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首页> 外文期刊>Hydrological ProcHydrological Processesrnesses >Factors affecting sediment trapping in vegetated filter strips: simulation study using VFSMOD
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Factors affecting sediment trapping in vegetated filter strips: simulation study using VFSMOD

机译:影响植物滤带中泥沙截留的因素:使用VFSMOD的模拟研究

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Soil and water conservation practices have been promoted for a long time, in order to sustain agricultural activities and prevent environmental pollution. Vegetated filter strips (VFS) have been used to reduce sediment pollution into water bodies at or near the pollutant source. However, factors effecting VFS performance under natural conditions have not been well understood owing to the physical, time and financial limitations of field experiments. The use of well-validated simulation models to understand the performance of VFS and factors affecting sediment deposition is highly justified. The objective of this research is to investigate sediment trapping in VFS and to study various factors affecting VFS performance using the simulation model VFSMOD, which was developed by researchers at University of North Carolina. Recently, VFSMOD has been validated successfully by using 21 filters with varying length, slope and vegetated cover. A wide range of five parameters was selected for the simulations, namely filter length, filter slope, manning roughness coefficient, soil type and characteristics of incoming sediment from adjacent fields. Computer simulations revealed that the length of filter is the most significant factor affecting sediment trapping in VFS. The relative increase in trapping efficiencies was not linearly related to an increase in filter length. Inflow sediment class also has a major influence on sediment trapping in VFS. The trapping efficiency of clay sediments in a 15 m length VFS was 47% compared with 92% for silt from incoming sediment. Manning roughness coefficient had a moderate effect on sediment trapping and was more significant in short filters. Land slope and soil type of VFS had a minor influence on the performance of VFS. Copyright © 2001 John Wiley & Sons, Ltd.
机译:长期以来,人们一直在倡导水土保持措施,以维持农业活动并防止环境污染。植被滤带(VFS)已被用于减少污染物源或附近污染水体的沉积物。然而,由于田间试验的物理,时间和经济上的限制,在自然条件下影响VFS性能的因素尚未得到很好的理解。使用充分验证的模拟模型来了解VFS的性能和影响沉积物沉积的因素是非常合理的。这项研究的目的是使用北卡罗来纳大学研究人员开发的模拟模型VFSMOD来研究VFS中的沉积物捕获并研究影响VFS性能的各种因素。最近,VFSMOD已通过使用21种长度,坡度和植被覆盖不同的过滤器而成功通过验证。为模拟选择了广泛的五个参数,即过滤器长度,过滤器斜率,人为粗糙度系数,土壤类型和来自相邻田地的进入沉积物的特征。计算机模拟表明,过滤器的长度是影响VFS中泥沙截留的最重要因素。捕集效率的相对增加与过滤器长度的增加不是线性相关的。流入沉积物类别也对VFS中的沉积物捕集有重要影响。在15 m长的VFS中,粘土沉积物的捕集效率为47%,而来自进入沉积物的淤泥的捕集效率为92%。曼宁粗糙度系数对沉积物的捕集具有中等影响,在短滤池中更为显着。 VFS的坡度和土壤类型对VFS的性能影响较小。版权所有©2001 John Wiley&Sons,Ltd.

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