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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Simulated effect of a forest road on near-surface hydrologic response: redux
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Simulated effect of a forest road on near-surface hydrologic response: redux

机译:林道对近地表水文响应的模拟影响:redux

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摘要

In the work reported here the comprehensive physics-based Integrated Hydrology Model (InHM) was employed to conduct both three- and two-dimensional (3D and 2D) hydrologic-response simulations for the small upland catchment known as C3 (located within the H. J. Andrews Experimental Forest in Oregon). Results from the 3D simulations for the steep unchannelled C3 (i) identify subsurface stormflow as the dominant hydrologic-response mechanism and (ii) show the effect of the down-gradient forest road on both the surface and subsurface flow systems. Comparison of the 3D results with the 2D results clearly illustrates the importance of convergent subsurface How (e.g. greater pore-water pressures in the hollow of the catchment for the 3D scenario). A simple infinite-slope model, driven by subsurface pore-water pressures generated from the 3D and 2D hydrologic-response simulations, was employed to estimate slope stability along the long-profile of the C3 hollow axis. As expected, the likelihood of slope failure is underestimated for the lower pore pressures from the 2D hydrologic-response simulation compared, in a relative sense, to the higher pore pressures from the 3D hydrologic response simulation. The effort reported herein provides a firm quantitative foundation for generalizing the effects that forest roads can have on near-surface hydrologic response and slope stability at the catchment scale. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:在这里报告的工作中,基于物理的综合综合水文模型(InHM)被用来对称为C3的小型高地集水区(位于HJ Andrews内)进行三维和二维(3D和2D)水文响应模拟。俄勒冈州的实验性森林)。陡峭的非通道C3的3D模拟结果(i)将地下风暴流确定为主要的水文响应机制,并且(ii)显示坡度较低的林道对地面和地下流动系统的影响。 3D结果与2D结果的比较清楚地说明了收敛地下方式的重要性(例如,对于3D场景,集水区中空较大的孔隙水压力)。由3D和2D水文响应模拟生成的地下孔隙水压力驱动的简单无限斜坡模型被用来估算C3中空轴长剖面的斜坡稳定性。正如预期的那样,相对于3D水文响应模拟中较高的孔隙压力,相对而言2D水文响应模拟中较低的孔隙压力低估了边坡破坏的可能性。本文报道的工作为概括森林道路对流域尺度的近地表水文响应和边坡稳定性的影响提供了坚实的定量基础。版权所有(c)2006 John Wiley&Sons,Ltd.

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