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Evaluating the stability of slope reinforced with one row of free head piles
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  • 作者:I. Shooshpasha (1)
    H. A. Amirdehi (1)

    1. Department of Civil Engineering
    ; Babol Noshirvani University of Technology ; Babol ; P.O. Box 484 ; Iran
  • 关键词:Slope stability ; Free head piles ; Shear strength reduction method ; Factor of safety
  • 刊名:Arabian Journal of Geosciences
  • 出版年:2015
  • 出版时间:April 2015
  • 年:2015
  • 卷:8
  • 期:4
  • 页码:2131-2141
  • 全文大小:1,417 KB
  • 参考文献:1. Alemdag S, Akgun A, Kaya A, Gokceoglu C (2012) A large and rapid planar failure: causes, mechanism, and consequences (Mordut, Gumushane, Turkey). Arab J Geosci, 1鈥?7. doi:10.1007/s12517-012-0821-1
    2. Ashour, M, Ardalan, H (2012) Analysis of pile stabilized slopes based on soil鈥損ile interaction. Comput Geotech 39: pp. 85-97 CrossRef
    3. Cai, F, Ugai, K (2000) Numerical analysis of the stability of a slope reinforced with piles. Soils Found 40: pp. 73-84 CrossRef
    4. Chen LT, Poulos HG (1997) Piles subjected to lateral soil movements. J Geotech Geoenviron Eng, ASCE 123(9):802鈥?11. doi:10.1061/(ASCE)1090-0241(1997 ) 123:9(802)
    5. Cheng, YM, Lansivaara, T, Wei, WB (2007) Two-dimensional slope stability analysis by limit equilibrium and strength reduction methods. Comput Geotech 34: pp. 137-150 CrossRef
    6. Chow, YK (1996) Analysis of piles used for slope stabilization. Int J Numer Anal Methods Geomech 20: pp. 635-646 CrossRef
    7. Davies JP, Loveridge FA, Perry J, Patterson D, Carder D (2003) Stabilization of a landslide on the M25 Highway London鈥檚 main artery. Proceedings of the 39th US Rock Mechanics Symposium, Cambridge, Massachusetts, 2531鈥?538
    8. Dawson, EM, Roth, WH, Drescher, A (1999) Slope stability analysis by strength reduction. Geotechnique 49: pp. 835-840 CrossRef
    9. Beer, EE, Wallays, M (1972) Forces induced in piles by unsymmetrical surcharges on the soil round the piles. Conf Soils Mech Found Eng 1: pp. 325-332
    10. Donald IB, Giam SK (1988) Application of the nodal displacement method to slope stability analysis. In: Proceedings of the 5th Australia鈥揘ew Zealand conference on geomechanics, Sydney, Australia, 456:460
    11. Fahimifar A, Abdolmaleki A, Soltani P (2012) Stabilization of rock slopes using geogrid boxes. Arab J Geosci, 1鈥?3. doi:10.1007/s12517-012-0755-7
    12. Fukumoto, Y (1972) Study on the behaviour of stabilization piles for landslides. Soils Found 12: pp. 61-73 CrossRef
    13. Fukumoto, Y (1975) Experiment study on the behaviour of lateral resistance of piles against a land-sliding. J Landslides 12: pp. 20-24 CrossRef
    14. Fukumoto, Y (1976) The behavior of piles for preventing landslide. Soils Found 16: pp. 91-103 CrossRef
    15. Fukuoka, M (1977) The effects of horizontal loads on piles due to landslides. Proc 9th Int Conf on Soil Mech Found Eng, Japanese Society of Soil Mech Found Eng, Tokyo. pp. 27-42
    16. Goh, ATC, Teh, CI, Wong, KS (1997) Analysis of piles subjected to embankment induced lateral soil movements. J Geotech Geoenviron Eng ASCE 123: pp. 792-801 CrossRef
    17. Griffiths, DV, Lane, PA (1999) Slope stability analysis by finite elements. Geotechnique 49: pp. 387-403 CrossRef
    18. Griffiths DV, Lin H, Cao P (2010) A comparison of numerical algorithms in the analysis of pile reinforced slopes. Proc GeoFlorida 2010 Conf, West Palm Beach, Florida 1:175鈥?83
    19. Hassiotis S, Chameau JL, Gunaratne M (1997) Design method for stabilization of slopes with piles. J Geotech Geoenviron Eng, ASCE 123(4):314鈥?23. doi:10.1061/(ASCE)1090-0241(1997 ) 123:4(314)
    20. Hull TS, Lee CY, Poulos HG (1991) Mechanics of pile reinforcement for unstable slope. Research report submitted to National Technical Information Service, U.S. Department of Commerce, Report No. R-636
    21. Ito, T, Matsui, T (1975) Methods to estimate lateral force acting on stabilizing piles. Soils Found 15: pp. 43-60 CrossRef
    22. Ito, T, Matsui, T, Hong, WP (1979) Design method for the stability analysis of the slope with landing pier. Soils Found 19: pp. 43-57 CrossRef
    23. Jeong, S, Kim, B, Won, J, Lee, J (2003) Uncoupled analysis of stabilizing piles in weathered slopes. Comput Geotech 30: pp. 671-682 CrossRef
    24. Kourkoulis, R, Gelagoti, F, Anastasopoulos, I, Gazetas, G (2011) Slope stabilizing piles and pile-groups: parametric study and design insights. J Geotech Geoenviron Eng ASCE 137: pp. 663-678 CrossRef
    25. Ma, K, Tang, CA, Li, LC, Ranjith, PG, Cai, M, Xu, NW (2013) 3D modeling of stratified and irregularly jointed rock slope and its progressive failure. Arab J Geosci 6: pp. 2147-2163 CrossRef
    26. Matsui, T, San, KC (1992) Finite element slope stability analysis by shear strength reduction technique. Soils Found 32: pp. 59-70 CrossRef
    27. NAVFAC (1986) Foundations and earth structures. Design Manual 7.2. U.S. Department of the Navy, Alexandra
    28. Naylor D (1982) Finite elements and slope stability. Numerical methods in geomechanics: proceedings of the NATO Advanced Study Institute, University of Minho, Braga, Portugal, held at Vimeiro, August 24鈥揝ept. 4, 1981, 229: 244
    29. Oakland, MW, Chameau, JLA (1984) Finite-element analysis of drilled piers used for slope stabilization. Laterally loaded deep foundations, ASTM
    30. Polysou NC, Coulter TS, Sobkowicz JC (1998) Design, construction and performance of a pile wall stabilizing a landslide. Proc 51th Can Geotech Conf 1:31鈥?8
    31. Poulos, HG (1995) Design of reinforcing piles to increase slope stability. Can Geotech J 32: pp. 808-818 CrossRef
    32. Poulos HG, Chen LT (1997) Pile response due to excavation-induced lateral soil movement. J Geotech Geoenviron Eng, ASCE 123(2): 94鈥?9. doi:10.1061/(ASCE)1090-0241(1997 ) 123:2(94)
    33. Qianjun, X, Honglei, Y, Xianfeng, C, Zhongkui, L (2009) A temperature-driven strength reduction method for slope stability analysis. Mech Res Commun 36: pp. 224-231 CrossRef
    34. Reese, LC, Impe, WF (2001) Single piles and pile groups under lateral loading. A.A. Balkema, Rotterdam
    35. Sarkar, K, Singh, TN, Verma, AK (2012) A numerical simulation of landslide-prone slope in Himalayan region鈥攁 case study. Arab J Geosci 5: pp. 73-81 CrossRef
    36. Singh, TN, Pradhan, SP, Vishal, V (2013) Stability of slopes in a fire-prone mine in Jharia Coalfield, India. Arab J Geosci 6: pp. 419-427 CrossRef
    37. Tschebotarioff, GP (1973) Foundations, retaining and earth structures. McGraw Hill, New York
    38. Ugai, K, Leshchinsky, D (1995) Three-dimensional limit equilibrium and finite element analysis: a comparison of result. Soils Found 35: pp. 1-7 CrossRef
    39. Viggiani C (1981) Ultimate lateral load on piles used to stabilize landslides. Proc 10th Int Conf on Soil Mech Found Eng 3:555鈥?60
    40. Wei, WB, Cheng, YM (2009) Strength reduction analysis for slope reinforced with one row of piles. Comput Geotech 36: pp. 1176-1185 CrossRef
    41. Wei, WB, Cheng, YM, Li, L (2009) Three-dimensional slope failure analysis by the strength reduction and limit equilibrium methods. Comput Geotech 36: pp. 70-80 CrossRef
    42. Won, J, You, K, Jeong, S, Kim, S (2005) Coupled effects in stability analysis of pile鈥搒lope systems. Comput Geotech 32: pp. 304-315 CrossRef
    43. XTRACT, Ver. 3.0.3 [Computer software]. Imbsen and Associates, Sacramento, CA
    44. Yamin M (2007) Landslide Stabilization using a Single Row of Rock-Socketed Drilled Shafts and Analysis of Laterally Loaded Drilled Shats using Deflection Data. PhD Dissertation, The Graduate Faculty of the University of Akron, Ohio, USA
    45. Yang, S, Ren, X, Zhang, J (2011) Study on embedded length of piles for slope reinforced with one row of piles. J Rock Mech Geotech Eng 3: pp. 167-178
    46. Zeng, S, Liang, RY (2002) Stability analysis of drilled shafts reinforced slope. Soils Found 42: pp. 93-102 CrossRef
    47. Zienkiewicz, OC, Humpheson, C, Lewis, RW (1975) Associated and non-associated visco-plasticity and plasticity in soil mechanics. Geotechnique 25: pp. 671-689 CrossRef
  • 刊物类别:Earth and Environmental Science
  • 出版者:Springer Berlin Heidelberg
  • ISSN:1866-7538
文摘
In this paper, the stability analysis of slope reinforced with one row of free head piles is studied by shear strength reduction method, with software of ABAQUS. The effects of pile location, pile length, pile spacing, pile bending stiffness, and slope angle on the performance of reinforced slope are also analyzed. The optimal pile position is found to be located slightly upper of the middle of the slope. The critical pile length, after which the factor of safety will be remained constant, is dependent on the pile spacing, pile bending stiffness, and the slope angle. The results show that the factor of safety increases with decreasing pile spacing and increasing bending stiffness of the piles. Furthermore, stabilizing piles can influence more on the increase of the factor of safety of the reinforced slope as the slope angle is reduced. The equivalent shear strength parameters of the soil for unreinforced slope, with the factor of safety similar to the mode of reinforced slope, are also proposed in the present study that can be advantageous before conducting a detailed design of a reinforced slope with piles.

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