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首页> 外文期刊>The Science of the Total Environment >Dynamics of runoff and sediment trapping performance of vegetative filter strips: Run-on experiments and modeling
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Dynamics of runoff and sediment trapping performance of vegetative filter strips: Run-on experiments and modeling

机译:植物滤料径流和泥沙截留性能的动力学:连续实验和建模

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摘要

Vegetative filter strips (VFSs) are a labor-saving and cost-effective agricultural best management practice to trap water runoff and sediment from the source areas. They also provide forage and/or fuel and are therefore potentially profitable for land owners. VFSs are however a dynamic system: the runoff delivery ratio (RDR) and sediment delivery ratio (SDR) vary with growth stage and vegetation types. The impacts of vegetation characteristics as well as soil physical properties modified by vegetation growth, on the RDR and SDR of VFS were evaluated by a flume experiment. Two plant species (cocksfoot (Dacíylis glomerata L) and white clover (Tri-foiium reperts L)) were tested at three stages in the growing season of 2016 (May, July, and August). The measured RDR and SDR were compared with the simulated results from Vegetative Filter Strip Modeling System (VFSMOD). In the early stages of the growing season, the cocksfoot formed a dense network of stems with high strip Manning's roughness faster than white clover. The runoff and sediment trapping effects of the white clover VFS were greater than that of cocksfoot VFS in all the three stages (lower RDR and SDR). This is likely attributed to strongly tillering, creeping stem posture and high infiltration capacity of the white clover VFS. WSMOD simulated the RDR and SDR reliably except under low vegetation coverage conditions (white clover in May). The results suggested that (1) both soil physical properties and vegetation characteristics should be considered for the species-specific, temporally variable performance of VFS; and (2) when using VFSMOD inform the VFS design, modelers should take the dynamics of vegetation, mainly through vertical saturated hydraulic conductivity, stem spacing and strip Manning's roughness into account, and select parameters that reflect the actual field conditions.
机译:营养性滤纸(VFS)是一种省力且具有成本效益的农业最佳管理方法,用于捕获源区的径流和沉积物。它们还提供草料和/或燃料,因此可能为土地所有者带来利润。 VFS是一个动态系统:径流输送比(RDR)和沉积物输送比(SDR)随生长期和植被类型而变化。通过水槽实验评估了植被特征以及植被生长对土壤物理性质的影响,对VFS的RDR和SDR有影响。在2016年的生长季节(5月,7月和8月)的三个阶段测试了两种植物物种(co(Dacíylisglomerata L)和白三叶草(Tri-foiium reperts L))。将测得的RDR和SDR与植物滤带建模系统(VFSMOD)的模拟结果进行了比较。在生长季节的早期,鸡爪形成了密集的茎干网络,高条状曼宁的粗糙度要比白三叶草快。在所有三个阶段(较低的RDR和SDR),白三叶草VFS的径流和泥沙截留效果都比s足VFS更大。这很可能归因于白三叶草VFS的强分,、茎秆蠕变姿势和高渗透能力。 WSMOD可靠地模拟了RDR和SDR,除非植被覆盖率较低(5月为三叶草)。结果表明:(1)VFS的特定于物种,随时间变化的性能应同时考虑土壤物理性质和植被特征; (2)在使用VFSMOD通知VFS设计时,建模者应主要通过垂直饱和导水率,茎距和条带Manning粗糙度来考虑植被动态,并选择能反映实际田间条件的参数。

著录项

  • 来源
    《The Science of the Total Environment 》 |2017年第1期| 54-64| 共11页
  • 作者单位

    Institute of Soil and Water Conservation, Northwest A&F University, Yangling 712100, China,Intitute of Water Saving Agriculture in Arid Regions of China Northwest A&F university.tYangling 712100, China;

    Institute of Soil and Water Conservation, Northwest A&F University, Yangling 712100, China,Intitute of Water Saving Agriculture in Arid Regions of China Northwest A&F university.tYangling 712100, China;

    Department of Renewable Resources, University of Alberta, Edmonton, Alberta T6G 2E3, Canada;

    Intitute of Water Saving Agriculture in Arid Regions of China Northwest A&F university.tYangling 712100, China,College of Water Resources and Architectural Engineering, Northwest A&f University, Yangling 712100, China;

    Institute of Soil and Water Conservation, Northwest A&F University, Yangling 712100, China,Intitute of Water Saving Agriculture in Arid Regions of China Northwest A&F university.tYangling 712100, China;

    Institute of Soil and Water Conservation, Northwest A&F University, Yangling 712100, China,Intitute of Water Saving Agriculture in Arid Regions of China Northwest A&F university.tYangling 712100, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil physical properties; Vegetation characteristics; Runoff and sediment trapping; Vegetative filter strips; Vegetation types; Growth stage; VFSMOD;

    机译:土壤物理性质;植被特征;径流和泥沙截留;营养滤纸条;植被类型;生长阶段;VFSMOD;

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