柳玉梅, 张光辉, 李丽娟, 韩艳峰. 坡面流水动力学参数对土壤分离能力的定量影响(简报)[J]. 农业工程学报, 2009, 25(6): 96-99.
    引用本文: 柳玉梅, 张光辉, 李丽娟, 韩艳峰. 坡面流水动力学参数对土壤分离能力的定量影响(简报)[J]. 农业工程学报, 2009, 25(6): 96-99.
    Liu Yumei, Zhang Guanghui, Li Lijuan, Han Yanfeng. Quantitative effects of hydrodynamic parameters on soil detachment capacity of overland flow[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2009, 25(6): 96-99.
    Citation: Liu Yumei, Zhang Guanghui, Li Lijuan, Han Yanfeng. Quantitative effects of hydrodynamic parameters on soil detachment capacity of overland flow[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2009, 25(6): 96-99.

    坡面流水动力学参数对土壤分离能力的定量影响(简报)

    Quantitative effects of hydrodynamic parameters on soil detachment capacity of overland flow

    • 摘要: 利用变坡试验水槽,在较大流量(0.5~2.0 L/s)和坡度(0~50%)范围内,详细研究了水深、平均流速、雷诺数、佛汝德数和阻力系数对土壤分离能力的定量影响,旨在得到估算土壤分离能力最简单的方法。研究结果表明:坡面流土壤分离能力与水深、平均流速间均呈显著的幂函数关系;土壤分离能力与水流流态密切相关,与水流佛汝德数相比,水流雷诺数与土壤分离能力的关系更密切;土壤分离能力与水流阻力间呈良好的幂函数关系。研究结果表明,平均流速是预测土壤分离能力的最佳参数。研究结果对于理解土壤侵蚀机理,建立土壤侵蚀过程模型具有重要的意义。

       

      Abstract: Experiments were performed in a hydraulic flume with varying slope in a larger scale of flow discharge (0.5~2.0 L/s) and slope gradient(5°~25°) to investigate the relationships between soil detachment capacity(Dc) and flow depth, mean flow velocity, flow regime, and friction factor. The objective of this study is to find out the simplest method to predict Dc of overland flow. The results indicated that power function can be used for simulating the relationship between soil detachment capacity and flow depth, and mean flow velocity. There was a close relationship between Dc and flow regime. Dc was more sensitive to Reynolds number than to Flode number. Soil detachment capacity was closely related to friction factor of overland flow. The results of this study suggest that mean flow velocity is the best parameter for predicting the soil detachment capacity. The results are significant to understand the mechanism of soil erosion and to develop process-based erosion model.

       

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