Stabilization of Old MSW Landfills Using Reinforced Soil

Author(s):  
Debanjana Gupta ◽  
Manoj Datta ◽  
Bappaditya Manna
Keyword(s):  
1993 ◽  
Author(s):  
Kara L. Olen ◽  
Richard J. Fragaszy ◽  
Michael R. Purcell ◽  
Kenneth W. Cargill

Author(s):  
Ripon Hore ◽  
Sudipta Chakraborty ◽  
Ayaz Mahmud Shuvon ◽  
Md. Fayjul Bari ◽  
Mehedi A. Ansary

Materials ◽  
2021 ◽  
Vol 14 (11) ◽  
pp. 2743
Author(s):  
Seongnoh Ahn ◽  
Jae-Eun Ryou ◽  
Kwangkuk Ahn ◽  
Changho Lee ◽  
Jun-Dae Lee ◽  
...  

Ground reinforcement is a method used to reduce the damage caused by earthquakes. Usually, cement-based reinforcement methods are used because they are inexpensive and show excellent performance. Recently, however, reinforcement methods using eco-friendly materials have been proposed due to environmental issues. In this study, the cement reinforcement method and the biopolymer reinforcement method using sodium alginate were compared. The dynamic properties of the reinforced ground, including shear modulus and damping ratio, were measured through a resonant-column test. Also, the viscosity of sodium alginate solution, which is a non-Newtonian fluid, was also explored and found to increase with concentration. The maximum shear modulus and minimum damping ratio increased, and the linear range of the shear modulus curve decreased, when cement and sodium alginate solution were mixed. Addition of biopolymer showed similar reinforcing effect in a lesser amount of additive compared to the cement-reinforced ground, but the effect decreased above a certain viscosity because the biopolymer solution was not homogeneously distributed. This was examined through a shear-failure-mode test.


Author(s):  
Sudipta Chakraborty ◽  
Ripon Hore ◽  
Ayaz Mahmud Shuvon ◽  
M. S. Mazhar ◽  
Mehedi A. Ansary

2021 ◽  
pp. 100526
Author(s):  
A.F. Esen ◽  
P.K. Woodward ◽  
O. Laghrouche ◽  
T.M. Čebašek ◽  
A.J. Brennan ◽  
...  

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