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首页> 外文期刊>Journal of Hydrology >Subsurface drainage from hummock-covered hillslopes in the Arctic tundra
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Subsurface drainage from hummock-covered hillslopes in the Arctic tundra

机译:北极苔原上被山岗覆盖的山坡的地下排水

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In the Arctic tundra, subsurface drainage occurs predominantly through the saturated zone within the layer of peat that mantles the hillslopes. In plan view, the peat cover is fragmented into a network of channels due to the presence of mineral earth hummocks. In cross section, the physical and hydraulic properties of the peat vary with depth and the water transmission characteristics (e.g. hydraulic conductivity) of the upper profile differ distinctly from those of the lower. Water flow through the peat is laminar, therefore the friction factor (f) and the Reynolds number (N-R) are inversely related. Average values for the coefficient C of the relation f = C/N-R, vary from similar to 300 near the surface to similar to 14,500 at depth. This large difference in C confirms that the larger-diameter soil pores of the living vegetation and lightly decomposed peat near the surface offer much less resistance to water motion than the finer-grained peat deeper in the profile. Also, the variability suggests that subsurface drainage is strongly affected by the position and thickness of the saturated zone within the peat matrix. A first approximation for a model or simulation of the how regime may consider a peat profile with depth-varying, resistance properties in respect to subsurface flow. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 24]
机译:在北极冻原中,地下排水主要通过泥煤层中的饱和带进行,而该饱和带覆盖了山坡。在平面图中,由于存在矿物土丘,泥炭覆盖层被分成通道网络。在横截面中,泥炭的物理和水力特性随深度而变化,并且上部轮廓的水传输特性(例如,水力传导率)与下部轮廓的水传输特性明显不同。通过泥炭的水是层流的,因此摩擦系数(f)与雷诺数(N-R)成反比。关系f = C / N-R的系数C的平均值从接近表面的300到深度的14,500不等。 C的较大差异证实,与剖面较深处的细颗粒泥炭相比,活动植被的大直径土壤孔隙和地表附近轻度分解的泥炭对水运动的阻力小得多。同样,可变性表明,地下泥沙排放受到泥炭基质内饱和带的位置和厚度的强烈影响。模型或模式如何模拟的一种近似方法,该模型或方法如何考虑相对于地下流动具有深度变化的阻力特性的泥炭剖面。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:24]

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