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2020 | OriginalPaper | Buchkapitel

Comparison of Maximum Shear Modulus Interpreted from CPT and Laboratory Tests for Eastern Indian Offshore Clays

verfasst von : Sri Harsha Gamidi, R. K. Ghanekar

Erschienen in: Geotechnical Characterization and Modelling

Verlag: Springer Singapore

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Abstract

Maximum shear modulus, Gmax (also called initial shear modulus), is an important parameter for offshore foundation design which is either interpreted from CPT using established correlations or derived from bender element or resonant column tests on high-quality retrieved samples in the laboratory. Since the reported correlations with CPT are area-specific, there was a need to develop such correlations for eastern Indian offshore also where big oil and gas field developments are being planned. Such correlations can help in optimizing the costly field and laboratory testing programs for future projects. The correlations also act as a check on the field and laboratory investigation results. With an objective to validate the reported correlations or develop new correlations, available CPT and laboratory test data on clays from shallow and deepwater areas of eastern Indian offshore were compiled and evaluated using correlations reported in the literature. This paper, after presenting the data, discusses the results of such evaluation and attempts to develop new correlations between maximum shear modulus derived from laboratory tests and CPT parameters.

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Literatur
Zurück zum Zitat Bouckovalas G, Kalteziotis N, Sabatakakis N, Zervogiannis C (1989) Shear wave velocity in very soft clay. In: Proceedings of 12th international conference on soil mechanics and foundation engineering, Rio de Janeiro, Brazil, 13–18 August, 1989 A.A. Balkema, Rotterdam, The Netherlands, vol 1, pp 191–194 Bouckovalas G, Kalteziotis N, Sabatakakis N, Zervogiannis C (1989) Shear wave velocity in very soft clay. In: Proceedings of 12th international conference on soil mechanics and foundation engineering, Rio de Janeiro, Brazil, 13–18 August, 1989 A.A. Balkema, Rotterdam, The Netherlands, vol 1, pp 191–194
Zurück zum Zitat Long M, Donohue S (2010) Characterization of Norwegian marine clays with combined shear wave velocity and piezocone cone penetration test (CPTU) data. Can Geotech J 47:709–718CrossRef Long M, Donohue S (2010) Characterization of Norwegian marine clays with combined shear wave velocity and piezocone cone penetration test (CPTU) data. Can Geotech J 47:709–718CrossRef
Zurück zum Zitat Lunne T, Robertson PK, Powell JJM (1997) Cone penetration testing in geotechnical practice. Blackie Academic & Professional/Chapman-Hall Publishers, London Lunne T, Robertson PK, Powell JJM (1997) Cone penetration testing in geotechnical practice. Blackie Academic & Professional/Chapman-Hall Publishers, London
Zurück zum Zitat Mayne PW, Rix GJ (1993) Gmax − qc relationships for clays. Geotech Test J 16(1):54–60CrossRef Mayne PW, Rix GJ (1993) Gmaxqc relationships for clays. Geotech Test J 16(1):54–60CrossRef
Zurück zum Zitat Simonini P, Cola S (2000) Use of piezocone to predict maximum stiffness of Venetaian soils. J Geotech Geoenviron Eng 126(4):378–382CrossRef Simonini P, Cola S (2000) Use of piezocone to predict maximum stiffness of Venetaian soils. J Geotech Geoenviron Eng 126(4):378–382CrossRef
Metadaten
Titel
Comparison of Maximum Shear Modulus Interpreted from CPT and Laboratory Tests for Eastern Indian Offshore Clays
verfasst von
Sri Harsha Gamidi
R. K. Ghanekar
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-6086-6_11