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野火影响溪流中粘性沉积物的生物稳定性和可侵蚀性。

Biostabilization and erodibility of cohesive sediment deposits in wildfire-affected streams.

机构信息

Department of Geography and Environmental Management, University of Waterloo, Waterloo, Ontario, Canada.

出版信息

Water Res. 2011 Jan;45(2):521-34. doi: 10.1016/j.watres.2010.09.016. Epub 2010 Oct 21.

Abstract

The erosion characteristics and bed stability of wildfire-affected stream sediment were measured in an annular flume. Biofilms were grown in the flume on cohesive streambed sediments collected from a wildfire affected stream and a reference undisturbed stream in southern Alberta, Canada. Examined factors that influence sediment erosion, settling and bed stability included applied shear stress, geochemical and physical properties of the sediment, floc structural characteristics and consolidation period (2, 7, 14 days). Erosion characteristics and sediment properties were strongly influenced by wildfire, consolidation period and bed biostabilization. The fire-modified sediment was more resistant to erosion than the reference unburned sediment. Settling velocities were lower in the burned sediment due to higher organic content and porosity. The critical shear stresses for erosion were 1.6 and 1.8 times higher for the burn-associated sediment after 7 and 14 days of consolidation. The differences are related to the greater degree and spatial extent (depth) of biofilm attachment in the burned sediment. Erosion depths were 4-8 times higher in burned sediment as a result of wildfire-associated biostabilization.

摘要

采用环道水槽试验,对受林火影响的溪流沉积物的侵蚀特征和床面稳定性进行了测量。在水槽中,于取自加拿大艾伯塔省南部受林火影响溪流和参考未受干扰溪流的粘性河床沉积物上生长生物膜。考察了影响侵蚀、沉降和床面稳定性的因素,包括施加的剪切应力、沉积物的地球化学和物理性质、絮体结构特征和固结时间(2、7、14 天)。侵蚀特征和沉积物性质受林火、固结时间和床面生物稳定化的强烈影响。改性后的火成沉积物比参考未燃烧沉积物更能抵抗侵蚀。由于有机含量和孔隙度较高,沉降速度在燃烧沉积物中较低。固结 7 和 14 天后,与燃烧相关的沉积物的侵蚀临界剪切应力分别比参考未燃烧沉积物高 1.6 和 1.8 倍。差异与燃烧沉积物中生物膜附着的程度和空间范围(深度)更大有关。由于与林火相关的生物稳定化作用,燃烧沉积物的侵蚀深度增加了 4-8 倍。

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