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==Abstract==
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This paper shows a numerical replication of a laboratory-scale free fall cone 
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penetrometer test of marine clay. The numerical simulation involves large deformations and 
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considers the destructuration of clay, strain rate effects, and non-linear material behaviour. The 
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numerical simulation well replicates the laboratory experiment captured on a high-speed 
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camera. The penetration process is replicated accurately in time, and the depth of the penetration 
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corresponds to that obtained in an experiment. The simulation results indicate that the numerical 
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framework implemented in Uintah software, consisting of an advanced soil model and the 
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Generalized Interpolation Material Point Method, is well-suited for replication of the dynamic 
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penetration process in soft and sensitive marine clay.
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== Full Paper ==
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<pdf>Media:Draft_Sanchez Pinedo_611181060pap_195.pdf</pdf>
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