansen formulation are presented. Additionally, this study shows that the horizontal seismic coefficient (kh) is an impressive parameter that affects the differences between the two mentioned approaches.

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Literatur
Zurück zum Zitat Ang AH-S, Tang WH (1984) Probability concepts in engineering planning and design, vol. 2: Decision, risk, and reliability. Wiley, New York, p 608 Ang AH-S, Tang WH (1984) Probability concepts in engineering planning and design, vol. 2: Decision, risk, and reliability. Wiley, New York, p 608
Zurück zum Zitat Askari F, Farzaneh O (2003) Upper-bound solution for seismic bearing capacity of shallow foundations near slopes. Geotechnique 53(8):697–702CrossRef Askari F, Farzaneh O (2003) Upper-bound solution for seismic bearing capacity of shallow foundations near slopes. Geotechnique 53(8):697–702CrossRef
Zurück zum Zitat Cherubini C (2000) Reliability evaluation of shallow foundation bearing capacity on c’φ’soils. Can Geotech J 37(1):264–269 Cherubini C (2000) Reliability evaluation of shallow foundation bearing capacity on c’φ’soils. Can Geotech J 37(1):264–269
Zurück zum Zitat Choudhury D, Subba Rao KS (2006) Seismic bearing capacity of shallow strip footings embedded in slope. Int J Geomech 6(3):176–184CrossRef Choudhury D, Subba Rao KS (2006) Seismic bearing capacity of shallow strip footings embedded in slope. Int J Geomech 6(3):176–184CrossRef
Zurück zum Zitat Fenton GA, Griffiths DV (2008) Risk assessment in geotechnical engineering, vol 461. Wiley, New YorkCrossRef Fenton GA, Griffiths DV (2008) Risk assessment in geotechnical engineering, vol 461. Wiley, New YorkCrossRef
Zurück zum Zitat Hasofer AM, Lind NC (1974) Exact and invariant second-moment code format. J Eng Mech Div 100(1):111–121 Hasofer AM, Lind NC (1974) Exact and invariant second-moment code format. J Eng Mech Div 100(1):111–121
Zurück zum Zitat Hicks MA, Onisiphorou C (2005) Stochastic evaluation of static liquefaction in a predominantly dilative sand fill. Géotechnique 55(2):123–133CrossRef Hicks MA, Onisiphorou C (2005) Stochastic evaluation of static liquefaction in a predominantly dilative sand fill. Géotechnique 55(2):123–133CrossRef
Zurück zum Zitat Liu H, Low BK (2018) Reliability-based design of tunnelling problems and insights for Eurocode 7. Comput Geotech 97:42–51CrossRef Liu H, Low BK (2018) Reliability-based design of tunnelling problems and insights for Eurocode 7. Comput Geotech 97:42–51CrossRef
Zurück zum Zitat Low BK (1996) Practical probabilistic approach using spreadsheet. In: Uncertainty in the geologic environment: From theory to practice. ASCE, pp 1284–1302 Low BK (1996) Practical probabilistic approach using spreadsheet. In: Uncertainty in the geologic environment: From theory to practice. ASCE, pp 1284–1302
Zurück zum Zitat Low BK (2007) Reliability-based design applied to retaining walls. In: Risk and Variability in Geotechnical Engineering. Thomas Telford Publishing, pp 151–163 Low BK (2007) Reliability-based design applied to retaining walls. In: Risk and Variability in Geotechnical Engineering. Thomas Telford Publishing, pp 151–163
Zurück zum Zitat Low BK (2017) Insights from reliability-based design to complement load and resistance factor design approach. J Geotech Geoenviron Eng 143(11):04017089CrossRef Low BK (2017) Insights from reliability-based design to complement load and resistance factor design approach. J Geotech Geoenviron Eng 143(11):04017089CrossRef
Zurück zum Zitat Low BK, Phoon K-K (2015) Reliability-based design and its complementary role to Eurocode 7 design approach. Comput Geotech 65:30–44CrossRef Low BK, Phoon K-K (2015) Reliability-based design and its complementary role to Eurocode 7 design approach. Comput Geotech 65:30–44CrossRef
Zurück zum Zitat Low BK, Tang WH (1997) Reliability analysis of reinforced embankments on soft ground. Can Geotech J 34(5):672–685CrossRef Low BK, Tang WH (1997) Reliability analysis of reinforced embankments on soft ground. Can Geotech J 34(5):672–685CrossRef
Zurück zum Zitat Low BK, Tang WH (2004) Reliability analysis using object-oriented constrained optimization. Struct Saf 26(1):69–89CrossRef Low BK, Tang WH (2004) Reliability analysis using object-oriented constrained optimization. Struct Saf 26(1):69–89CrossRef
Zurück zum Zitat Melchers RE, Beck AT (2018) Structural reliability analysis and prediction. Wiley, New York Melchers RE, Beck AT (2018) Structural reliability analysis and prediction. Wiley, New York
Zurück zum Zitat Mosallanezhad M, Moayedi H (2017) Comparison analysis of bearing capacity approaches for the strip footing on layered soils. Arab J Sci Eng 42(9):3711–3722CrossRef Mosallanezhad M, Moayedi H (2017) Comparison analysis of bearing capacity approaches for the strip footing on layered soils. Arab J Sci Eng 42(9):3711–3722CrossRef
Zurück zum Zitat Nadi B, Askari F, Farzaneh O, Fatolahzadeh S, Mehdizadeh R (2019) Reliability evaluation of regression model for estimating Co-seismic landslide displacement. Iran J Sci Technol Trans Civ Eng 1:1–9 Nadi B, Askari F, Farzaneh O, Fatolahzadeh S, Mehdizadeh R (2019) Reliability evaluation of regression model for estimating Co-seismic landslide displacement. Iran J Sci Technol Trans Civ Eng 1:1–9
Zurück zum Zitat Onisiphorou C (2010) Reliability based assessment of rock slope stability. Rock Mech Civ Environ Eng-Proc Eur Rock Mech Symp 129(6):563–566 Onisiphorou C (2010) Reliability based assessment of rock slope stability. Rock Mech Civ Environ Eng-Proc Eur Rock Mech Symp 129(6):563–566
Zurück zum Zitat Phoon K-K (ed) (2014) Reliability-based design in geotechnical engineering: computations and applications. CRC Press, Boca Raton Phoon K-K (ed) (2014) Reliability-based design in geotechnical engineering: computations and applications. CRC Press, Boca Raton
Zurück zum Zitat Phoon K-K, Kulhawy FH (1999) Characterization of geotechnical variability. Can Geotech J 36(4):612–624CrossRef Phoon K-K, Kulhawy FH (1999) Characterization of geotechnical variability. Can Geotech J 36(4):612–624CrossRef
Zurück zum Zitat Robert MAY (2015) The seismic design of shallow foundations: a state of the art exploration Robert MAY (2015) The seismic design of shallow foundations: a state of the art exploration
Zurück zum Zitat Shakir RR (2019) Probabilistic-based analysis of a shallow square footing using Monte Carlo simulation. Eng Sci Technol Int J 22(1):313–333 Shakir RR (2019) Probabilistic-based analysis of a shallow square footing using Monte Carlo simulation. Eng Sci Technol Int J 22(1):313–333
Zurück zum Zitat Shojaeian A, Askari F (2019) Variables characteristics effects on static and pseudo-static reliability-based design of near slope shallow foundations. NMCE 3(3):1–12 Shojaeian A, Askari F (2019) Variables characteristics effects on static and pseudo-static reliability-based design of near slope shallow foundations. NMCE 3(3):1–12
Zurück zum Zitat Sloan S (2005) Geotechnical stability analysis: new methods for an old problem. Aust Geomech 40(30):1–28 Sloan S (2005) Geotechnical stability analysis: new methods for an old problem. Aust Geomech 40(30):1–28
Zurück zum Zitat Soubra A-H (1999) Upper-bound solutions for bearing capacity of foundations. J Geotech Geoenviron Eng 125(1):59–68CrossRef Soubra A-H (1999) Upper-bound solutions for bearing capacity of foundations. J Geotech Geoenviron Eng 125(1):59–68CrossRef
Zurück zum Zitat Viviescas JC, Osorio JP, Cañón JE (2017) Reliability-based designs procedure of earth retaining walls in geotechnical engineering. Obras y proyectos 22:50–60CrossRef Viviescas JC, Osorio JP, Cañón JE (2017) Reliability-based designs procedure of earth retaining walls in geotechnical engineering. Obras y proyectos 22:50–60CrossRef
Zurück zum Zitat Youssef Abdel Massih DS, Soubra A-H, Low BK (2008) Reliability-based analysis and design of strip footings against bearing capacity failure. J Geotech Geoenviron Eng 134(7):917–928CrossRef Youssef Abdel Massih DS, Soubra A-H, Low BK (2008) Reliability-based analysis and design of strip footings against bearing capacity failure. J Geotech Geoenviron Eng 134(7):917–928CrossRef
Metadaten
Titel
Seismic Reliability Investigation of Bearing Capacity of Foundations Based on Limit Analysis and Limit Equilibrium Methods
verfasst von
Ali Shojaeian
Faradjollah Askari
Publikationsdatum
08.07.2020
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 6/2020
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-020-01438-8

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