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STATUS ASSESSMENT OF AGRICULTURAL DRAINAGE DITCHES

机译:农业排水沟现状评估

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Poor maintenance, environmental concerns, land use changes, and adaptation to climate change are creating a growing need for better agricultural drainage. The objectives of this study were to identify ditch properties that can be evaluated visually on-site and related soil erosion processes, and to define parameters requiring more intensive study and estimate these using simplified methods. The study included surveys of ditches in various soils using MADRAS (Minnesota Agricultural Ditch Research Assessment for Stability) to classify ditch status. To explain why some ditch segments were in poor condition, additional field and laboratory studies were carried out. Soil samples were taken for analysis of particle size distribution, unsaturated direct shear strength, and critical stress for erosion. The НЕС-RAS data model was used for simulation of hydraulic forces acting at different flow rates. Digital maps of land use in the catchment area in different years were used to estimate changes in runoff conditions over time. MADRAS proved to be a suitable tool for rapid assessment of stability problems in ditches. The НЕС-RAS simulations were a good complement to MADRAS in assessing how changes in land use affected the hydraulic load and in highlighting bottlenecks in the system. However, the hydraulic load did not adequately explain the degree of degradation in some ditch segments. Measurements of soil shear strength were a good aid to understanding existing degradation. Thus, assessment of soil erodibility and bank stability is essential in anticipating the risk of future erosion processes in ditches.
机译:维护不佳,环境问题,土地利用变化,以及适应气候变化正在为更好的农业排水产生日益增长的需求。本研究的目标是识别可以在目前的现场和相关土壤侵蚀过程中评估的沟渠属性,并定义需要更加密集的研究的参数和使用简化方法估算这些方法。该研究包括使用Madras(明尼苏达州农业垄权研究评估的各种土壤中的沟渠调查,以分类沟渠状态。解释为什么一些沟渠状况不佳,进行了额外的领域和实验室研究。采用土壤样品进行粒度分布,不饱和直接剪切强度和侵蚀临界应力的分析。 Нес-ras数据模型用于模拟采用不同流速的液压力。不同年份的集水区中的数码地图用于估计径流条件的变化随着时间的推移。马德拉斯被证明是一种合适的工具,可以在沟渠中快速评估稳定性问题。 Нес-RAS模拟对Madras进行了良好的补充,在评估土地使用的变化影响液压负荷以及突出系统中突出显示瓶颈的良好补充。然而,液压负荷没有充分解释一些沟槽段中的降解程度。土壤剪切力量的测量是理解现有退化的良好辅助。因此,对土壤易蚀和银行稳定性的评估对于预期沟渠中未来侵蚀过程的风险至关重要。

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