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首页> 外文期刊>Journal of Hydraulic Engineering >Infill Mobility through Engineered Synthetic Turf on Steep Slopes
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Infill Mobility through Engineered Synthetic Turf on Steep Slopes

机译:通过在陡坡上工程的合成草皮填充流动性

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摘要

Understanding the complex flow and sediment transport on vegetated slopes is important for ecological restoration and conservation projects. This study quantifies the erodibility of sand infill through densely vegetated engineered turf on steep slopes. Flume testing was conducted on four different sand infill materials. The initially lain bed material had artificially high mobility due to the infill application method. Grains were elevated by the vegetation and protruded into the flow. Then, the bed material gradation during subsequent flows became progressively coarser. Two regimes were identified. Poorly sorted infill soils underwent noticeable changes to gradation and had decreasing mobility with increasing shear stress. Conversely, well-sorted soils had minimal changes to gradation and resulted in the expected trend of increasing sediment flux with increasing shear stress. Existing predictive formulas performed poorly, in particular for the soils with evolving gradation. An updated formulation to predict sediment flux is proposed based on a reduction to the effective bed shear stress and dimensionless parameters relating to the flow, sediment, and vegetation characteristics. The proposed modification results in greatly improved predictions for both sediment flux magnitude and trend.
机译:了解植被斜坡上的复杂流动和沉积物运输对于生态恢复和保护项目非常重要。这项研究量化了陡峭的山坡上密集的植被的工程草皮凝灰体填充物的蚀。在四种不同的沙子填充材料上进行水槽测试。由于填充施用方法,最初的床床材料具有人为高的流动性。谷物被植被升高并突出到流动中。然后,后续流动期间的床材料渐变变得逐渐造创。确定了两个制度。填充土壤的差异差异较差,渐变的变化明显变化,并且随着剪切应力的增加而降低了移动性。相反,分类良好的土壤对渐变的变化很小,并导致增加沉积物通量随着剪切应力增加的预期趋势。现有的预测公式表现不佳,特别是具有不断变化渐变的土壤。基于降低到与流动,沉积物和植被特征有关的有效床剪切应力和无量纲参数,提出了一种预测沉积物磁通的更新的制剂。所提出的修改导致对沉积物通量幅度和趋势的大大提高预测。

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