References

References

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[2]

M.B. Darendeli. Development of a new family of normalized modulus reduction and material damping curves. PhD thesis, University of Texas, 2001.

[3]

P.W. Mayne. Cone Penetration Testing. A Synthesis of Highway Practice. National Academies Press, Washington DC, 2007.

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HJ Lengkeek, J de Greef, and Stan Joosten. Cpt based unit weight estimation extended to soft organic soils and peat. In Cone Penetration Testing 2018, 389–394. CRC Press, 2018.

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[6]

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[7]

P.K. Robertson. Soil behaviour type from the cpt: an update. 2nd International Symposium on Cone Penetration Testing, 2:575–583, 2010.

[8]

R.D. Andrus, N.P. Mohanan, P. Piratheepan, B.S. Ellis, and T. Holzer. Predicting shear-wave velocity from cone penetration resistance. In Proceedings of the 4th International Conference on Earthquake Geotechnical Engineering, Thessaloniki, Greece, volume 2528. 2007.

[9]

M. Zhang and L. Tong. New statistical and graphical assessment of cpt-based empirical correlations for the shear wave velocity of soils. Engineering Geology, 226:184–191, 2017.

[10]

S.M. Ahmed. Predicting shear-wave velocity from cone penetration resistance. In Proceedings of the 2nd World Congress on Civil, Structural, and Environmental Engineering. 2017.

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A. Meer. Povm actuele sterkte activiteit 9 - voorbeeld schuifsterkteschematisering. Technical Report, POV Macro Stabiliteit, 2019.

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P.A. Vermeer and H.P. Neher. A soft soil model that accounts for creep. Beyond 2000 in Computational Geotechnics, pages 249–261, 2019. doi:10.1201/9781315138206-24.

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Geotechnical exchange format for cpt-data. Civieltechnisch Centrum Uitvoering Research en Regelgeving, Büchnerweg 1, Postbus 420, 2800 AK Gouda, September 2006.

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Tno Geologische Dienst Nederland. Bro-catalogus geotechnisch sondeeronderzoek versie 1.0. Technical Report, Ministerie van infrastructuur en milieu, 2017.

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Y. Nishida. A brief note on compression index of soils. Soils Mechanics and Foundation Division, 82:1027, 1956.