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Erschienen in: Geotechnical and Geological Engineering 8/2023

20.06.2023 | Original Paper

Laboratory Model Test of Rock-Socketed Pile Groups in Steep-Inclined Bedrock Under a Reduced Constraint

verfasst von: Jingjing Liu, Wei Wang, Qingke Nie, Xianwei Cheng, Bing Bai

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 8/2023

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Abstract

Improving the deformation coordination ability of unequal length pile groups is a key point in the application of pile foundation engineering. This study proposed a new concept of rock-socketed pile (RSP) with reduced constraint part, and developed a laboratory model test device to explore the horizontal bearing capacity of unequal length pile groups under various rock inclination angles and reduced constraint part length. Thus, this device revealed the mechanism of decreased RSP group stiffness with the reduced constraint. The results indicated that a smaller inclination angle resulted in a longer unconstrained part of the pile and a larger overall horizontal deformation. The reduced constraint part can significantly adjust the overall displacement of the piles for the same inclination angle. The larger the length of the reduced constraint part, the larger the displacement of the RSP pile top. Under the same loading conditions, increasing both the pile and RSP part lengths of the reduced constraint can reduce the pile bending moment. The use of the reduced constraint part is equivalent to an increase in the length of the piles after adjusting the stiffness of the relatively short piles. This research offers a basis for designing reduced constraint measures for an RSP group in an inclined bedrock stratum.

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Literatur
Zurück zum Zitat Ai ZY, Chen YF (2020) FEM-BEM coupling analysis of vertically loaded rock-socketed pile in multilayered transversely isotropic saturated media. Comput Geotech 120:103437CrossRef Ai ZY, Chen YF (2020) FEM-BEM coupling analysis of vertically loaded rock-socketed pile in multilayered transversely isotropic saturated media. Comput Geotech 120:103437CrossRef
Zurück zum Zitat Arioglu E, Seker PT, Gokce HB (2018) Discussion on “Empirical methods for determining shaft bearing capacity of semi-deep foundations socketed in rocks.” JRMGE 3:603–606 Arioglu E, Seker PT, Gokce HB (2018) Discussion on “Empirical methods for determining shaft bearing capacity of semi-deep foundations socketed in rocks.” JRMGE 3:603–606
Zurück zum Zitat Bai B, Bai F, Nie QK, Jia XX (2023a) A high-strength red mud–fly ash geopolymer and the implications of curing temperature. Powder Technol 416:118242CrossRef Bai B, Bai F, Nie QK, Jia XX (2023a) A high-strength red mud–fly ash geopolymer and the implications of curing temperature. Powder Technol 416:118242CrossRef
Zurück zum Zitat Bai B, Zhou R, Yang GC, Zou WL, Yuan W (2023b) The constitutive behavior and dissociation effect of hydrate-bearing sediment within a granular thermodynamic framework. Ocean Eng 268:113408CrossRef Bai B, Zhou R, Yang GC, Zou WL, Yuan W (2023b) The constitutive behavior and dissociation effect of hydrate-bearing sediment within a granular thermodynamic framework. Ocean Eng 268:113408CrossRef
Zurück zum Zitat Basu D, Salgado R, Prezzi M (2009) A continuum-based model for analysis of laterally loaded piles in layered soils. Géotechnique 59(2):127–140CrossRef Basu D, Salgado R, Prezzi M (2009) A continuum-based model for analysis of laterally loaded piles in layered soils. Géotechnique 59(2):127–140CrossRef
Zurück zum Zitat Cui CY, Meng K, Wu YJ, Chapman D, Liang ZM (2018) Dynamic response of pipe pile embedded in layered visco-elastic media with radial inhomogeneity under vertical excitation. Geomech Eng 16(6):609–618 Cui CY, Meng K, Wu YJ, Chapman D, Liang ZM (2018) Dynamic response of pipe pile embedded in layered visco-elastic media with radial inhomogeneity under vertical excitation. Geomech Eng 16(6):609–618
Zurück zum Zitat Cui CY, Meng K, Xu CS, Liang ZM, Li HJ, Pei HF (2021) Analytical solution for longitudinal vibration of a floating pile in saturated porous media based on a fictitious saturated soil pile model. Comput Geotech 131:103942CrossRef Cui CY, Meng K, Xu CS, Liang ZM, Li HJ, Pei HF (2021) Analytical solution for longitudinal vibration of a floating pile in saturated porous media based on a fictitious saturated soil pile model. Comput Geotech 131:103942CrossRef
Zurück zum Zitat Cui CY, Liang ZM, Xu CS, Xin Y, Wang BL (2023) Analytical solution for horizontal vibration of end-bearing single pile in radially heterogeneous saturated soil. Appl Math Model 116:65–83CrossRef Cui CY, Liang ZM, Xu CS, Xin Y, Wang BL (2023) Analytical solution for horizontal vibration of end-bearing single pile in radially heterogeneous saturated soil. Appl Math Model 116:65–83CrossRef
Zurück zum Zitat Emirler B, Tolun M, Yildiz A (2020) Investigation on determining uplift capacity and failure mechanism of the pile groups in sand. Ocean Eng 218:108145CrossRef Emirler B, Tolun M, Yildiz A (2020) Investigation on determining uplift capacity and failure mechanism of the pile groups in sand. Ocean Eng 218:108145CrossRef
Zurück zum Zitat Georgiadis K, Georgiadis M (2012) Development of p-y curves for undrained response of piles near slopes. Comput Geotech 40:53–61CrossRef Georgiadis K, Georgiadis M (2012) Development of p-y curves for undrained response of piles near slopes. Comput Geotech 40:53–61CrossRef
Zurück zum Zitat Gutierrez JG, Melentijevic S, Senent S, Rafael J (2020) Distinct element method simulations of rock-socketed piles: estimation of side shear resistance considering socket roughness. J Geo Tech Geoenviron 146(12):04020133CrossRef Gutierrez JG, Melentijevic S, Senent S, Rafael J (2020) Distinct element method simulations of rock-socketed piles: estimation of side shear resistance considering socket roughness. J Geo Tech Geoenviron 146(12):04020133CrossRef
Zurück zum Zitat Huang B, Zhang YT, Lv B, Yang ZJ, Fu XD, Zhang BJ (2021) Vertical bearing characteristics of rock-socketed pile in a synthetic soft rock. Eur J Environ Civ Eng 25(1):132–151CrossRef Huang B, Zhang YT, Lv B, Yang ZJ, Fu XD, Zhang BJ (2021) Vertical bearing characteristics of rock-socketed pile in a synthetic soft rock. Eur J Environ Civ Eng 25(1):132–151CrossRef
Zurück zum Zitat Johnston IW (2020) Revisiting methods for the design of rock socketed piles. J Geo Tech Geoenviron 146(12):04020144CrossRef Johnston IW (2020) Revisiting methods for the design of rock socketed piles. J Geo Tech Geoenviron 146(12):04020144CrossRef
Zurück zum Zitat Kim Y, Jeong S, Won J (2009) Effect of lateral rigidity of offshore piles using proposed p-y curves in marine clay. Mar Georesour Geotec 27(1):53–77CrossRef Kim Y, Jeong S, Won J (2009) Effect of lateral rigidity of offshore piles using proposed p-y curves in marine clay. Mar Georesour Geotec 27(1):53–77CrossRef
Zurück zum Zitat Kim D, Choo YW, Kwak K (2014) Comparison of lateral behavior of rock-socketed large-diameter offshore monopiles in sands with different relative densities. Int J off Shore Polar 25(2):207–210 Kim D, Choo YW, Kwak K (2014) Comparison of lateral behavior of rock-socketed large-diameter offshore monopiles in sands with different relative densities. Int J off Shore Polar 25(2):207–210
Zurück zum Zitat Li G, Zhang JL, Liu J, Li HH (2021) Study on the uplift bearing capacity of rock-socketed piles. Soil Mech Found Eng 58:203–208CrossRef Li G, Zhang JL, Liu J, Li HH (2021) Study on the uplift bearing capacity of rock-socketed piles. Soil Mech Found Eng 58:203–208CrossRef
Zurück zum Zitat Liu XL, Zhou H (2011) Investigation on behavior of rock-socketed retaining piles for deep excavation. Key Eng Mater 462–463:825–830CrossRef Liu XL, Zhou H (2011) Investigation on behavior of rock-socketed retaining piles for deep excavation. Key Eng Mater 462–463:825–830CrossRef
Zurück zum Zitat Meng K, Cui CY, Liang ZM, Li HJ, Pei HF (2020) A new approach for longitudinal vibration of a large-diameter floating pipe pile in visco-elastic soil considering the three-dimensional wave effects. Comput Geotech 128:103840CrossRef Meng K, Cui CY, Liang ZM, Li HJ, Pei HF (2020) A new approach for longitudinal vibration of a large-diameter floating pipe pile in visco-elastic soil considering the three-dimensional wave effects. Comput Geotech 128:103840CrossRef
Zurück zum Zitat Nandhagopal R, Kasinathan M (2021) Effect of rock-socketing on laterally loaded piles installed in the proximity of sloping ground. Int J Geomech 21(2):04020252CrossRef Nandhagopal R, Kasinathan M (2021) Effect of rock-socketing on laterally loaded piles installed in the proximity of sloping ground. Int J Geomech 21(2):04020252CrossRef
Zurück zum Zitat Ng CWW, Zhang LM, Nip DCN (2001) Response of laterally loaded large-diameter bored pile groups. J Geotech Geoenviron 127(8):658–669CrossRef Ng CWW, Zhang LM, Nip DCN (2001) Response of laterally loaded large-diameter bored pile groups. J Geotech Geoenviron 127(8):658–669CrossRef
Zurück zum Zitat Ovesen L (1979) The use of physical models in design: the scaling law relationships. In: Proceedings of 7th European conference on soil mechanics and foundation engineering, Brighton, UK Ovesen L (1979) The use of physical models in design: the scaling law relationships. In: Proceedings of 7th European conference on soil mechanics and foundation engineering, Brighton, UK
Zurück zum Zitat Raongjant W, Jing M (2011) Experimental investigation on seismic behavior of single piles in sandy soil. Earthq Eng Eng Vib 3:417–422CrossRef Raongjant W, Jing M (2011) Experimental investigation on seismic behavior of single piles in sandy soil. Earthq Eng Eng Vib 3:417–422CrossRef
Zurück zum Zitat Rezazadeh S, Eslami A (2017) Empirical methods for determining shaft bearing capacity of semi-deep foundations socketed in rocks. JRMGE 9(6):1140–1151 Rezazadeh S, Eslami A (2017) Empirical methods for determining shaft bearing capacity of semi-deep foundations socketed in rocks. JRMGE 9(6):1140–1151
Zurück zum Zitat Sorensen SP, Brodbaek KT, Moller M, Augustesen AH, Ibsen LB (2009) Evaluation of the load-displacement relationships for large-diameter piles in sand. In: Proceedings of the 12th international conference on civil, structural and environmental engineering computing, Funchal, Denmark Sorensen SP, Brodbaek KT, Moller M, Augustesen AH, Ibsen LB (2009) Evaluation of the load-displacement relationships for large-diameter piles in sand. In: Proceedings of the 12th international conference on civil, structural and environmental engineering computing, Funchal, Denmark
Zurück zum Zitat Wang QK, Ma JL, Xiao ZL, Chen WL, Ji YK (2020) Field test on uplift bearing capacity of rock-socketed belled piles. KSCE J Civ Eng 24(8):2353–2363CrossRef Wang QK, Ma JL, Xiao ZL, Chen WL, Ji YK (2020) Field test on uplift bearing capacity of rock-socketed belled piles. KSCE J Civ Eng 24(8):2353–2363CrossRef
Zurück zum Zitat Wang P, Ding H, Zhang P, Zhao E (2021) Shaking table test on rock-socketed piles in saturated sand foundation considering the effect of karst caves. Arab J Geosci 14:173CrossRef Wang P, Ding H, Zhang P, Zhao E (2021) Shaking table test on rock-socketed piles in saturated sand foundation considering the effect of karst caves. Arab J Geosci 14:173CrossRef
Zurück zum Zitat Xing HF, Liu LF, Luo Y (2019) Effects of construction technology on bearing behaviors of rock-socketed bored piles as bridge foundations. J Bridge Eng 24(4):05019002–05019002CrossRef Xing HF, Liu LF, Luo Y (2019) Effects of construction technology on bearing behaviors of rock-socketed bored piles as bridge foundations. J Bridge Eng 24(4):05019002–05019002CrossRef
Zurück zum Zitat Xing XB, Li XY, Li W, Lu T, Duan XF, Qing J (2022) Numerical analysis of the end-suspended pile and the rock-socketed pile bearing capacity of a soil-rock composite foundation pit. Adv Civ Eng 2022:1199548 Xing XB, Li XY, Li W, Lu T, Duan XF, Qing J (2022) Numerical analysis of the end-suspended pile and the rock-socketed pile bearing capacity of a soil-rock composite foundation pit. Adv Civ Eng 2022:1199548
Zurück zum Zitat Zhang XF, Ni YS, Song CX, Xu D (2020) Study on large tonnage pile foundation load test system and field test of long rock-socketed pile. Geomech Eng 21:565–570 Zhang XF, Ni YS, Song CX, Xu D (2020) Study on large tonnage pile foundation load test system and field test of long rock-socketed pile. Geomech Eng 21:565–570
Metadaten
Titel
Laboratory Model Test of Rock-Socketed Pile Groups in Steep-Inclined Bedrock Under a Reduced Constraint
verfasst von
Jingjing Liu
Wei Wang
Qingke Nie
Xianwei Cheng
Bing Bai
Publikationsdatum
20.06.2023
Verlag
Springer International Publishing
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 8/2023
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-023-02526-1

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