Cheap and Effective Methods for Soil Stabilization in India: A Comprehensive Study

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Year : June 14, 2024 at 3:41 pm | [if 1553 equals=””] Volume :11 [else] Volume :11[/if 1553] | [if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] : 01 | Page : 1-16

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Deepak Tiwari, Jay Shankar Jha, Himanshu Pratap Singh, Rohit Vishwakarma, Ayush Gupta

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  1. Assistant Professor, Student, Student, Student, Student Department of Civil Engineering, University Institute of Technology, Rajiv Gandhi Proudyogiki Vishwavidyalaya Shivpuri, Madhya Pradesh, India, Department of Civil Engineering, University Institute of Technology, Rajiv Gandhi Proudyogiki Vishwavidyalaya Shivpuri, Madhya Pradesh, India, Department of Civil Engineering, University Institute of Technology, Rajiv Gandhi Proudyogiki Vishwavidyalaya Shivpuri, Madhya Pradesh, India, Department of Civil Engineering, University Institute of Technology, Rajiv Gandhi Proudyogiki Vishwavidyalaya Shivpuri, Madhya Pradesh, India, Department of Civil Engineering, University Institute of Technology, Rajiv Gandhi Proudyogiki Vishwavidyalaya Shivpuri, Madhya Pradesh, India
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Abstract

nSoil stabilization is a crucial aspect of infrastructure development, especially in regions like India, where diverse soil types present challenges to construction projects. This research paper delves into cost-effective methods for enhancing soil stability tailored specifically to the Indian context. Through a comprehensive study, various low-cost techniques are explored for their effectiveness in improving soil properties and mitigating construction risks. By analysing case studies and experimental data, this paper aims to offer valuable insights into sustainable soil stabilization practices that can support infrastructure development in India while considering economic constraints and environmental sustainability.

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Keywords: soil stabilization, infrastructure development, low-cost methods, construction, soil properties, sustainability, economic constraints, environmental impact

n[if 424 equals=”Regular Issue”][This article belongs to Journal of Geotechnical Engineering(joge)]

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[/if 424][if 424 equals=”Special Issue”][This article belongs to Special Issue under section in Journal of Geotechnical Engineering(joge)][/if 424][if 424 equals=”Conference”]This article belongs to Conference [/if 424]

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How to cite this article: Deepak Tiwari, Jay Shankar Jha, Himanshu Pratap Singh, Rohit Vishwakarma, Ayush Gupta. Cheap and Effective Methods for Soil Stabilization in India: A Comprehensive Study. Journal of Geotechnical Engineering. May 4, 2024; 11(01):1-16.

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How to cite this URL: Deepak Tiwari, Jay Shankar Jha, Himanshu Pratap Singh, Rohit Vishwakarma, Ayush Gupta. Cheap and Effective Methods for Soil Stabilization in India: A Comprehensive Study. Journal of Geotechnical Engineering. May 4, 2024; 11(01):1-16. Available from: https://journals.stmjournals.com/joge/article=May 4, 2024/view=0

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References

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1. Brooks, C. (2009). Utilization of fly ash and rice husk ash for soil stabilization. International Journal of Research and Reviews in Applied Sciences, 1(3), 209-217.
2. Negi, A. S., Faizan, M., Pandey, D., & Singh, R. (2013). Soil stabilization using lime. International Journal of Innovative Research in Science, Engineering and Technology.
3. Prabhakar, J., & Sridhar, R. S. (2002). Effect of random inclusion of sisal fiber on strength behavior of soil. Construction and Building Materials, 16(202), 123-131.
4. Hejazi, S. M., Sheikhzadeh, M., Abtahi, S. M., & Zadhoush, A. (2012). A simple review of soil reinforcement by using natural and synthetic fibers. Construction and Building Materials, 30, 100-116.
5. Özdemir, M. A. (Year). Improvement of bearing capacity of a soft soil by the addition of fly ash.
6. Sengupta, A., Mukherjee, S., & Ghosh, A. (Year). Improvement of bearing ratio of clayey sub-grade using compacted fly-ash layer.
7. Choksi, R., Mishra, C. B., & Patel, N. (2018). Pursuance of waste marble powder to improve soil stabilization. International Research Journal of Engineering and Technology (IRJET).
8. Bernal, A., Lovell, C. W., & Salgado, R. (1996). Laboratory study on the use of tire shreds and rubber-sand in backfilled and reinforced soil applications. Publication FHWA/IN/JHRP-96/12. Joint Highway Research Project, Indiana Department of Transportation and Purdue University, West Lafayette, Indiana. doi: 10.5703/1288284313259.
9. Carraro, J. A. H., Dunham-Friel, J., & Smidt, M. (2008). Beneficial use of scrap tire rubber in low volume road and bridge construction with expansive soils. (USDOT-MPC/274 INTERIM REPORT), Department of Civil and Environmental Engineering, Colorado State University.
10. Ghani, A. N. A., Ahmad, F., Hamir, R., & Mohd, S. (2002). Scrap tire based lightweight geomaterial for civil engineering works. In Proceedings of Malaysian Science Technology Congress (CD ROM), October 17-19, Genting Highlands, Malaysia.
11. Joint Departments of the Army and Air Force. (1994). Soil stabilization for pavements. USA, TM 5-822- 14/AFMAN 32-8010, October 25.
12. Phanikumar, B. R., & Sharma, R. S. (2004). Effect of fly ash on engineering properties of expansive soil. Journal of Geotechnical and Geoenvironmental Engineering, 130(7), 764-767.
13. Bhuvaneshwari, S., Robinson, R. G., & Gandhi, S. R. (2005). Stabilization of expansive soil using fly ash. India, Delhi.

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[if 424 not_equal=””]Regular Issue[else]Published[/if 424] Subscription Original Research

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Journal of Geotechnical Engineering

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[if 344 not_equal=””]ISSN: 2394-1987[/if 344]

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Volume 11
[if 424 equals=”Regular Issue”]Issue[/if 424][if 424 equals=”Special Issue”]Special Issue[/if 424] [if 424 equals=”Conference”][/if 424] 01
Received May 1, 2024
Accepted May 3, 2024
Published May 4, 2024

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