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作 者:Guo-Qiang Yu Qian Wang Li-Feng Zhu Xia Zhang
机构地区:[1]Key Laboratory of Groundwater and Ecology in Arid and Semi-arid Areas,Xi’an Center of Geological Survey,China Geological Survey,Xi’an 710054,China [2]Shaanxi Province Engineering Research Centre of Water Resources and Environment,Xi’an 710054,China [3]State Key Laboratory of Eco-hydraulics in Northwest Arid Region,Xi’an University of Technology,Xi’an 710048,China
出 处:《Journal of Groundwater Science and Engineering》2023年第1期4-19,共16页地下水科学与工程(英文版)
基 金:the National Natural Science Foundation of China(Grant No:42177346,52009103,U2243240);Innovation Capability Support Program of Shaanxi(2019TD-040);Observation and Research Station of Groundwater and Ecology in Yulin,Shaanxi,Ministry of Natural Resources。
摘 要:As vegetation are closely related to soil erosion,hydrodynamic parameter changes under various vegetation pattern conditions can be used as an important basis for the research of the soil erosion mechanism.Through upstream water inflow experiments conducted on a loess hillslope,how the vegetation pattern influences the hydrodynamic processes of sediment transport was analyzed.The results show that the placement of a grass strip on the lower upslope can effectively reduce runoff erosion by 69%,relying on the efficiency of regulated hydrodynamic process.The effective location of grass strip for hillslope alleviating erosion is on the lower part of the upslope,mainly due to the grass strip measure used to regulate the hydrodynamic system.As a result,the underlying surface runoff resistance is increased by 5 times,runoff shear stress is decreased by more than 90%,and runoff power decreased by over 92%.The measure greatly separates the scouring energy of surface runoff that acts on the slope soil.Therefore,the use of grass strips effectively decreases the energy of runoff flowing along the slope,eliminating soil erosion to a great extent and thereby achieving a better regulation of hydrodynamic processe.
关 键 词:Soil erosion Grass strip Scouring experiment Sediment transport Regulating mechanism Loess Plateau
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