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3LSU-CPTU dissipation soil test of long duration

https://doi.org/10.37538/2224-9494-2020-3(26)-50-63

Abstract

The paper presents the results of in-situ dissipation soil test of long duration performed within 985...4081 min with a 3LSU-CPTU probe equipped with lateral pressure gauge. A brief description of soil conditions, utilized equipment and test procedure is given. The paper presents general information on dissipation soil test, and provides the analysis of test results and test regularities. Several approaches of using dissipation curves for assessing pore pressure are proposed.

About the Authors

O. .. Isaev
NIIOSP named after N. M. Gersevanov JSC Research Center of Construction
Russian Federation


R. .. Sharafutdinov
NIIOSP named after N. M. Gersevanov JSC Research Center of Construction
Russian Federation


D. .. Zakatov
NIIOSP named after N. M. Gersevanov JSC Research Center of Construction
Russian Federation


References

1. Болдырев Г.Г. 2017. Руководство по интерпретации данных испытаний методами статического и динамического зондирования для геотехнического проектирования. ООО «Прондо», Москва

2. ГОСТ 19912-2012 Грунты. Методы полевых испытаний статическим и динамическим зондированием

3. Исаев О.Н., Шарафутдинов Р.Ф., Закатов Д.С., 2019. Зонды для статического зондирования грунтов с дополнительным датчиком бокового давления. Вестник НИЦ «Строительство», № 4(23), С. 81 - 93

4. Исаев О.Н., Шарафутдинов Р.Ф., Закатов Д.С., Бауков А.Ю., Павлов С.В., Каменев А.А. Зонд для статического зондирования грунтов с модулем бокового давления (3LSU-CPTU). Геотехника

5. Рыжков И.Б., Исаев О.Н., 2010. Статическое зондирование грунтов. АСВ, Москва.

6. Lunne T., Robertson P. K., Powell J. J. Cone penetration testing in geotechnical practice. London and New York, Spon Press, 2004. 312 p.

7. ISO 22476-1. Geotechnical investigation and testing - Field testing - Part 1. Electrical cone and piezocone penetration tests

8. ASTM D 5778-07. Standard Test Method for Electronic Friction Cone and Piezocone Penetration Testing of Soils

9. Bayne J.M., Tjelta T.I., 1987. Advanced cone penetrometer development for in-situ testing at Gulfaks C. Proceedings Offshore Technology Conference, Houston, USA, 1987, Paper No. 5420

10. Campanella R.G., Sully J.P., Greig J.W., Jolly G., 1990. Research and development of a lateral stress piezocone. Transportation Research Record No. 1278, pp. 215-224,

11. Howie J.A., Campanella R.G., Rivera Cruz I., 2014. Evaluation of the UBC lateral stress module. Proceedings of the 3rd International Symposium on Cone Penetration Testing, Las Vegas, USA, 2014, pp. 497-505

12. Huntsman S.R., Mitchell J.K., Klejbuk L.W.Jr., Shinde S.B., 1986. Lateral stress measurement during cone penetration. Proceedings of the Conference of Use of In-Situ Tests in Geotechnical Engineering, Blacksburg, VA, USA, 1986, pp. 617-634

13. Takesue K., Isano T., 2001. Development and application of a lateral stress cone. Proceedings of the International Conference on In-situ Measurement of Soils Properties and Case Histories, Bali, India, 2001, pp. 623-629


Review

For citations:


Isaev O..., Sharafutdinov R..., Zakatov D... 3LSU-CPTU dissipation soil test of long duration. Bulletin of Science and Research Center of Construction. 2020;26(3):50-63. (In Russ.) https://doi.org/10.37538/2224-9494-2020-3(26)-50-63

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ISSN 2224-9494 (Print)
ISSN 2782-3938 (Online)