474
Views
34
CrossRef citations to date
0
Altmetric
Original Articles

Physical Modeling of a Footing on Soft Soil Ground with Deep Cement Mixed Soil Columns under Vertical Loading

&
Pages 173-188 | Published online: 13 May 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (4)

Chana Phutthananon, Pornkasem Jongpradist & Pitthaya Jamsawang. (2020) Influence of cap size and strength on settlements of TDM-piled embankments over soft ground. Marine Georesources & Geotechnology 38:6, pages 686-705.
Read now
Xing Haofeng, Xiong Feng & Zhou Feng. (2018) Improvement for the strength of salt-rich soft soil reinforced by cement. Marine Georesources & Geotechnology 36:1, pages 38-42.
Read now
Mehdi Veiskarami, Mir Ahmad Lashteh Neshaei, Mehran Karimpour Fard & Tina Pourramezan. (2017) Numerical study on static and seismic stability of breakwaters on soft granular marine deposits against deep failure. Marine Georesources & Geotechnology 35:1, pages 42-51.
Read now
Ahmad Safuan A. Rashid, Jonathan A. Black, Hisham Mohamad & Norhazilan Mohd Noor. (2015) Behavior of Weak Soils Reinforced with End-Bearing Soil-Cement Columns Formed by the Deep Mixing Method. Marine Georesources & Geotechnology 33:6, pages 473-486.
Read now

Articles from other publishers (30)

Chen Shen, Dingwen Zhang, Johan Clausen, Tao Song, Jingmin Xu & Songsong Yang. (2023) Centrifuge modelling on the stability of emergency flood control riverbank reinforced by deep mixed column: Case Study of Baishan Junction, China. Case Studies in Construction Materials 19, pages e02614.
Crossref
Jiaxing Zhang, Xiangjun Pei, Guohua Zhang & Lu Wei. (2023) Experimental studies on mechanical and expansion characteristics of cement-stabilized saline soil reinforced with activated silica fume. Case Studies in Construction Materials 19, pages e02333.
Crossref
Avinash Bhardwaj & Ravi Kumar Sharma. (2023) Experimental and Numerical Investigations on the Bearing Capacity of Footings on the Layered Soil. International Journal of Geosynthetics and Ground Engineering 9:4.
Crossref
Shunhua Zhou, Yao Shan, Zhongyang Wu, Wei Zhao, Longcai Yang & Youwei Lin. (2023) Lateral deformation of high-speed railway foundation induced by adjacent embankment construction in soft soils: Numerical and field study. Transportation Geotechnics 41, pages 101005.
Crossref
Pei-Chen WuWei-Qiang FengJie-Qiong QinKai-Fu LiuJian-Hua Yin. (2023) A New Calculation Method for Life Cycle Settlement of Soft Ground with Creep Treated by Columns. International Journal of Geomechanics 23:6.
Crossref
Ali Dehghanbanadaki, Ahmad Safuan A. Rashid, Kamarudin Ahmad, Nor Zurairahetty Mohd Yunus & Shervin Motamedi. (2023) Deep soil mixing stabilisation of peat: a review of small-scale and 1 g physical modelling test results. Bulletin of Engineering Geology and the Environment 82:5.
Crossref
Sanjoli Gupta & Suresh Kumar. (2023) A state-of-the-art review of the deep soil mixing technique for ground improvement. Innovative Infrastructure Solutions 8:4.
Crossref
Mohamed A. Sakr, Mostafa A. Elsawwaf & Ahmed K. Rabah. (2022) Soft clay improved by deep cement mixing column technique. Arabian Journal of Geosciences 15:15.
Crossref
Ali Dehghanbanadaki, Ahmad Safuan A. Rashid, Kamarudin Ahmad, Nor Zurairahetty Mohd Yunus, Jagdish Telangrao Shahu & Mamata Mohanty. (2022) Ultimate Bearing Capacity of Soft Soil Improved by DCM Columns: A Comparative Review. KSCE Journal of Civil Engineering 26:6, pages 2653-2661.
Crossref
Shechuan Liu, Dingwen Zhang, Tao Song, Guolong Zhang & Libin Fan. (2021) A Method of Settlement Calculation of Ground Improved by Floating Deep Mixed Columns Based on Laboratory Model Tests and Finite Element Analysis. International Journal of Civil Engineering 20:2, pages 207-222.
Crossref
Mamata Mohanty & J. T. Shahu. (2021) Laboratory Investigation on Performance of Soil–Cement Columns Under Axisymmetric Condition. International Journal of Civil Engineering 19:8, pages 957-971.
Crossref
Ali Dehghanbanadaki. (2021) Intelligent modelling and design of soft soil improved with floating column-like elements as a road subgrade. Transportation Geotechnics 26, pages 100428.
Crossref
Tsz-On Ho, Daniel C.W. Tsang, Wen-Bo Chen & Jian-Hua Yin. (2020) Evaluating the environmental impact of contaminated sediment column stabilized by deep cement mixing. Chemosphere 261, pages 127755.
Crossref
Pei-Chen Wu, Jian-Hua Yin, Wei-Qiang Feng & Wen-Bo Chen. (2019) Experimental study on geosynthetic-reinforced sand fill over marine clay with or without deep cement mixed soil columns under different loadings. Underground Space 4:4, pages 340-347.
Crossref
Wei-Qiang Feng, Chao Li, Jian-Hua Yin, Jian Chen & Kai Liu. (2019) Physical model study on the clay–sand interface without and with geotextile separator. Acta Geotechnica 14:6, pages 2065-2081.
Crossref
J.T. Wu, X. Ye, J. Li & G.W. Li. (2019) Field and numerical studies on the performance of high embankment built on soft soil reinforced with PHC piles. Computers and Geotechnics 107, pages 1-13.
Crossref
Hai-zuo Zhou, Gang Zheng, Xiao-xuan Yu, Tian-qi Zhang & Jing-jin Liu. (2018) Bearing capacity and failure mechanism of ground improved by deep mixed columns水泥搅拌桩复合地基的承载力与破坏模式研究. Journal of Zhejiang University-SCIENCE A 19:4, pages 266-276.
Crossref
Hanifi Canakci, Hamza Güllü & Mohanad Isam Kwana Dwle. (2017) Effect of Glass Powder Added Grout for Deep Mixing of Marginal Sand with Clay. Arabian Journal for Science and Engineering 43:4, pages 1583-1595.
Crossref
Ahmad Safuan A. RashidAhmad Beng Hong Kueh & Hisham Mohamad. (2018) Behaviour of soft soil improved by floating soil–cement columns. International Journal of Physical Modelling in Geotechnics 18:2, pages 95-116.
Crossref
Ahmad Safuan A RashidJonathan A. Black, Ahmad Beng Hong Kueh, Hisham Mohamad & Norhazilan Md Noor. (2017) Bearing capacity charts of soft soil reinforced by deep mixing. Proceedings of the Institution of Civil Engineers - Ground Improvement 170:1, pages 12-25.
Crossref
Shahram Pourakbar, Bujang B. K. Huat, Afshin Asadi & Mohammad Hamed Fasihnikoutalab. (2016) Model Study of Alkali-Activated Waste Binder for Soil Stabilization. International Journal of Geosynthetics and Ground Engineering 2:4.
Crossref
Ali Dehghanbanadaki, Kamarudin Ahmad & Nazri Ali. (2014) Experimental investigations on ultimate bearing capacity of peat stabilized by a group of soil–cement column: a comparative study. Acta Geotechnica 11:2, pages 295-307.
Crossref
Z. ZhangG. YeH. Xing. (2015) Consolidation analysis of soft soil improved with short deep mixed columns and long prefabricated vertical drains (PVDs). Geosynthetics International 22:5, pages 366-379.
Crossref
Cheng-li Guan, Yu-you Yang & Cheng-biao Wang. (2015) Rapid excavation with a newly developed retaining system: Spiral assembly steel structure. Journal of Central South University 22:7, pages 2719-2729.
Crossref
Ahmad Safuan A. Rashid, Jonathan A. Black, Ahmad Beng Hong Kueh & Norhazilan Md Noor. (2015) Behaviour of weak soils reinforced with soil cement columns formed by the deep mixing method: Rigid and flexible footings. Measurement 68, pages 262-279.
Crossref
Morteza Esmaeili, Morteza Gharouni-Nik & Hamid Khajehei. (2014) Evaluation of Deep Soil Mixing Efficiency in Stabilizing Loose Sandy Soils Using Laboratory Tests. Geotechnical Testing Journal 37:5, pages 20130099.
Crossref
Zhen Zhang, Jie Han & Guanbao Ye. (2014) Numerical Analysis of Failure Modes of Deep Mixed Column-Supported Embankments on Soft Soils. Numerical Analysis of Failure Modes of Deep Mixed Column-Supported Embankments on Soft Soils.
Shui-Long Shen, Huai-Na Wu, Yu-Jun Cui & Zhen-Yu Yin. (2014) Long-term settlement behaviour of metro tunnels in the soft deposits of Shanghai. Tunnelling and Underground Space Technology 40, pages 309-323.
Crossref
Shui-Long Shen, Zhi-Feng Wang, Suksun Horpibulsuk & Yong-Hyun Kim. (2013) Jet grouting with a newly developed technology: The Twin-Jet method. Engineering Geology 152:1, pages 87-95.
Crossref
Stefan Larsson, Richard Malm, Benjamin Charbit & Anders Ansell. (2012) Finite element modelling of laterally loaded lime–cement columns using a damage plasticity model. Computers and Geotechnics 44, pages 48-57.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.