Utilization of Sand Cushion for Stabilization of Peat Layer Considering Dynamic Response of Compaction

سال انتشار: 1403
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 28

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شناسه ملی سند علمی:

JR_CEJ-10-4_011

تاریخ نمایه سازی: 1 خرداد 1403

چکیده مقاله:

Soft peat soils are located in many zones and at a given depth all over the world and are characterized by their low shear strength and high settlement. It can also cause progressive failure of roads, embankments, and foundations. Sand cushioning is the most beneficial technique used to relieve the stress transmitted to the peat layer to mitigate any deformation and shear failure. In this research, a field study of a road with a soft peat layer located at a depth ۴m below the ground surface is carried out. The plate load test is conducted on three cases over the peat layer using sand cushions with and without reinforcement. The results were compared with plate footing on the surface of the road without stabilization. The field tests of the improved technique were verified and deeply analyzed using the numerical program Plaxis. The finite element analysis mainly sheds light on the simulation of the dynamic response that represents the compaction of the sand cushion over the peat layer. A series of numerical models has been done considering the effect of repeated load compaction on the adopted sand cushions with and without reinforcement. The numerical analysis is directed to show the effect of repeated loads of compaction equipment that were used on decreasing the stress over the peat layer. The results showed that the composite compacted cushion with both a higher number of cycles and stress has a great effect on relieving the stresses transmitted to the face of the peat. As a result, the footing capacity is increased with less deformation. Doi: ۱۰.۲۸۹۹۱/CEJ-۲۰۲۴-۰۱۰-۰۴-۰۱۱ Full Text: PDF

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  • Huat, B. B. K., Gue, S. S., & Haji Ali, ...
  • El Mouchi, A., Siddiqua, S., Wijewickreme, D., & Polinder, H. ...
  • Hobbs, N. B. (1986). Mire morphology and the properties and ...
  • Edil, T. B., & Dhowian, A. (1981). At-rest lateral pressure ...
  • Edil, T. B. (2003). Recent advances in geotechnical characterization and ...
  • Hayashi, H., & Nishimoto, S. (2005). Strength characteristic of stabilized ...
  • Åhnberg, H. (2006). Strength of stabilised soil-a laboratory study on ...
  • Black, J. A., Sivakumar, V., Madhav, M. R., & Hamill, ...
  • Chen, H., & Wang, Q. (2006). The behaviour of organic ...
  • Islam, S., & Hashim, R. (2008). Stabilization of peat by ...
  • Duraisamy, Y., Huat, B. B. K., & Muniandy, R. (2009). ...
  • Heneash, U., Fawzy, H. E. D., Ali, K., & Basha, ...
  • Šiukščius, A., Vorobjovas, V., & Vaitkus, A. (2018). Geogrid reinforced ...
  • Jarrett, P. M. (1986). Load tests on geogrid reinforced gravel ...
  • Mooney, M. A. (2010). Intelligent soil compaction. Transportation Research Board, ...
  • Fathi, A., Tirado, C., Rocha, S., Mazari, M., & Nazarian, ...
  • Adams, M. T., & Collin, J. G. (1997). Large Model ...
  • Basha, A., khalifa, F., & Fayed, S. (2023). Experimental Study ...
  • Duraisamy, Y. (2008). Compressibility behavior of tropical peat reinforced with ...
  • ASTM D1195/D1195M-21. (2021). Standard Test Method for Repetitive Static Plate ...
  • ASTM D1194. (2012). Test Method for Bearing Capacity of Soil ...
  • Annual Book of ASTM Standards. (1989). Soil and Rock; Building ...
  • Chen, Q., & Abu-Farsakh, M. (2011). Numerical Analysis to Study ...
  • Nasr, A. M. A., & Azzam, W. R. (2017). Behaviour ...
  • Azzam, W. R., & Nasr, A. M. (2015). Bearing capacity ...
  • Lee, A. (2002). Finite element analysis in geotechnical engineering. Theory ...
  • Bathelt, U. (1956). The working behavior of the vibrating compactor ...
  • Moshin, S. H. (1967). Investigations of the dynamic behavior of ...
  • Yoo, T.-S., & Selig, E. T. (1979). Dynamics of Vibratory-Roller ...
  • Azzam, W. R. (2015). Utilization of the confined cell for ...
  • Roudgari, R. (2012). Compaction of Soil by Repeated Loading. PhD ...
  • Paulmichl, I., Furtmüller, T., Adam, C., & Adam, D. (2020). ...
  • Ochiai, H., Watari, Y., & Tsukamoto, Y. (1996). Soil reinforcement ...
  • Madhav, M. R., & Vitkar, P. P. (1978). Strip Footing ...
  • Das, B. M., & Puri, V. K. (1989). Bearing capacity ...
  • نمایش کامل مراجع