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Research Article

Behavior of lightweight-foamed soil reinforced by waste fishing net and its design guideline

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Pages 1299-1308 | Received 09 Jan 2023, Accepted 02 Mar 2023, Published online: 10 Apr 2023

References

  • Ang, E. C., and J. E. Loehr. 2003. Specimen Size Effects for Fiber-Reinforced Silty Clay in Unconfined Compression. Geotechnical Testing Journal 26 (2): 10410. doi:10.1520/GTJ11320J.
  • ASTM D2487-17e1. 2017. Standard Practice for Classification of Soils for Engineering Purposes (Unified Soil Classification System). ASTM International, West Conshohocken, PA.
  • ASTM D4318-17e1. 2017. Standard Test Methods for Liquid Limit, Plastic Limit, and Plasticity Index of Soils. ASTM International, West Conshohocken, PA.
  • ASTM D854-14. 2014. Standard Test Methods for Specific Gravity of Soil Solids by Water Pycnometer. ASTM International, West Conshohocken, PA.
  • Chompoorat, T., S. Likitlersuang, S. Sitthiawiruth, V. Komolvilas, P. Jamsawang, and P. Jongpradist. 2021. Mechanical Properties and Microstructures of Stabilised Dredged Expansive Soil from Coal Mine. Geomechanics and Engineering 25 (2): 143–157.
  • Chompoorat, T., T. Maikhun, and S. Likitlersuang. 2019. Cement-Improved Lake Bed Sedimentary Soil for Road Construction. Proceedings of the Institution of Civil Engineers – Ground Improvement 172 (3): 192–201. doi:10.1680/jgrim.18.00076.
  • Critchell, K., A. Bauer-Civiello, C. Benham, K. Berry, L. Eagle, M. Hamann, K. Hussey, and T. Ridgway. 2019. Plastic Pollution in the Coastal Environment: Current Challenges and Future Solutions. Coasts and Estuaries: The Future 2019: 595–609.
  • De Sarno, D., E. Vitale, D. Deneele, M. V. Nicotera, R. Papa, G. Russo, and G. Urciuoli. 2019. Effects of Cement and Foam Addition on Chemo-Mechanical Behaviour of Lightweight Cemented Soil (LWCS). E3S Web of Conferences 92: 11006. doi:10.1051/e3sconf/20199211006.
  • Ding, J., X. Wan, J. Wang, C. Mou, and M. Gao. 2021. Compression Behavior of Cement-Treated Marine Dredged Clay in Dalian Bay. Geomechanics and Engineering 26 (4): 345–355.
  • Hilal, A. A., N. H. Thom, and A. R. Dawson. 2015. The Use of Additives to Enhance Properties of Pre-Formed Foamed Concrete. International Journal of Engineering and Technology 7 (4): 286–293. doi:10.7763/IJET.2015.V7.806.
  • JHPC. 1996. Design and Execution Guide for Lightweight Embankment Method Using Air-Foamed Mixed Lightweight Soil (p. 58). Japan:Japan Highway Public Corporation.
  • JHS A 313. 1992. Japan Highway Public Corporation Test Method – Mortal Flow Test. Japan Highway Public Corporation.
  • Jiangbo, X., L. Yongzhen, W. Yuanzhi, Y. Changgen, Z. Liujun, Y. Lihua, Y. Xiaohua, Q. Youqiang, and L. Hengxing. 2021. Triaxial Axis Shear Mechanical Properties of Fiber-Reinforced Foamed Lightweight Soil. Journal of Materials in Civil Engineering 33 (4): 04021047. doi:10.1061/(ASCE)MT.1943-5533.0003632.
  • Kang, D., and E. Shin. 2016. Experimental Study on Behavior of the Lightweight Air-Foamed Soil considering Freezing-Thawing and Soaking Conditions. Journal of the Korean Geoenvironmental Society 17 (5): 37–46. doi:10.14481/jkges.2016.17.5.37.
  • Kang, G. o., Tsuchida, T. Hashimoto, R. Awazu, S. Kim, and Y. Sang. 2020. Erosion Resistance Capacity of Dredged Marine Clay Treated with Basic Oxygen Furnace Slag. Soils and Foundations 60 (1): 257–265. doi:10.1016/j.sandf.2020.01.004.
  • Kikuchi, Y., and H. Yoshino. 1998. Permeability of Light-Weight Soil Made of Dredged Slurry Mixed with Air Foam; Kiho Kongo Shorido No Tosui Tokusei. Report of the Port and Harbour Research Institute, Ministry of Transport 37 (1): 33–56.
  • Kim, Y. T., and H. S. Kang. 2011. Engineering Characteristics of Rubber-Added Lightweight Soil as a Flowable Backfill Material. Journal of Materials in Civil Engineering 23 (9): 1289–1294. doi:10.1061/(ASCE)MT.1943-5533.0000307.
  • Kim, T. H., T. H. Kim, and G. C. Kang. 2013. Performance Evaluation of Road Embankment Constructed Using Lightweight Soils on an Unimproved Soft Soil Layer. Engineering Geology 160: 34–43. doi:10.1016/j.enggeo.2013.03.024.
  • Kim, Y., H. Kim, and Y. Kwon. 2006. Compressive Strength Characteristics of Cement Mixing Lightweigth Soil for Recycling of Dredged Soil in Nakdong River Estuary. Journal of Ocean Engineering and Technology 20 (1): 7–15.
  • Kim, Y. T., H. J. Kim, and G. H. Lee. 2008. Mechanical Behavior of Lightweight Soil Reinforced with Waste Fishing Net. Geotextiles and Geomembranes 26 (6): 512–518. doi:10.1016/j.geotexmem.2008.05.004.
  • Kim, Z. C., and C. K. Lee. 2002. Mechanical Characteristics of Light-Weighted Foam Soil Consisiting of Dredged Soils. Journal of the Korean Geotechnical Society 18 (4): 309–317.
  • Kim, J.-D., K.-H. Lee, and B.-S. Lee. 2007. Mechanical Properties of Controlled Low Strength Matreials with Marine Dredged Soil. Journal of the Korean Society of Hazard Mitigation 7 (2): 35–44.
  • Kim, D.-C., G.-G. Yea, H.-Y. Kim, S.-B. Kim, and H.-L. Choi. 2018. Dredging Material Application Lightweight-Foamed Soil Full Scale Test Bed Vertification. Korea Society of Coastal Disaster Prevention 5 (4): 163–172. doi:10.20481/kscdp.2018.5.4.163.
  • Kim, D., Y. Yoon, G. Yoon, and K. G. Society. 2017. Compressive Strength Characteristics of Light-Weight Air Foamed Soil Using Dredged Silty Soils. Journal of the Korean Geo-Environmental Society 18 (5): 27–33.
  • Lee, Y.-J., G.-G. Yea, S.-W. Park, and H.-Y. Kim. 2015. Behavior Characteristics of Underground Flexible Pipe Backfilled with Lightweight-Foamed Soil. Journal of the Korean Geosynthetic Society 14 (1): 43–50. doi:10.12814/jkgss.2015.14.1.043.
  • Lee, Y.-J., G.-G. Yea, S.-W. Park, and H.-Y. Kim. 2014. Prediction about Field Mixing Ratio of Lightweight-Foamed Soil Made with Saemangeum Dredged Soil. Proceedings of 2014 Fall Geosynthetics Conference, 121–124.
  • Li, Q., and X. Peng. 2001. Experimental Study on Light Backfill Material. East China Highway 129 (2): 55–58.
  • Li, M., K. Wen, L. Li, and A. Tian. 2017. Mechanical Properties of Expanded Polystyrene Beads Stabilized Lightweight Soil. Geomechanics and Engineering 13 (3): 459–474.
  • Li, Z. L., and K. F. Zhang. 2012. Application and Research on New Technology of Foam Lightweight Soil in Treatment of Soft Soil Foundation of Railway Engineering. Applied Mechanics and Materials 204–208: 1622–1625. doi:10.4028/www.scientific.net/AMM.204-208.1622.
  • Nguyen, T. T. M., S. Rabbanifar, N. A. Brake, Q. Qian, K. Kibodeaux, H. E. Crochet, S. Oruji, et al. 2018. Stabilization of Silty Clayey Dredged Material. Journal of Materials in Civil Engineering 30 (9): 04018199. doi:10.1061/(ASCE)MT.1943-5533.0002391.
  • Orasutthikul, S., D. Unno, and H. Yokota. 2017. Effectiveness of Recycled Nylon Fiber from Waste Fishing Net with Respect to Fiber Reinforced Mortar. Construction and Building Materials 146: 594–602. doi:10.1016/j.conbuildmat.2017.04.134.
  • Otani, J., T. Mukunoki, and Y. Kikuchi. 2000. Evaluation of Physical Property of Light-Weight Soil with Air Foam Using X-Ray CT Method. Doboku Gakkai Ronbunshu 2000 (652): 269–278. doi:10.2208/jscej.2000.652_269.
  • Park, S., I. Lee, B. H. Yi, J. Y. Lee, Y. Yi, and K. Sung. 2008. Initial Change of Environmental Factors at Artificial Tidal Flat Constructed Using Ocean Dredged Sediment. Journal of the Korean Society for Marine Environmental Engineering 11 (2): 63–69.
  • Ren, W., T. Yang, M. Huang, A. Zhang, H. Wei, W. Mi, Y. Wang, and J. Hu. 2021. Optimal Mixing Ratio and SWCC Fitting of Lightweight Soil with Cotton Stalk Fibres. Soils and Foundations 61 (2): 453–464. doi:10.1016/j.sandf.2021.01.004.
  • Song, J. H., J. C. Im, and S. W. Hong. 2008. Analysis of Compressive Strength of Lightweight Air-Mixed Soil according to the Properties of Soil. Journal of the Korean Geotechnical Society 24 (11): 157–166.
  • Spadea, S., I. Farina, A. Carrafiello, and F. Fraternali. 2015. Recycled Nylon Fibers as Cement Mortar Reinforcement. Construction and Building Materials 80: 200–209. doi:10.1016/j.conbuildmat.2015.01.075.
  • Sukkarak, R., P. Jongpradist, P. Jamsawang, P. Sukontasukkul, and P. Chindaprasirt. 2019. Effect of Polypropylene Fiber on the Flexural Strength Properties of Lightweight Foam Mixed Soil. Advances in Materials Science and Engineering 2019: 1–12. doi:10.1155/2019/1607325.
  • Toda, K., R. Kikuchi, T. Otake, S. Nishimura, Y. Akashi, M. Aimoto, T. Kokado, and T. Sato. 2020. Effect of Soil Organic Matters in Dredged Soils to Utilization of Their Mixtures Made with a Steel Slag. Materials 13 (23): 5450. doi:10.3390/ma13235450.
  • Vo, H. V., and D. Park. 2016. Lightweight Treated Soil as a Potential Sustainable Pavement Material. Journal of Performance of Constructed Facilities 30 (1): 1–7. doi:10.1061/(ASCE)CF.1943-5509.0000720.
  • Wang, M. H., Y. He, and B. Sen. 2019. Research and Management of Plastic Pollution in Coastal Environments of China. Environmental Pollution (Barking, Essex : 1987) 248: 898–905. doi:10.1016/j.envpol.2019.02.098.
  • Wasti, Y. 1987. Liquid and Plastic Limits as Determined from the Fall Cone and the Casagrande Methods. Geotechnical Testing Journal 10 (1): 26–30. doi:10.1520/GTJ10135J.
  • Watabe, Y., and T. Noguchi. 2011. Site-Investigation and Geotechnical Design of D-Runway Construction in Tokyo Haneda Airport. Soils and Foundations 51 (6): 1003–1018. doi:10.3208/sandf.51.1003.
  • Webster, S. L., and R. L. Santoni. 1997. Contingency Airfield and Road Construction Using Geosynthetic Fiber Stabilization of Sands (Vol. 97, No. 4). Vicksburg, MS: US Army Engineer Waterways Experiment Station.
  • Yea, G., Y. Lee, H. Kim, G. Yoon, and S. Han. 2018. Material and Behavior Characteristics of Lightweight Embankment for Road Constructed on Soft Ground. Journal of the Korean Geosynthetics Society 17 (2): 41–49.
  • Yokota, S., and N. Mishima. 1996. Artificial Light Weight Ground Made of Light-Weight Soil with Mixture of Foam; Kiho Kongo Keiryodo wo Mochiita Jinko Keiryo Jiban. Soil Mechanics and Foundation Engineering 44 (5): 5–8.
  • Yoobanpot, N., P. Jamsawang, K. Krairan, P. Jongpradist, and S. Horpibulsuk. 2018. Reuse of Dredged Sediments as Pavement Materials by Cement Kiln Dust and Lime Treatment. Geomechanics and Engineering 15 (4): 1005–1016.
  • Yoon, G. L., and B. T. Kim. 2004. Compressibility and Strength Characteristics of Light-Weighted Foam Soil. Journal of the Korean Geotechnical Society 20 (4): 5–13.
  • Yoon, G., Y. W. Yoon, and K. H. Ahn. 2012. Shear Strength and Deformation Characteristics of Lightweight Soils Mixed with Tire Powder Shear Strength and Deformation Characteristics of. Journal of the Korean Society of Civil Engineers 32 (6C): 259–265. doi:10.12652/Ksce.2012.32.6C.259.
  • Yoon, G. L., and S. K. You. 2004. Strength and Deformation Characterisitics of Lightweight-Foamed Soil Using in-Situ Soil. Journal of the Korean Geotechnical Society 20 (9): 125–131.
  • Yun, D., and Y. Kim. 2012. Strength Characteristic of Waste Fishing Net-Added Lightweight Soil considering Glue Treatment. Journal of Ocean Engineering and Technology 26 (3): 39–45. doi:10.5574/KSOE.2012.26.3.039.
  • Yun, D., and Y. Kim. 2014. Characteristics of Sedimentation and Consolidation for Song-Do Dredged Soil. Journal of Korean Society of Hazard Mitigation 14 (5): 371–379. doi:10.9798/KOSHAM.2014.14.5.371.
  • Zhao, X., G. Zhao, J. Li, and P. Zhang. 2019. Unconfined Compressive Strength Property and Its Mechanism of Construction Waste Stabilized Lightweight Soil. Geomechanics and Engineering 19 (4): 307–314.
  • Zhou, Y., M. Li, K. Wen, and R. Tong. 2019. Stress-Strain Behaviour of Reinforced Dredged Sediment and Expanded Polystyrenes Mixture under Cyclic Loading. Geomechanics and Engineering 17 (6): 507–513.

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