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P-Y curves for laterally loaded single piles: Numerical validation
Marine Georesources & Geotechnology, 2021Pile foundations are widely used in marine and coastal engineering structures. The correct analysis method must be used to ensure the safety of piled systems used in marine and coastal structures. Despite several methods available in the literature, the numerical method is increasingly applied for understanding the loading mechanism of pile-soil ...
Mehmet Ömer Timurağaoğlu +2 more
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Determination of Multidirectional p-y Curves for Soft Clays
Geotechnical Testing Journal, 2005Abstract The evaluation of performance of soil-pile-structure systems under seismic loading is one of the most complex problems in earthquake engineering. In the most common methodology, force-displacement curves are used to describe the nonlinear response of discrete soil springs connecting the piles to the “free-field” soil column ...
JM Mayoral, JM Pestana, RB Seed
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P–Y Curves for Piles Under Seismic Lateral Loads
Geotechnical & Geological Engineering, 1998This paper describes an experimentally based procedure for building dynamic P–Y curves for clays from the Campeche sound in the Gulf of Mexico and for Mexico City clays. Cyclic triaxial and resonant column tests were used to derive hyperbolic stiffness–strain and damping–strain functions that depend on soil plasticity and on relative consistency.
M.P. Romo, E. Ovando-Shelley
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Cyclic p-y Curves in Clays for Offshore Structures
Offshore Technology Conference, 2019Abstract Pile foundations supporting offshore structures are typically subjected to lateral cyclic loading. In design, the pile response under peak design load is generally estimated using a beam-column model where soil-structure interaction is simulated with a series of uncoupled non-linearly force-displacement springs (p-y curves ...
Youhu Zhang +2 more
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Cyclic P-Y Curves for a Pile in Cohesive Soil
Geotechnical Earthquake Engineering and Soil Dynamics IV, 2008A lateral load test was performed on a full-scale steel pipe pile installed in a soil profile consisting of cohesive, fine-grained soils with occasional sand layers. The pile was loaded in nine increments from 0 to 89 mm of displacement, with 15 loading cycles applied for each increment.
Travis M. Gerber, Kyle M. Rollins
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Dynamic P-Y Curves for Dry Sand from Centrifuge Tests
Journal of Earthquake Engineering, 2013In this article, the simplified dynamic p-y backbone curve was suggested through a series of dynamic centrifuge tests. The centrifuge tests were carried out for a single pile in dry sand, while changing the conditions such as pile diameters, relative densities, input acceleration amplitudes and frequencies.
Min-Taek Yoo +3 more
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Simplified p-y curves under dynamic loading in dry sand
Soil Dynamics and Earthquake Engineering, 2018Abstract The behavior of soil-pile systems subjected to dynamic loads in dry sand was investigated using experimental tests. The focus of this study was to quantify the simplified dynamic p-y curve for pseudo-static analysis from model tests under various loading frequencies. A framework for determining the p-y curve on the basis of 1 g shaking table
Hyunsung Lim, Sangseom Jeong
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Experimental Evaluation of p-y Curves Considering Development of Liquefaction
Journal of Geotechnical and Geoenvironmental Engineering, 2013AbstractAlthough evidence in the literature indicates that the lateral p-y resistance of piles in liquefiable soils is significantly reduced, the shape and amplitude of the reduced p-y curve during pore pressure buildup are needed for reliable design of pile foundations.
B. J. Chang, T. C. Hutchinson
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Lateral Pile Response and p-y Curves From Centrifuge Tests
Offshore Technology Conference, 1983ABSTRACT Cyclic lateral load tests on model pipe piles driven in inundated, saturated sand were conducted aboard the Cambridge University geotechnical centrifuge. The tests provided qualitative and quantitative data on the interaction between pile and sand.
Y.O. Barton +3 more
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Slope effect on dynamic p–y backbone curve in dry sand
Soil Dynamics and Earthquake Engineering, 2021Abstract This study aims to evaluate the slope effect on the dynamic p–y backbone curve, which is a worldwide simplified tool in the seismic design of pile foundations. Data of dynamic centrifuge tests on single and group piles in sloping sandy ground were adopted to derive soil resistance and pile displacement.
Nghiem Xuan Tran +3 more
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