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Published in: Geotechnical and Geological Engineering 6/2020

18-06-2020 | Original Paper

Construction Method for Pulling Out Existing Piles and Influence of Pulling-Out Holes on the Surrounding Ground

Authors: Shinya Inazumi, Shuichi Kuwahara, Apiniti Jotisankasa, Susit Chaiprakaikeow

Published in: Geotechnical and Geological Engineering | Issue 6/2020

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Abstract

The teardowns of social infrastructures, including civil engineering structures, have been increasing due to the aging of these structures, which were built in a period of high economic growth, and to a decrease in their utilization due the recent drop in population. The number of existing pile foundations being pulled out has gradually become a lot more than that of pile foundations being newly installed. However, after the pulling out of a pile foundation, the mechanical characteristics of the surrounding ground are of great concern due to the existence of the holes that form when the existing piles are removed (pulling-out holes). There are no regulations yet on the filling material to be injected into these holes, nor has the way that the strength of the filling material influences the surrounding ground been elucidated. The present study evaluates the manner in which the pulling-out holes of existing pile foundations influences the static and dynamic characteristics of the surrounding ground by means of a two-dimensional static and dynamic finite element analysis. The special qualities required for the filling material to be injected into these pulling-out holes are also clarified in this study.

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Literature
go back to reference Chung J, Hulbert GM (1993) The generalized-α method. J Appl Mech 60:371–375CrossRef Chung J, Hulbert GM (1993) The generalized-α method. J Appl Mech 60:371–375CrossRef
go back to reference Fukui M, Gyoten Y, Mizuhata K, Fukusumi T (1983) Observation of settlement of high rise building which rests on piles driven in reclaimed land, and measurement of axial forces of piles. Trans Arch Inst Jpn 327:50–60 Fukui M, Gyoten Y, Mizuhata K, Fukusumi T (1983) Observation of settlement of high rise building which rests on piles driven in reclaimed land, and measurement of axial forces of piles. Trans Arch Inst Jpn 327:50–60
go back to reference Furugauchi Y (2011) Deformation characteristics of backfill material with liquidity and self-hardening. Town Value-up Management Report 37:41–44 Furugauchi Y (2011) Deformation characteristics of backfill material with liquidity and self-hardening. Town Value-up Management Report 37:41–44
go back to reference Furugauchi Y, Nakasawa F, Utaka Y, Tokuda K (2014) Study on the Young's modulus of liquefied stabilized soil, Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan, pp 591–592 Furugauchi Y, Nakasawa F, Utaka Y, Tokuda K (2014) Study on the Young's modulus of liquefied stabilized soil, Summaries of Technical Papers of Annual Meeting Architectural Institute of Japan, pp 591–592
go back to reference Gonzalez LV, Ferrer M (2012) Geological Engineering. CRC Press, Boca Raton Gonzalez LV, Ferrer M (2012) Geological Engineering. CRC Press, Boca Raton
go back to reference Hilber HM, Hughes TJR, Taylor RL (1977) Improved numerical dissipation for time integration algorithms in structural dynamics. Earthquake Eng Struct Dynam 5:283–292CrossRef Hilber HM, Hughes TJR, Taylor RL (1977) Improved numerical dissipation for time integration algorithms in structural dynamics. Earthquake Eng Struct Dynam 5:283–292CrossRef
go back to reference Kondner RL (1963) Hyperbolic stress-strain response; cohesive soils. J Soil Mech Found Div 89(1):115–144 Kondner RL (1963) Hyperbolic stress-strain response; cohesive soils. J Soil Mech Found Div 89(1):115–144
go back to reference Kuwahara S, Hamada S (2015) On the pulling-out work of existing piles in the structure abatement work, Kinki Regional Development Bureau Research Presentation Paper Collection 2015 Edition, New Technology and New Construction Method Division, No. 3, pp 1–6 Kuwahara S, Hamada S (2015) On the pulling-out work of existing piles in the structure abatement work, Kinki Regional Development Bureau Research Presentation Paper Collection 2015 Edition, New Technology and New Construction Method Division, No. 3, pp 1–6
go back to reference Kuwahara S, Inazumi S (2019) Settlement of surrounding grounds due to existence of pile pulling-out holes. Int J GEOMATE Geotech Construct Mater Environ 16(54):81–85 Kuwahara S, Inazumi S (2019) Settlement of surrounding grounds due to existence of pile pulling-out holes. Int J GEOMATE Geotech Construct Mater Environ 16(54):81–85
go back to reference Kuwahara S, Hamaguchi S, Shimada Y, Inazumi S (2019) Construction theories and examples for method of powerfully chucking the tip of existing pile at removal of existing piles. Jpn Geotech J 14(1):69–76CrossRef Kuwahara S, Hamaguchi S, Shimada Y, Inazumi S (2019) Construction theories and examples for method of powerfully chucking the tip of existing pile at removal of existing piles. Jpn Geotech J 14(1):69–76CrossRef
go back to reference Lee MKW, Finn WDL (1985) DESRA-2, Dynamic Effective Stress Program for Earthquake Response Analysis of Soil Deposits with Energy Transmitting Boundary Including Assessment of Liquefaction Potential, The University of British Columbia, Faculty of Applies Science, Revised in 1985 Lee MKW, Finn WDL (1985) DESRA-2, Dynamic Effective Stress Program for Earthquake Response Analysis of Soil Deposits with Energy Transmitting Boundary Including Assessment of Liquefaction Potential, The University of British Columbia, Faculty of Applies Science, Revised in 1985
go back to reference Newmark NM (1959) A method of computation for structural dynamics. J Eng Mech Div ASCE 85:67–94 Newmark NM (1959) A method of computation for structural dynamics. J Eng Mech Div ASCE 85:67–94
go back to reference Noma T, Murayama H, Kadota S, Ueda S (1991) Development of static fracturing method of rock mass and concrete by hydraulic pressure. Proc Jpn Soc Civ Eng 427:203–211 Noma T, Murayama H, Kadota S, Ueda S (1991) Development of static fracturing method of rock mass and concrete by hydraulic pressure. Proc Jpn Soc Civ Eng 427:203–211
go back to reference Richard JS (1982) Japanese Manufacturing Techniques: Nine Hidden Lessons in Simplicity, Simon and Schuster Digital Sales Inc Richard JS (1982) Japanese Manufacturing Techniques: Nine Hidden Lessons in Simplicity, Simon and Schuster Digital Sales Inc
go back to reference Rowe PW (1968) The influence of geological features of clay deposits on the design and performance of sand drains, Supplement to the Proceedings of I.C.E, pp 1–72 Rowe PW (1968) The influence of geological features of clay deposits on the design and performance of sand drains, Supplement to the Proceedings of I.C.E, pp 1–72
go back to reference Takemiya H, Ishiyama M (1993) Nonlinear seismic response of an alluvium of non-flat base. J Struct Mech Earthq Eng 477:73–81 Takemiya H, Ishiyama M (1993) Nonlinear seismic response of an alluvium of non-flat base. J Struct Mech Earthq Eng 477:73–81
go back to reference Yoshida N (1996) Seismic response analysis and design of building considering dynamic soil-structure interaction. Architectural Institute of Japan, pp 236–260 Yoshida N (1996) Seismic response analysis and design of building considering dynamic soil-structure interaction. Architectural Institute of Japan, pp 236–260
Metadata
Title
Construction Method for Pulling Out Existing Piles and Influence of Pulling-Out Holes on the Surrounding Ground
Authors
Shinya Inazumi
Shuichi Kuwahara
Apiniti Jotisankasa
Susit Chaiprakaikeow
Publication date
18-06-2020
Publisher
Springer International Publishing
Published in
Geotechnical and Geological Engineering / Issue 6/2020
Print ISSN: 0960-3182
Electronic ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-020-01418-y

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