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2021 | OriginalPaper | Buchkapitel

Behavior of Rectangular Footing on Geosynthetic Reinforced Crusher Dust

verfasst von : Bandita Paikaray, Sarat Kumar Das, Benu Gopal Mohapatra, Sweta Sarangi

Erschienen in: Smart Technologies for Sustainable Development

Verlag: Springer Singapore

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Abstract

Due to rapid industrialization, a huge amount of industrial waste such as red mud, fly ash, and crusher dust is being produced in enormous quantities every day causing environmental pollution to a great extent. Utilization of this waste in a better way is a challenge for the present society. Here in the present study, few laboratory model tests have been conducted on isolated rectangular footing (15 cm × 30 cm) taking crusher dust at loose and medium relative density state as a foundation material instead of sand or clay. The test was conducted on unreinforced and geosynthetic reinforced crusher dust to find the bearing capacity of the footing. Geosynthetic as a reinforcing element was used to enhance the bearing capacity of footing. The experimental results are presented in terms of bearing capacity of reinforced footing with respect to the unreinforced condition and also with the variation of the reinforcement layer. The bearing capacity ratio (BCR) has been obtained with respect to the unreinforced case. It is found that two layers and three layers of reinforcement showed a higher result compared to a single layer of reinforcement. Bearing capacity is increasing with an increase in relative density. It has been observed that the inclusions of geosynthetic reinforcement to foundation soil at loose state increased the bearing capacity by 85%, 107%, and 130% for single, double, and three layers of reinforcement and for the medium dense state, it is increasing by 77%, 113%, and 133%, respectively, with respect to unreinforced condition. The BCR is increasing with an increase in reinforcement and also with an increase in relative density.

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Literatur
1.
Zurück zum Zitat Gulsah (2004) Stabilization of expansive soils using aggregate waste, rock powder and lime. A Master of Science thesis, submitted to the graduate school of natural and applied sciences of the Middle East technical university Gulsah (2004) Stabilization of expansive soils using aggregate waste, rock powder and lime. A Master of Science thesis, submitted to the graduate school of natural and applied sciences of the Middle East technical university
2.
Zurück zum Zitat Gupta AK, Sachan AK, Sahu AK, Kumar S (2002) Stabilization of black cotton soil using crusher dust: a waste product of Bundelkhand region. In: Proceedings of Indian Geotechnical Conference, Allahabad, pp 308–311 Gupta AK, Sachan AK, Sahu AK, Kumar S (2002) Stabilization of black cotton soil using crusher dust: a waste product of Bundelkhand region. In: Proceedings of Indian Geotechnical Conference, Allahabad, pp 308–311
3.
Zurück zum Zitat Soosan TG, Sridharan A, Jose BT, Abraham BM (2005) Utilization of quarry dust to improve the geotechnical properties of soils in highway construction. Geotech Test J 28(4):1–9 Soosan TG, Sridharan A, Jose BT, Abraham BM (2005) Utilization of quarry dust to improve the geotechnical properties of soils in highway construction. Geotech Test J 28(4):1–9
4.
Zurück zum Zitat Soosan TG, Jose BT, Abraham BM (2001) Use of Crusher dust in embankment and highway construction. In: Proceedings of Indian Geo-Technical Conference, December, Indore, pp 274–277 Soosan TG, Jose BT, Abraham BM (2001) Use of Crusher dust in embankment and highway construction. In: Proceedings of Indian Geo-Technical Conference, December, Indore, pp 274–277
5.
Zurück zum Zitat Wood SA, Marek CR (1993) Recovery and utilization of quarry by-products in highway construction. Synthesis of Highway practice 199. National Academy Press, Washington Wood SA, Marek CR (1993) Recovery and utilization of quarry by-products in highway construction. Synthesis of Highway practice 199. National Academy Press, Washington
6.
Zurück zum Zitat Bai X-H, Huang X-Z (2013) Bearing capacity of square footing supported by a geobelt-reinforced crushed stone cushion on soft soil. Geotext Geomemb 38:37–42 Bai X-H, Huang X-Z (2013) Bearing capacity of square footing supported by a geobelt-reinforced crushed stone cushion on soft soil. Geotext Geomemb 38:37–42
7.
Zurück zum Zitat Adam MT, Collin JG (1997) Large model spread footing load tests on geosynthetic reinforced soil foundation. J. Geotech Eng ASCE 123(1):66–72CrossRef Adam MT, Collin JG (1997) Large model spread footing load tests on geosynthetic reinforced soil foundation. J. Geotech Eng ASCE 123(1):66–72CrossRef
8.
Zurück zum Zitat Azzam WR, Nasr AM (2015) Bearing capacity of shell strip footing on reinforced sand. J Adv Res 6:727–737CrossRef Azzam WR, Nasr AM (2015) Bearing capacity of shell strip footing on reinforced sand. J Adv Res 6:727–737CrossRef
9.
Zurück zum Zitat Basudhar PK, Saha S, Deb K (2007) Circular footing resting on the geotextile-reinforced sand bed. Geotext Geomemb 25:377–384CrossRef Basudhar PK, Saha S, Deb K (2007) Circular footing resting on the geotextile-reinforced sand bed. Geotext Geomemb 25:377–384CrossRef
10.
Zurück zum Zitat Dash SK, Rajagopal K, Krishnaswamy NR (2001) Strip footing on geocell reinforced sand beds with additional planar reinforcement. Geotext Geomemb 19:529–538CrossRef Dash SK, Rajagopal K, Krishnaswamy NR (2001) Strip footing on geocell reinforced sand beds with additional planar reinforcement. Geotext Geomemb 19:529–538CrossRef
11.
Zurück zum Zitat Farsakh MA, Chen Q, Sharma R (2013) An experimental evaluation of the behaviour of footings on the geosynthetic-reinforced sand. Soils and Foundation 53(2):335–348 Farsakh MA, Chen Q, Sharma R (2013) An experimental evaluation of the behaviour of footings on the geosynthetic-reinforced sand. Soils and Foundation 53(2):335–348
12.
Zurück zum Zitat Ghazavi M, Lavasan AA (2008) Interference effect of shallow foundations constructed on sand reinforced with geosynthetics. Geotext Geomemb 26:404–415CrossRef Ghazavi M, Lavasan AA (2008) Interference effect of shallow foundations constructed on sand reinforced with geosynthetics. Geotext Geomemb 26:404–415CrossRef
13.
Zurück zum Zitat Yetimoglu T, Wu TH, Saglamer A (1994) Bearing capacity of rectangular footings on geogrid-reinforced sand. J Geotech Eng ASCE 120(12):2083–2099CrossRef Yetimoglu T, Wu TH, Saglamer A (1994) Bearing capacity of rectangular footings on geogrid-reinforced sand. J Geotech Eng ASCE 120(12):2083–2099CrossRef
14.
Zurück zum Zitat Binquet J, Lee KL (1975) Bearing capacity tests on reinforced earth slabs. J Geotech Eng ASCE 101:1241–1255 Binquet J, Lee KL (1975) Bearing capacity tests on reinforced earth slabs. J Geotech Eng ASCE 101:1241–1255
15.
Zurück zum Zitat Guido VA, Chang DK, Sweeney MA (1986) Comparison of geogrid and geotextile reinforced slabs. Can Geotech J 23:435–440CrossRef Guido VA, Chang DK, Sweeney MA (1986) Comparison of geogrid and geotextile reinforced slabs. Can Geotech J 23:435–440CrossRef
17.
Zurück zum Zitat Yadu L, Tripathy RK (2013) Effect of length of geogrid layers in the bearing capacity ratio of geogrid reinforced granular fill-soft subgrade soil system. Procedia Soc Behav Sci 104:225–234CrossRef Yadu L, Tripathy RK (2013) Effect of length of geogrid layers in the bearing capacity ratio of geogrid reinforced granular fill-soft subgrade soil system. Procedia Soc Behav Sci 104:225–234CrossRef
18.
Zurück zum Zitat ASTM D4595-17 (2017) Standard test method for tensile properties of geotextiles by the wide-width strip method. ASTM International, West Conshohocken, PA ASTM D4595-17 (2017) Standard test method for tensile properties of geotextiles by the wide-width strip method. ASTM International, West Conshohocken, PA
19.
Zurück zum Zitat ASTM D4253-16 (2016) Standard test methods for maximum index density and unit weight of soils using a vibratory table. ASTM International, West Conshohocken, PA ASTM D4253-16 (2016) Standard test methods for maximum index density and unit weight of soils using a vibratory table. ASTM International, West Conshohocken, PA
Metadaten
Titel
Behavior of Rectangular Footing on Geosynthetic Reinforced Crusher Dust
verfasst von
Bandita Paikaray
Sarat Kumar Das
Benu Gopal Mohapatra
Sweta Sarangi
Copyright-Jahr
2021
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-5001-0_29