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18 results on '"Triantafyllidis, T."'

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1. Predicting undrained static response of sand with non-plastic fines in terms of equivalent granular state parameter.

2. On the influence of platy shell particles on the cumulative deformations in sand under drained high-cyclic loading.

3. Strain accumulation due to packages of cycles with varying amplitude and/or average stress – On the bundling of cycles and the loss of the cyclic preloading memory.

4. Inspection of a high-cycle accumulation model for large numbers of cycles (N=2 million).

5. Small-strain constrained elastic modulus of clean quartz sand with various grain size distribution.

6. Effect of Uniformity Coefficient on and Damping Ratio of Uniform to Well-Graded Quartz Sands.

7. Hypoplastic model for sands with loading surface.

8. On the influence of the grain size distribution curve on P-wave velocity, constrained elastic modulus M max and Poisson's ratio of quartz sands

9. Influence of the Grain-Size Distribution Curve of Quartz Sand on the Small Strain Shear Modulus Gmax.

10. Influence of the Grain-Size Distribution Curve of Quartz Sand on the Small Strain Shear Modulus Gmax.

11. Inspection of three sophisticated constitutive models based on monotonic and cyclic tests on fine sand: Hypoplasticity vs. Sanisand vs. ISA.

12. On correlations between “dynamic” (small-strain) and “static” (large-strain) stiffness moduli – An experimental investigation on 19 sands and gravels.

13. Improved simplified calibration procedure for a high-cycle accumulation model.

14. On the influence of a non-cohesive fines content on small strain stiffness, modulus degradation and damping of quartz sand.

15. Strain accumulation in sand due to drained cyclic loading: On the effect of monotonic and cyclic preloading (Miner's rule)

16. On the influence of the sample preparation method on strain accumulation in sand under high-cyclic loading.

17. Correlations of the liquefaction resistance of sands in spreader dumps of lignite opencast mines with CPT tip resistance and shear wave velocity.

18. Inspection of a high-cycle accumulation model for sand based on recalculations of a full-scale test on a gravity base foundation for offshore wind turbines.

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