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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Modified MMF (Morgan-Morgan-Finney) model for evaluating effects of crops and vegetation cover on soil erosion
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Modified MMF (Morgan-Morgan-Finney) model for evaluating effects of crops and vegetation cover on soil erosion

机译:修正的MMF(Morgan-Morgan-Finney)模型用于评估农作物和植被覆盖对土壤侵蚀的影响

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Modifications are made to the revised Morgan-Morgan-Finney erosion prediction model to enable the effects of vegetation cover to be expressed through measurable plant parameters. Given the potential role of vegetation in controlling water pollution by trapping clay particles in the landscape, changes are also made to the way the model deals with sediment deposition and to allow the model to incorporate particle-size selectivity in the processes of erosion, transport and deposition. Vegetation effects are described in relation to percentage canopy cover, percentage ground cover, plant height, effective hydrological depth, density of plant stems and stem diameter. Deposition is modelled through a particle fall number, which takes account of particle settling velocity, flow velocity, flow depth and slope length. The detachment, transport and deposition of soil particles are simulated separately for clay, silt and sand. Average linear sensitivity analysis shows that the revised model behaves rationally. For bare soil conditions soil loss predictions are most sensitive to changes in rainfall and soil parameters, but with a vegetation cover plant parameters become more important than soil parameters. Tests with the model using field measurements under a range of slope, soil and crop covers from Bedfordshire and Cambridgeshire, UK, give good predictions of mean annual soil loss. Regression analysis of predicted against observed values yields an intercept value close to zero and a line slope close to 1.0, with a coefficient of efficiency of 0.81 over a range of values from zero to 38.6 t ha(-1). Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:对修订后的Morgan-Morgan-Finney侵蚀预测模型进行了修改,以通过可测量的植物参数来表达植被覆盖的影响。考虑到植被通过在景观中捕获黏土颗粒来控制水污染的潜在作用,该模型处理沉积物沉积的方式也发生了变化,并允许该模型将颗粒大小的选择性纳入侵蚀,运输和侵蚀过程中。沉积。植被效应与树冠覆盖率,地面覆盖率,植物高度,有效水文深度,植物茎密度和茎直径有关。沉积是通过粒子落数模拟的,该粒子落数考虑了粒子沉降速度,流速,流深和边坡长度。分别模拟了粘土,粉砂和沙子的土壤颗粒的分离,运输和沉积。平均线性灵敏度分析表明,修正后的模型表现合理。对于裸露的土壤条件,土壤流失预测对降雨和土壤参数的变化最敏感,但是在植被覆盖的情况下,植物参数比土壤参数变得更加重要。在来自英国贝德福德郡和剑桥郡的一系列坡度,土壤和农作物覆盖范围内使用田间测量对模型进行的测试,可以很好地预测年均土壤流失量。对观察值的预测值进行回归分析得出的截距值接近零,线斜率接近1.0,在从0到38.6 t ha(-1)的值范围内,效率系数为0.81。版权所有(c)2007 John Wiley&Sons,Ltd.

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