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EXPERIMENTAL STUDIES OF FACTORS IN DETERMINING SEDIMENT TRAPPING IN VEGETATIVE FILTER STRIPS

机译:确定植物滤料条中泥沙诱捕因素的实验研究

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摘要

Sediment trapping in vegetative filter strips (VFS) was studied in a laboratory flume with simulated vegetative filter strips (VFS) of different densities, flume slopes, flow rates, sediment materials, and concentrations. Results showed that VFS density, flume slope, and sediment particle size are the major factors in determining sediment deposition. Flow rate had a minor effect, and sediment concentration hardly affected sediment deposition. The trapping process varies with time according to a three-parameter exponential relationship with the parameters related to the bristle densities and flume slope. Trapping efficiency increases with vegetation density and decreases with slope. When the VFS density increased from 2,500 to 10,000 bunches/m2, the trapping efficiency increased by about 45%. As slope increased to 4% or 6%, the VFS with densities of 2,500 and 10,000 bunches/m2 failed to trap sediment. Over 80% of the sediment trapped by the VFS deposited in the approach channel to the VFS and in the upper half of the VFS. Most of the deposited sediment particles were larger than 150 µ m in diameter. As the slope increased, deposition moved downstream and deposited sediment became larger
机译:在实验室水槽中研究了植物滤池(VFS)中的泥沙截留情况,模拟了不同密度,水槽坡度,流速,沉积物材料和浓度的植物滤池(VFS)。结果表明,VFS密度,水槽斜率和沉积物粒径是决定沉积物沉积的主要因素。流速影响较小,沉积物浓度几乎不会影响沉积物的沉积。捕集过程随与刷毛密度和水槽斜率有关的参数的三参数指数关系随时间变化。诱捕效率随植被密度而增加,随坡度而降低。当VFS密度从2500束/平方米增加到10,000束/平方米时,捕集效率提高了约45%。当坡度增加到4%或6%时,密度为2,500和10,000束/ m2的VFS无法捕获沉积物。 VFS捕获的沉积物中80%以上沉积在进入VFS的进水通道和VFS的上半部分。大部分沉积的沉积物颗粒直径大于150 µm。随着坡度的增加,沉积物向下游移动,沉积物变大

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  • 来源
    《Transactions of the ASABE》 |2001年第2期|p.277-288|共12页
  • 作者

    C.-X. Jin; M. J. M. Römkens;

  • 作者单位

    Chang-xing Jin, ASAE Member Engineer, Post-Doctoral Researcher, University of Minnesota, Biosystems and Agricultural Engineering Department, St. Paul, Minnesota;

    and Mathias J. M. Römkens, ASAE Member Engineer, Soil Scientist, National Sedimentation Laboratory, USDA-ARS, Oxford, Mississippi. Corresponding author: Chang-xing Jin, University of Minnesota, Biosystems and Agricultural Engineering Dept., 1390 Eckles Avenue, St. Paul, MN 55108-6005,;

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

    Vegetative filter strips; Sediment trapping;

    机译:营养滤纸条;泥沙截留;

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