Bearing capacity of soft soil model treated with end-bearing bottom ash columns

被引:0
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作者
Razieh Moradi
Aminaton Marto
Ahmad Safuan A. Rashid
Mohammad Moeen Moradi
Abideen Adekunle Ganiyu
Suksun Horpibulsuk
机构
[1] Universiti Teknologi Malaysia,Department of Geotechnics and Transportation
[2] Universiti Teknologi Malaysia,Department of Environmental and Green Technology (EGT), Malaysian
[3] Universiti Teknologi Malaysia,Japan International Institute of Technology
[4] Universiti Teknologi Malaysia,Department of Geotechnics and Transportation
[5] Oloom Tahghighat University,Centre of Tropical Geoengineering (GEOTROPIK), Faculty of Civil Engineering
[6] Military Technological College,Department of Civil Engineering and Quantity Surveying
[7] Suranaree University of Technology,School of Civil Engineering, Center of Excellence in Innovation for Sustainable Infrastructure Development
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关键词
Geotextile; Soft clay; Bottom ash; End-bearing granular column; Soil improvement;
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摘要
Granular column technique is a soil improvement method used to increase the bearing capacity of a soft soil area by replacing the soil with a group of granular column materials. The by-product utilisation is a worldwide interest for sustainable infrastructure development. Bottom ash, which is a combustion deposit derived from coal burning, is a potential by-product that could be used alternatively to sand or aggregate as a green granular column material. This research is to study the potential use of the bottom ash column-improved soft clay by conducting a series of small-scale physical modelling test. The bearing capacity behaviour and failure mode of soft clay improved with end-bearing group of bottom ash columns with and without geotextile encasement are investigated. The bearing capacity of soft clay is significantly enhanced by the inclusion of bottom ash columns; that is, 239% of bearing capacity improvement is observed with only 13% of improvement area. The bulging of the bottom ash column is transferred to buckling failure with higher bearing capacity when the bottom ash column is encased by geotextile. The outcome of this research leads to the usage of bottom ash by-product as a granular column material in sustainable soil improvement technique.
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