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The influence of plant root systems on subsurface flow: implications for slope stability.

机译:植物根系对地下流动的影响:对边坡稳定性的影响。

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Although research has explained how plant roots mechanically stabilize soils, in this article we explore how root systems create networks of preferential flow and thus influence water pressures in soils to trigger landslides. Root systems may alter subsurface flow: Hydrological mechanisms that promote lower pore-water pressures in soils are beneficial to slope stability, whereas those increasing pore pressure are adverse. Preferential flow of water occurs in the following types of root channels: (a) channels formed by dead or decaying roots, (b) channels formed by decayed roots that are newly occupied by living roots, and (c) channels formed around live roots. The architectural analysis of root systems improves our understanding of how roots grow initially, develop, die, and interconnect. Conceptual examples and case studies are presented to illustrate how root architecture and diverse traits (e.g., diameter, length, orientation, topology, sinuosity, decay rate) affect the creation of root channels and thus affect preferential flow.Digital Object Identifier http://dx.doi.org/10.1525/bio.2011.61.11.6
机译:尽管研究已经解释了植物根系如何机械稳定土壤,但在本文中,我们将探索根系如何创建优先流动网络,从而影响土壤中的水压以触发滑坡。根系可能会改变地下流动:促进土壤中较低的孔隙水压力的水文机制有利于边坡稳定性,而增加孔隙压力的水文机制则不利。优先的水流发生在以下类型的根通道中:(a)由死根或腐烂的根形成的通道;(b)由被生根新占据的腐烂的根形成的通道;(c)在活根周围形成的通道。根系的体系结构分析使我们更好地了解了根系最初如何生长,发育,死亡和互连。提出概念性示例和案例研究以说明根架构和各种特征(例如,直径,长度,方向,拓扑,弯曲度,衰减率)如何影响根通道的创建,从而影响优先流。 dx.doi.org/10.1525/bio.2011.61.11.6

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