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基于植物功能性状的土壤侵蚀退化修复框架
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作者 郝好鑫 吕凤玲 +1 位作者 闫峰陵 郭忠录 《中国水土保持科学》 CSCD 北大核心 2024年第2期159-166,共8页
当前,我国水土保持林草措施正在积极向提升生态功能为目标转变。为实现这一目标,管理者和工程师需要明确的生态学理论和方法作为指导。通过综述植物功能性状对侵蚀胁迫的响应和对土壤功能的影响机制,验证基于性状响应-影响的生态修复框... 当前,我国水土保持林草措施正在积极向提升生态功能为目标转变。为实现这一目标,管理者和工程师需要明确的生态学理论和方法作为指导。通过综述植物功能性状对侵蚀胁迫的响应和对土壤功能的影响机制,验证基于性状响应-影响的生态修复框架在土壤侵蚀治理中的2个关键理论:1)植物性状的变异体现植物对侵蚀退化环境的适应性;2)植物性状显著影响土壤生态过程。进而提出基于植物性状响应—影响的侵蚀退化修复框架。该框架将植物性状对环境变化响应纳入性状对生态系统影响的分析,根据恢复的水土保持服务目标,选择具有影响上述功能的特定植物性状,选择不受侵蚀(或物种间相互作用)胁迫或具有抗逆性的性状进行植物配置。该框架能扩宽当前土壤侵蚀植被治理的研究思路和实践领域,对提升我国的水土保持林草措施具有重要参考意义。 展开更多
关键词 侵蚀退化 植被恢复 植物功能性状 土壤保持 生态修复 性状响应—影响框架
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Influence of particle shape on the erodibility of non-cohesive soil: Insights from coupled CFD-DEM simulations 被引量:6
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作者 Yuan Guo Yang Yang Xiong (Bill) Yu 《Particuology》 SCIE EI CAS CSCD 2018年第4期12-24,共13页
Soil erosion is a critical process that is being studied in soil science, hydraulic engineering, and geotech- nical engineering. Among many societal and environmental impacts, soil erosion is a major cause for the fai... Soil erosion is a critical process that is being studied in soil science, hydraulic engineering, and geotech- nical engineering. Among many societal and environmental impacts, soil erosion is a major cause for the failures of bridges. The erodibility of soil is determined by its physical and geochemical properties and is also affected by surrounding biological activities. In most of the current models for soil erosion, erodibility of non-cohesive soil is characterized by its median grain size (Dso), density, and porosity. The contribution to erodibility of the irregular shape of soil grains, which plays an important role in the mechanical and hydraulic properties of coarse-grained soils, is generally ignored. In this paper, a coupled computational fluid dynamics and discrete element method model is developed to analyze the influence of the shape of sand grain on soil erodibility. A numerical model for the drag force on spherical and non-spherical particles is verified by using the results from physical free settling experiments. Erosion of sand grains of different shapes is simulated in a virtual erosion function apparatus, a laboratory device used to mea- sure soil erodibility. The simulation results indicate that the grain shape has major effects on erodibility. Spherical particles do not show a critical velocity because of their low rolling resistance, but a critical velocity does exist for angular particles owing to grain interlocking. The erosion rate is proportional to the flow velocity for both spherical and non-spherical particles. The simulation result for angular particle erosion is fairly consistent with the experimental observations, implying that grain shape is an important factor affecting the erodibility of non-cohesive soils. 展开更多
关键词 CFD-DEM Soil erosion Grain shape Erodibility of coarse-grained soil erosion function apparatus mode
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