首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Improvement of seasonal runoff and soil loss predictions by the MMF (Morgan-Morgan-Finney) model after wildfire and soil treatment in Mediterranean forest ecosystems
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Improvement of seasonal runoff and soil loss predictions by the MMF (Morgan-Morgan-Finney) model after wildfire and soil treatment in Mediterranean forest ecosystems

机译:MMF(Morgan-Morgan-Finney)模型在地中海森林生态系统中的野火和土壤处理后季节径流和土壤损失预测的提高

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摘要

The negative hydrological effects of wildfire are very difficult to predict in Mediterranean forest ecosystems, due the intrinsic climate and soil characteristics of these areas. Among the hydrological models simulating surface runoff and soil erosion in these environmental contexts, the semi-empirical Morgan-Morgan-Finney (MMF) model can ensure the representation of the main physical processes, while offering ease of use and limiting the number of input parameters. However, literature reports very few modelling studies using MMF in burned areas of the Mediterranean environment with or without post-fire rehabilitation measures. To fill this gap, the capacity of the MMF model to predict the seasonal surface runoff and soil loss in a Mediterranean forest was verified and improved for unburned plots and areas affected by a wildfire, with and without post-fire straw mulch treatment. The application of MMF with default input parameters (set up according to the original guidelines of the model's developers) led to poor performance. Conversely, after introducing some changes in input data for both the hydrological and erosive components (seasonal values of evapotranspiration, reduction of the soil hydrological depth, including soil water repellency effects in burned soils, and modelling erosive precipitation only), MMF was able to predict seasonal runoff volumes and soil loss with good reliability in all the experimented conditions.
机译:野火的负水文效应非常难以预测地中海森林生态系统,由于这些地区的内在气候和土壤特征为期。在这些环境上下文中模拟表面径流和土壤侵蚀的水文模型中,半经验摩根 - 摩根 - 芬尼(MMF)模型可以确保主要物理过程的表示,同时提供易用性并限制输入参数的数量。然而,文献报告了使用或没有火灾后康复措施的地中海环境的烧毁区域中使用MMF的建模研究。为了填补这种差距,MMF模型预测地中海森林中的季节性表面径流和土壤损失的能力被验证,并改善了由野火影响的未燃烧的地块和地区,有和没有消防秸秆覆盖处理。 MMF具有默认输入参数的应用(根据模型开发人员的原始指南设置)的性能差。相反,在引入水文和腐蚀成分的输入数据中的一些变化(蒸散的蒸发季节性值,土壤水文深度的降低,包括烧伤的土壤中的土壤防水效果,并仅进行腐蚀降水),MMF能够预测在所有实验条件下,季节性径流卷和土壤损失具有良好的可靠性。

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