Soil bioengineering using vegetation under climate change

Junjun Ni , Yang Xiao , Jinquan Shi , Jieling He

Biogeotechnics ›› 2024, Vol. 2 ›› Issue (1) : 100067

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Biogeotechnics ›› 2024, Vol. 2 ›› Issue (1) :100067 DOI: 10.1016/j.bgtech.2023.100067
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Soil bioengineering using vegetation under climate change

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Junjun Ni, Yang Xiao, Jinquan Shi, Jieling He. Soil bioengineering using vegetation under climate change. Biogeotechnics, 2024, 2(1): 100067 DOI:10.1016/j.bgtech.2023.100067

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CRediT authorship contribution statement

Junjun Ni: Writing - original draft. Yang Xiao: Writing - review & editing, Supervision. Jinquan Shi: Writing - review & editing. Jieling He: Writing - review & editing.

References

[1]

Bordoloi, S., & Ng, C. W. W. (2020). The effects of vegetation traits and their stability functions in bio-engineered slopes: A perspective review. Engineering Geology, 275, Article 105742. https://doi.org/10.1016/j.enggeo.2020.105742

[2]

Cui, P., Peng, J., Shi, P., Tang, H., Ouyang, C., Zou, Q., & Lei, Y. (2021). Scientific challenges of research on natural hazards and disaster risk. Geography and Sustainability, 2(3), 216-223. https://doi.org/10.1016/j.geosus.2021.09.001.

[3]

Elia, G., Cotecchia, F., Pedone, G., Vaunat, J., Vardon, P. J., Pereira, C., & Osinski, P. (2017). Numerical modelling of slope-vegetation-atmosphere interaction: An overview. Quarterly Journal of Engineering Geology and Hydrogeology, 50(3), 249-270. https://doi.org/10.1144/qjegh2016-079.

[4]

Hulme, M., Barrow, E. M., Arnell, N. W., Harrison, P. A., Johns, T. C., & Downing, T. E. (1999). Relative impacts of human-induced climate change and natural climate variability. Nature, 397(6721), 688-691. https://doi.org/10.1038/17789.

[5]

Kamchoom, V., Leung, A. K., & Ng, C. W. W. (2014). Effects of root geometry and transpiration on pull-out resistance. Géotechnique Letters, 4(4), 330-336. https://doi.org/10.1680/geolett.14.00086.

[6]

Lian, B., Peng, J., Zhan, H., & Wang, X. (2019). Mechanical response of root-reinforced loess with various water contents. Soil and Tillage Research, 193, 85-94. https://doi.org/10.1016/j.still.2019.05.025.

[7]

Manis, J. E., Garvis, S. K., Jachec, S. M., & Walters, L. J. (2015). Wave attenuation experiments over living shorelines over time: A wave tank study to assess recreational boating pressures. Journal of coastal conservation, 19, 1-11. https://doi.org/10.1007/s11852-014-0349-5.

[8]

Ng, C., Leung, A., & Ni, J. (2019). Plant-soil slope interaction. CRC Press. https://doi.org/10.1201/9781351052382.

[9]

Ng, C. W. W. (2017). Atmosphere-plant-soil interactions: Theories and mechanisms. Chinese Journal of Geotechnical Engineering, 39(1), 1-47. https://doi.org/10.11779/CJGE201701001.

[10]

Ng, C. W. W., & Menzies, B. (2014). Advanced unsaturated soil mechanics and engineering. CRC Press. https://doi.org/1482266121.

[11]

Ng, C. W. W., Ni, J. J., & Leung, A. K. (2020). Effects of plant growth and spacing on soil hydrological changes: a field study. Géotechnique, 70(10), 867-881. https://doi.org/10.1680/jgeot.18.P.207.

[12]

Ng, C. W. W., Zhang, Q., Zhou, C., & Ni, J. (2022). Eco-geotechnics for human sustainability. Science China Technological Sciences, 65(12), 2809-2845. https://doi.org/10.1007/s11431-022-2174-9.

[13]

Ni, J. J., Leung, A. K., & Ng, C. W. W. (2019). Modelling effects of root growth and decay on soil water retention and permeability. Canadian Geotechnical Journal, 56(7), 1049-1055. https://doi.org/10.1139/cgj-2018-0402.

[14]

Pallewattha, M., Indraratna, B., Heitor, A., & Rujikiatkamjorn, C. (2019). Shear strength of a vegetated soil incorporating both root reinforcement and suction. Transportation Geotechnics, 18, 72-82. https://doi.org/10.1016/j.trgeo.2018.11.005.

[15]

Peng, J. B., & Lan, H. X. (2022). Ecological geology and eco-geological environment system. Journal of Earth Sciences and Environment, 44(6), 877-893. https://doi.org/10.19814/j.jese.2022.06006.

[16]

Qin, M., Cui, P., Jiang, Y., Guo, J., Zhang, G., & Ramzan, M. (2022). Occurrence of shallow landslides triggered by increased hydraulic conductivity due to tree roots. Landslides, 19(11), 2593-2604. https://doi.org/10.1007/s10346-022-01921-8.

[17]

R.K. Rowe S. Jefferis Protecting the environment from contamination with barrier systems: advances and challenges State-of-the-art Lecture, Proceedings of the 20th international conference on soil mechanics and geotechnical engineering 2022 Sydney, Australia 187 293.https://doi.org/10.13031/2013.24048.

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