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2020 | OriginalPaper | Buchkapitel

Interaction Effect on Laterally Loaded Piles in Cohesionless Deposit

verfasst von : Sachchidanand Kushwaha, Ashok Kumar Khan

Erschienen in: Construction in Geotechnical Engineering

Verlag: Springer Singapore

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Abstract

Pile is the only solution to transfer the vertical and lateral loads to deeper strata in high-rise buildings. Here, an attempt has been made on laboratory model single pile and pile groups to investigate lateral resistance of the piles. However, this paper puts up the results of lateral static load tests executed on model steel and wooden single pile and pile groups, in cohesion-less deposit about 1 m deep at varying sand density and length to diameter ratio keeping the spacing constant. Load is applied using turn-buckle and measured by a spring balance. Dial gauges are installed to investigate the average displacement. The effects of embedded length to diameter ratio, sand density, configuration of piles, material of piles and group efficiency are studied and explored. The test results are substantiated theoretically by GEO5 software for both single pile and pile groups considering the properties in aligned with that of experimental studies.

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Literatur
Zurück zum Zitat Broms B (1964) Lateral resistance of piles in cohesion less soil. J Soil Mech Found Eng 90(3):123–156 Broms B (1964) Lateral resistance of piles in cohesion less soil. J Soil Mech Found Eng 90(3):123–156
Zurück zum Zitat Brown DA, Morrison C, Reese LC (1988) Lateral load behaviour of pile group in sand. J Geotechn Eng ASCE 114(11):1261–1276CrossRef Brown DA, Morrison C, Reese LC (1988) Lateral load behaviour of pile group in sand. J Geotechn Eng ASCE 114(11):1261–1276CrossRef
Zurück zum Zitat Phanikanth VS, Choudhary D, Reddy CR (2010) Response of single pile under lateral loads in Cohesion-less soils. Electron J Geotech Eng 15:813–830 Phanikanth VS, Choudhary D, Reddy CR (2010) Response of single pile under lateral loads in Cohesion-less soils. Electron J Geotech Eng 15:813–830
Zurück zum Zitat Poulos HG, Davis EH (1980) Pile foundation analysis and Design. Wiley, New York Poulos HG, Davis EH (1980) Pile foundation analysis and Design. Wiley, New York
Zurück zum Zitat Poulos HG (1971a) Behaviour of laterally loaded piles-single piles. Proc ASCE J Soil Mech Found Eng Div 97(SM5):711–731 Poulos HG (1971a) Behaviour of laterally loaded piles-single piles. Proc ASCE J Soil Mech Found Eng Div 97(SM5):711–731
Zurück zum Zitat Poulos HG (1971b) Behaviour of laterally loaded piles: Pile groups. Proc ASCE J Soil Mech Found Eng Div 97(SM5):733–751 Poulos HG (1971b) Behaviour of laterally loaded piles: Pile groups. Proc ASCE J Soil Mech Found Eng Div 97(SM5):733–751
Zurück zum Zitat Rollins KM, Peterson KT, Weaver TJ (1998) Lateral load behaviour of full scale pile group in clay. J Geotech Geoenviron Eng 124(6):468–474CrossRef Rollins KM, Peterson KT, Weaver TJ (1998) Lateral load behaviour of full scale pile group in clay. J Geotech Geoenviron Eng 124(6):468–474CrossRef
Zurück zum Zitat Rollins KM, Lane JD, Gerber TM (2005) Measured and computed lateral response of a pile group in sand. J Geotech Geo-environmental Eng ASCE 131(1):103–114CrossRef Rollins KM, Lane JD, Gerber TM (2005) Measured and computed lateral response of a pile group in sand. J Geotech Geo-environmental Eng ASCE 131(1):103–114CrossRef
Zurück zum Zitat Walsh JM (2005) Full scale lateral load test of a 3 x 5 pile group in sand. Department of Civil and Environmental Engineering, Brigham Young University Walsh JM (2005) Full scale lateral load test of a 3 x 5 pile group in sand. Department of Civil and Environmental Engineering, Brigham Young University
Metadaten
Titel
Interaction Effect on Laterally Loaded Piles in Cohesionless Deposit
verfasst von
Sachchidanand Kushwaha
Ashok Kumar Khan
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-6090-3_7