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首页> 外文期刊>Journal of Hydrology >Hydrological response and soil detachment rate from dip/anti-dip slopes as a function of rock strata dip in karst valley revealed by rainfall simulations
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Hydrological response and soil detachment rate from dip/anti-dip slopes as a function of rock strata dip in karst valley revealed by rainfall simulations

机译:从降雨模拟中透露岩石山谷岩石地层垂度的水文反应和土壤脱落率。降雨模拟显示

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Rock dip angle plays a significant role in surface hydraulic characteristics and leads to different spatial distribution of water and soil loss in Karst Trough Valleys. In this study, the rock dip angle effect on the hydraulic characteristics and soil detachment rate on dip/anti-dip slopes was explored via rainfall simulations and a steel experimental flume. The rainfall intensities ranged from 30 to 90 mm.h(-1), and the rock dip angles varied from 10 degrees to 60 degrees. The results revealed that i) surface runoff on the dip slope was higher than that on the anti-dip slope, whereas underground runoff presented opposite results. The 30 degrees rock dip angle presented the critical flow velocity for the anti-dip slope, and the flow velocity reduced as the rock dip angle of the dip slope increased. ii) Laminar water flow occurred on the dip/anti-dip slope (Re was < 500 in all cases). For the anti-dip slope, the Re value reduced by 3.53-89.79%, the Fr value reduced by 34.13-73.04%, and the f value increased by 61.07-93.78% compared with that of the dip slope. iii) A linear function model can describe the relationship between the soil detachment rate and hydrodynamic parameters (tau, w and E). It was found that w was the best of the hydrodynamic parameters to describe the soil detachment rate. These results could provide valuable information for establishing a national-scale empirical soil erosion model for Karst Trough Valley.
机译:岩石倾角在表面液压特性中起着重要作用,并导致喀斯特山谷的水土流失的不同空间分布。在这项研究中,通过降雨模拟和钢实验水槽探索了对浸渍/防倾斜斜坡液压特性和土壤分离速率的岩石倾角影响。降雨强度范围为30至90 mm.h(-1),岩石浸角度从10度变化到60度。结果表明,浸坡上的表面径流高于反倾斜斜坡上的表面径流,而地下径流呈现相反的结果。 30度岩石倾角呈现防倾斜斜率的临界流速,随着倾角斜率的岩石倾角增加而减小的流速减小。 ii)在浸渍/抗浸坡上发生层流水流(RE在所有情况下<500)。对于抗倾斜斜率,重新值减少3.53-89.79%,FR值减少34.13-73.04%,而F值与倾角相比增加61.07-93.78%。 III)线性函数模型可以描述土壤分离率和流体动力学参数(TAU,W和E)之间的关系。发现W是描述土壤脱离率的最佳流体动力学参数。这些结果可以为建立喀斯特谷谷的国家规模的经验土壤侵蚀模型提供有价值的信息。

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