New Drag Force Formula of Bending Stems in Deriving Analytical Solutions of Velocity Profile for Flow Through Flexible Vegetation

Author:

Li Jin‐Jin12,Wang Wei‐Jie12ORCID,Dong Fei12,Peng Wen‐Qi12ORCID,Fan Jing‐Jing3,Zhao Han‐Qing4,Chou Qing‐Chuan5ORCID,Huang Ai‐Ping12

Affiliation:

1. State Key Laboratory of Simulation and Regulation of Water Cycle in River Basin China Institute of Water Resources and Hydropower Research Beijing China

2. Key Laboratory of Water Safety for Beijing‐Tianjin‐Hebei Region of Ministry of Water Resources Beijing China

3. School of Water Conservancy and Hydroelectric Power Hebei University of Engineering Handan China

4. China Three Gorges Corporation Wuhan China

5. State Key Laboratory of Freshwater Ecology and Biotechnology Institute of Hydrobiology The Chinese Academy of Sciences Wuhan China

Abstract

AbstractInvestigations of water flow movements affected by vegetation is a research hotspot in vegetation ecological restoration. The theory and equations of the flow velocity distribution under the influence of rigid vegetation are relatively mature. This study proposes a new drag force equation that varies with the vegetation bending angle and a new analytical solution of the velocity profile. Comparisons between the model calculation and experimental data, results showed that this new proposed model produced accurate simulations for flow through flexible vegetation for various deflections. In addition, this analytical model was verified to be applicable to rigid vegetation without a bending angle. Moreover, the features of the parameters adopted in this analytical equation are discussed, and the empirical equation for these parameters are presented. This study further improves the research in the field of environmental fluid mechanics and can serve as a theoretical underpinning for the ecological restoration of river courses.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Natural Science Foundation of Hebei Province

Natural Science Foundation of Beijing Municipality

Publisher

American Geophysical Union (AGU)

Reference113 articles.

1. Modeling coupling between eelgrass Zostera marina and water flow

2. Flow resistance of emergent rigid and flexible floodplain vegetation

3. Drag reduction through self-similar bending of a flexible body

4. A semi coupled shallow water model for vertical velocity distribution in an open channel with submerged flexible vegetation;Anupal B.;Research Square,2021

5. On inducing equations for vegetation resistance

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