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Post-fire erosion model inter-comparison project

机译:消防后侵蚀模型相互比较项目

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摘要

Land managers often need to predict watershed-scale erosion rates after disturbance or other land cover changes. This study compared commonly used hillslope erosion models to simulate post-fire sediment yields (SY) at both hillslope and watershed scales within the High Park Fire, Colorado, U.S.A. At hillslope scale, simulated SY from four models- RUSLE, AGWA/KINEROS2, WEPP, and a site-specific regression model-were compared to observed SY at 29 hillslopes. At the watershed scale, RUSLE, AGWA/KINEROS2, and WEPP were applied to simulate spatial patterns of SY for two 14-16 km~2 watersheds using different scales (0.5-25 ha) of hillslope discretization. Simulated spatial patterns were compared between models and to densities of channel heads across the watersheds. Three additional erosion algorithms were implemented within a land surface model to evaluate effects of parameter uncertainty. At the hillslope scale, SY was only significantly correlated to observed SY for the empirical model, but at the watershed scale, sediment loads were significantly correlated to observed channel head densities for all models. Watershed sediment load increased with the size of the hillslope sub-units due to the nonlinear effects of hillslope length on simulated erosion. SY's were closest in magnitude to expected watershed-scale SY when models were divided into the smallest hillslopes. These findings demonstrate that current erosion models are fairly consistent at identifying areas with low and high erosion potential, but the wide range of predicted SY and poor fit to observed SY highlight the need for better field observations and model calibration to obtain more accurate simulations.
机译:土地管理人员通常需要预测干扰或其他土地覆盖变化后的流域侵蚀率。该研究比较了普通山坡侵蚀模型的常用山坡侵蚀模型,在Hillslope Scale的高公园火灾中,科罗拉多州的高公园火灾中的山坡和流域尺度上模拟了火灾后沉积物产量(SY),从四个型号 - Rusle,Agwa / Kineros2,WEPP模拟SY并将一个特定于特定的回归模型 - 与29个山坡观察到的SY。在流域秤,使用不同尺度(0.5-25公顷)的山坡离散化的不同尺度来模拟SY的SY的空间模式,模拟SY的空间模式。模拟空间模式在模型和流域横跨流域的沟道头密度之间进行了比较。在陆地面模型内实现了三种额外的侵蚀算法,以评估参数不确定性的效果。在Hillslope Scale中,SY仅与观察到的经验模型显着相关,但在流域规模,沉积物载荷与所有模型的沟道头密度显着相关。由于山坡长度对模拟侵蚀的非线性影响,流域沉积物负荷随着山坡子单元的大小而增加。当模型分为最小的山坡时,SY的程度最接近预期的流域水平SY。这些研究结果表明,目前的侵蚀模型在识别具有低和高侵蚀潜力的区域时相当一致,但是预测的SY和差的适合观察到SY突出显示更好的现场观察和模型校准的需要,以获得更准确的模拟。

著录项

  • 来源
    《Journal of Environmental Management》 |2020年第15期|110704.1-110704.13|共13页
  • 作者单位

    Department of Ecosystem Science and Sustainability Colorado State University Fort Collins CO 80523-1476 USA;

    Colorado Forest Restoration Institute Colorado State University Fort Collins CO 80523-1472 USA;

    Natural Resources Ecology Laboratory 1499 Campus Delivery Fort Collins CO 80523-1499 USA;

    Laboratorio de Teledeteccion Ambiental Departamento de Ciencias Geograficas Facultad de Ciencias Naturales y Exactas Universidad de Playa Ancha Valparaiso ChileHUB Ambiental UPLA;

    Michigan Tech Research Institute Michigan Technical University 3600 Green Court Suite 100 Ann Arbor MI 48105 USA;

    Department of Civil Environmental and Architectural Engineering University of Colorado Boulder USA;

    Department of Civil Environmental and Architectural Engineering University of Colorado Boulder USA Cooperative Institute for Research in Environmental Sciences University of Colorado Boulder USA;

    Department of Civil and Environmental Engineering Colorado State University 1372 Campus Delivery Fort Collins CO 80523 1372 USA;

    Natural Resources Ecology Laboratory 1499 Campus Delivery Fort Collins CO 80523-1499 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Erosion model; Hillslope scale; Watershed scale; WEPP; RUSLE; KINEROS2;

    机译:侵蚀模型;山坡秤;分水岭;WEPP;风险;Kineros2.;

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