Mitigation of Fine Sand Erodibility Using Nano Clay Additives
Author:
Publisher
Springer Science and Business Media LLC
Subject
Polymers and Plastics,Civil and Structural Engineering
Link
https://link.springer.com/content/pdf/10.1007/s40891-023-00442-1.pdf
Reference67 articles.
1. Lei X, Yang Z, He S et al (2017) Numerical investigation of rainfall-induced fines migration and its influences on slope stability. Acta Geotech 12(6):1431–1446
2. Chehlafi A, Kchikach A, Derradji A, Mequedade N (2019) Highway cutting slopes with high rainfall erosion in Morocco: evaluation of soil losses and erosion control using concrete arches. Eng Geol 260:105200
3. Li L, Lan H, Peng J (2020) Loess erosion patterns on a cut-slope revealed by LiDAR scanning. Eng Geol 268:105516
4. Rodrigo-Comino J, Novara A, Gyasi-Agyei Y (2018) Effects of parent material on soil erosion within Mediterranean new vineyard plantations. Eng Geol 246:255–261
5. Moore WL, JrFD M (1962) Experiments on the scour resistance of cohesive sediments. J Geophys Res 67(4):1437–1446
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