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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Spatial interaction between collapsed pipes and landslides in hilly regions with loess-derived soils
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Spatial interaction between collapsed pipes and landslides in hilly regions with loess-derived soils

机译:黄土源丘陵区塌陷管道与滑坡的空间相互作用

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While most studies focus on the effect of soil pipes on hillslope stability, this present study investigates the impact of landsliding on pipe development. It is hypothesized that poorly drained active and dormant landslides change the hillslope hydrology through (i) surface flow obstruction, by changing topography, as well as (ii) subsurface flow obstruction by tilting less-permeable clay-rich substrates. Hence, new preferential flow paths are created at reverse slopes within the landslide zone and at the boundary of the landslide, enhancing pipe formation. This study aims at a better understanding of the interaction between collapsed pipe (CP) occurrence and landslide (LS) occurrence in the Flemish Ardennes (Belgium) by comparing their respective spatial patterns. At least 24.5% of the 139 sites with CP were related to the occurrence of an observed LS. Poorly drained LS may create favourable conditions for pipe development. Outside LS, natural and anthropogenic (e.g. broken field drains, road drainage) causes may result in concentrated subsurface flow, resulting in pipe development. No evidence was found that pipe development enhanced LS, probably because the subsurface drainage discharge generated upslope of the LS is too low. Even when pipes become blocked, it is more likely that new pipes develop and new collapses occur than they trigger or reactivate LS. A conceptual model is presented summarizing all elements that influence piping erosion in the Flemish Ardennes, including the role of LS.
机译:虽然大多数研究都集中在土壤管道对坡度稳定性的影响上,但本研究调查了滑坡对管道发展的影响。假设排水不畅的活跃和休眠的滑坡通过以下方式改变了山坡水文:(i)通过改变地形来阻止地表水流,以及(ii)通过倾斜渗透性差的富含粘土的基底来阻碍地下水流。因此,在滑坡带内的反向坡度和滑坡的边界处产生了新的优先流动路径,从而增强了管道的形成。这项研究旨在通过比较佛兰芒阿登地区(比利时)的塌方管道(CP)和滑坡(LS)发生之间的相互作用,来更好地理解它们之间的相互作用。在139个CP部位中,至少有24.5%与观察到的LS的发生有关。 LS排水不良可能会为管道开发创造有利条件。在LS外,自然和人为因素(例如破裂的排水沟,道路排水)可能导致地下流量集中,从而导致管道发展。没有证据表明管道的发展增强了LS,可能是因为地下排水所产生的LS上坡太低了。即使管道阻塞,也比触发或重新激活LS更有可能形成新管道并发生新的塌陷。提出了一个概念模型,概括了影响佛兰芒阿登地区管道腐蚀的所有因素,包括LS的作用。

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