Author:
Zhang Junhui,Hu Huiren,Fu Wei,Peng Junhui,Li Feng,Ding Le
Abstract
AbstractAn accurate estimation of earth pressure on retaining walls is imperative to achieving its design. This paper presents an analytical method framework that considers the effect of plant transpiration relative to the traditional calculation approaches. Specifically, a closed-form solution for one-dimensional steady unsaturated flow considering plant transpiration is incorporated into a representation of effective stress to obtain the changes in matric suction, and effective stress. The representations are used to extend Hooke’s law and Rankine’s earth pressure theory to determine at-rest, active, and passive earth pressures. Subsequently, the analytical method is used in a series of analysis case studies on the influence of root architecture types, transpiration rates, and soil types on earth pressure, to reveal that it can rapidly obtain the earth pressure. Notably, the effect of plant transpiration on earth pressure is significant. Furthermore, it is found that soil types and transpiration rates have a larger influence than root architecture types. Collectively, the research not only reveals the effect of plant on earth pressure for retaining wall, but also provides a theoretical basis for further exploration of the contribution of plants to the stability of retaining wall.
Funder
National Key R&D Program of China
National Natural Science Foundation of China
Key Research and Development Program of Hunan Province
Postgraduate Scientific Research Innovation Project of Hunan Province
Science and Technology Innovation Program of Hunan Province
Project of Scientific Research of Hunan Provincial Department of Education
Open Fund of National Engineering Research Center of Highway Maintenance Technology
Publisher
Springer Science and Business Media LLC
Cited by
3 articles.
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