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Use of Cup Technology to Strengthen the Beds of Buildings and Structures by Hydrofracking

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Soil Mechanics and Foundation Engineering Aims and scope

Results are cited for investigations based on a set of optimal parameters of cement-grout injection for strengthening of a soil mass with use of cup technology during hydrofracking. It is shown that the method of multiple injection in each horizon of the soil mass contributes to more effective formation of zones of active hardening of soil under lower pressures and shorter grout-injection times

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References

  1. Building Code 45.13330.2012. Earthen Structures, Beds, and Foundations [in Russian].

  2. V. I. Osipov and S. D. Filimonov, "Compaction and reinforcement of soft soils by the "geocomposite method," Osn., Fundam. Mekh. Gruntov, No. 5, 15–21 (2002).

  3. I. I. Sakharov and M. Abbud, Numerical modeling of injection strengthening of soils in the beds of structures, Materials Presented at the Second Belorussian Congress on Theoretical and Applied Mechanics "Mechanics-99," (1999), p. 242.

  4. I. I. Sakharov and M. Abbud, Numerical modeling of injection strengthening of soils with use of the cup technology, Papers Presented at the 56th Scientific Conference, Saint Petersburg State Architectural and Civil-Engineering University, Part 1 (1999).

  5. R. B. Peck, U. E. Henson, and T. K. Tornburn, Beds and Foundations [Russian translation], Moscow (1958).

  6. E. S. Voznesenskaya, A. I. Osokin, S. V. Tatarinov, and V. A. Ermolaev, "Modeling the stress–strain state of a saturated clayey loam subject to injection," Prom. Grazhd. Stroit., No. 6, 48–51 (2008).

  7. E. S. Voznesenskaya, A. I. Osokin, S. V. Tatarinov, and V. A. Ermolaev, Modeling the stress–strain state of a bed soil subject injection by the hydrofracking method in an examples of results of work performed on one of the projects overseen by the JSC Geostroi, Proc. of the International Conference on Geotechniques "Geotechnical Problems in Large Urban Centers [in Russian], Vol. 5, Moscow (2010), pp. 1641–1646.

  8. E. S. Voznesenskaya, A. I. Osokin, S. V. Tatarinov, and V. A. Ermolaev, "Comparison of results of field investigations and numerical modeling of pore-pressure variation during injection of soils," Inzh. Izysk., No. 7, 68–73 (2013).

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Translated from Osnovaniya, Fundamenty i Mekhanika Gruntov, No. 6, pp. 19–24, November-December, 2014.

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Voznesenskaya, E.S., Ermolaev, V.A., Osokin, A.I. et al. Use of Cup Technology to Strengthen the Beds of Buildings and Structures by Hydrofracking. Soil Mech Found Eng 51, 299–305 (2015). https://doi.org/10.1007/s11204-015-9293-0

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  • DOI: https://doi.org/10.1007/s11204-015-9293-0

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