Effect of Soil Degree of Saturation on Pile Load Capacity at Different Slenderness Ratios

https://doi.org/10.24237/djes.2024.17209

Authors

  • Lateef J. Mohammed Saeed Department of Civil Engineering, University of Diyala, 32001 Diyala, Iraq
  • Qutaiba G. Majeed Department of Civil Engineering, University of Diyala, 32001 Diyala, Iraq
  • Qassem H. Jalut Department of Civil Engineering, University of Diyala, 32001 Diyala, Iraq

Keywords:

Partially saturated soil, Matric suction, Slenderness ratio, Pile load capacity

Abstract

The conventional methods follow in designing piles adopt the assumption of saturated condition of soil depending on soil parameters at saturated condition while at most cases the whole piles or part of them lays in unsaturated soil zone, thus the estimated pile capacity will be far of the real. This issue made the need to study the pile capacity at unsaturated condition and compare it with saturated condition. This study is performed to investigate the behavior of single pile inserted in clay soil at different degrees of saturation. The test was performed under axial compression loads by using different degrees of saturation (100,80,60,40%). A pile of 14x14 mm cross section with different slenderness ratios (L/D) (24,30,36) employed in the study. The impact of saturation degree, matric suction and slenderness ratio on pile load capacity is examined. The results illustrate that pile capacity influenced considerably by the saturation degree, matric suction, and slenderness ratio. The results showed that when saturation degree reduced from 100% to (80,60,40%), bearing capacity of pile increased for all L/D used. An example ultimate capacity of pile with L/D (24) increased (380, 512, 63%)  by de-creasing degree of saturation from 100 % to(80 ,60 ,40%) respectively, this means the pile capacity increased about four times by decreasing Sr. from 100 % to 80 % , five times by decrease Sr. from 100% to 60 %  and little increase (63 %) in pile capacity by decreasing Sr. to 40 %.A close results had been observed at L/D 30 and 36. The effect of increasing slenderness ratio had been studied at different saturation degrees, an ex-ample by increasing L/D from 24 to 30 pile capacity increased (11.45, 10.2, 25, 32.5%) at Sr.(100 ,80 ,60 ,40%)  respectively.

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References

Cheng, X., & Vanapalli, S. K. (2021). A numerical technique for modeling the behavior of single piles in unsaturated soils. In MATEC web of conferences (Vol. 337, p. 03012). EDP Sciences.

Fredlund ,D.G., Xing, A., Fredlund, M.D.& Barbour, S.L. (1996)." The relationship of unsaturated soil shear strength to the soil– water characteristic curve". Can Geotech J 33:440–448.

Vanapalli, S. K., Fredlund, D. G., Pufahl, D. E., & Clifton, A. W. (1996). Model for the prediction of shear strength with respect to soil suction. Canadian geotechnical journal, 33(3), 379-392).‏

Vanapalli, S. K., & Fredlund, D. G. (2000). Comparison of different procedures to predict unsaturated soil shear strength. In Advances in unsaturated geotechnics (pp. 195-209).

Vanapalli, S. K., Oh, W. T., & Puppala, A. J. (2007, October). Determination of the bearing capacity of unsaturated soils under undrained loading conditions. In Proceedings of the 60th Canadian geotechnical conference (pp. 21-24). Alliston, ON: Can. Geotech. Soc.

Fredlund, D. G., & Rahardjo, H. (1993). Soil mechanics for unsaturated soils. John Wiley & Sons.

Rassam, D. W., & Williams, D. J. (1999). A relationship describing the shear strength of unsaturated soils. Canadian Geotechnical Journal, 36(2), 363-368.

Likos, W. J., & Lu, N. (2004). Unsaturated soil mechanics. ed: John Wiley and Sons Inc., New Jersey.

Georgiadis, K., Potts, D. M., & Zdravkovic, L. (2003). The influence of partial soil saturation on pile behaviour. Géotechnique, 53(1), 11-25.

Vanapalli, S. K., & Taylan, Z. N. (2012). Design of single piles using the mechanics of unsaturated soils. GEOMATE Journal, 2(3), 197-204‏

Fattah, M. Y., Salim, N. M., & Mohsin, I. M. (2014). Behavior of single pile in unsaturated clayey soils. Engineering and Technology Journal, University of Technology, 32(Part (A), 763-787.

Al-Omari, R. R., Fattah, M. Y., & Kallawi, A. M. (2020, February). Bearing capacity of piles in unsaturated soil from theoretical and experimental approaches. In IOP Conference Series: Materials Science and Engineering (Vol. 737, No. 1, p. 012101). IOP Publishing.‏

Heni, P. (2022). Single piles and pile groups capacity in unsaturated sandy clay based on laboratory test. ASEAN Engineering Journal, 12(1), 165-171

ASTM D2216-19 (2019)Standard Test Methods for Laboratory Determination of Water (Moisture) Content of Soil and Rock by Massl, American Society Materials forTesting and (ASTM).

Meyerhof, G. G. (1956). Penetration tests and bearing capacity of cohesionless soils. Journal of the Soil Mechanics and Foundations Division, 82(1), 866-1.

Turner, J. P., & Kulhawy, F. H. (1994). Physical modeling of drilled shaft side resistance in sand. Geotechnical Testing Journal, 17(3), 282-290.

ASTM D1143/D1143M-20 (Standard Test Methods for Deep Foundation Elements Under Static Axial Compressive Load ) l, American Society for Testing and Materials (ASTM).

Mansur, C. I., & Hunter, A. H. (1970). Pile tests-Arkansas river project. Journal of the Soil Mechanics and Foundations Division, 96(5), 1545-1582.‏

Published

2024-06-07

How to Cite

[1]
L. J. Mohammed Saeed, Q. G. Majeed, and Q. H. Jalut, “Effect of Soil Degree of Saturation on Pile Load Capacity at Different Slenderness Ratios ”, DJES, vol. 17, no. 2, pp. 120–130, Jun. 2024.