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Improving and calibrating channel erosion simulation in the Water Erosion Prediction Project (WEPP) model

机译:水腐蚀预测项目(WEPP)模型中提高和校准信道侵蚀仿真

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The Water Erosion Prediction Project (WEPP) model has been widely used to assess the impacts of management practices and climate change on runoff and soil loss at both hillslope and watershed scales. However, the representation of channel erosion processes in WEPP has not been changed significantly since it was released. The current (WEPP v2012.8) and previous WEPP versions assume that channel input erodibility parameters are constant through time, which may lead to erroneous channel detachment predictions, especially for cropland with substantial tillage operations. In this research, the temporally constant values of channel erodibility and critical shear stress were replaced by daily updated values, using the same temporal erodibility and critical shear stress adjustments that are applied in hillslope profile simulations for rill detachment. Observed watershed-scale runoff and soil erosion data from six agricultural watersheds were used to calibrate and compare the WEPP model performance in simulating channel runoff volumes and soil losses before and after the modification. The research showed both WEPP v2012.8 and the modified WEPP model (WEPP_CE) could satisfactorily simulate event-based hydrology and soil erosion at the watershed outlets after calibration. The WEPP_CE model with temporally varying channel erodibility and critical shear stress values demonstrated improved representation of the physical processes in channel soil detachment. Continued improvement in the representation of channel erosion processes in WEPP and other process-based models is needed. The improved WEPP model can be used to evaluate the effectiveness of soil conservation practices on hydrology and erosion in further research.
机译:水腐蚀预测项目(WEPP)模型已被广泛用于评估管理实践和气候变化对山坡和流域鳞片的径流和土壤损失影响的影响。但是,由于释放,WEPP中的信道侵蚀过程的表示尚未显着变化。当前(WEPP V2012.8)和以前的WEPP版本假定通道输入易用参数通过时间恒定,这可能导致错误的通道分离预测,特别是对于具有大量耕作操作的农作物。在该研究中,使用相同的时间易用和临界剪切应力调节,在爬坡脱落中应用于山坡轮廓模拟中的相同时间易蚀和临界剪切应力调整,取代了通道易用和临界剪切应力的时间恒定值。从六个农业流域的观察到的流域级径流和土壤侵蚀数据用于校准,并比较修改前后模拟通道径流卷和土壤损失的WEPP模型性能。该研究显示了WEPP V2012.8和修改的WEPP模型(WEPP_CE)可以在校准后令人满意地模拟流域网点的基于事件的水文和土壤侵蚀。具有时间变化频道易蚀和临界剪切应力值的WEPP_CE模型证明了通道土壤脱离中物理过程的改善表示。需要继续改善WEPP和其他基于过程的模型中的信道侵蚀过程的表现。改进的WEPP模型可用于评估水土保持实践对进一步研究中水文和侵蚀的有效性。

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