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首页> 外文期刊>Industrial and organizational psychology >Impact of successive rainfall events on the dynamic relationship between vegetation canopies, infiltration, and recharge in engineered urban green infrastructure systems
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Impact of successive rainfall events on the dynamic relationship between vegetation canopies, infiltration, and recharge in engineered urban green infrastructure systems

机译:连续降雨事件对工程城市绿色基础设施系统植被,渗透,渗透和充电的动态关系的影响

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Soil surface crusts have been extensively studied in arid and semi-arid regions, but not in the context of engineered urban green infrastructure (GI) systems, especially in temperate environments. Raindrop impulses can break up larger soil aggregates into smaller particles, dispersing them from their original position, and contributing to the formation of a crust at the soil surface. Crusts, in turn, can reduce infiltration and increase both runoff and the soil's susceptibility to erosion. Vegetation canopies can help to mitigate crust formation by dissipating some of the drops' kinetic energy, though the extent of protection provided by the plants has not been studied in GI systems. This paper presents laboratory research conducted using a rainfall simulator to determine the ability of artificial vegetation canopies to minimize soil crust formation, in comparison with a bare soil control. The mechanical resistance of the soil surface to penetration was measured after each of the 22 different simulated rain events. Over the experiment, the percent change in penetration resistance increased by 83.5% and 148%, in vegetated and bare soil control boxes, respectively. The bare soil control box also displayed statistically significant (p < .001) increase in the duration of post-storm ponding, compared with the control vegetated box, suggesting a reduced infiltration rate. These results suggest that vegetation canopies can play a key role in protecting the soils found in GI systems from raindrop impact.
机译:在干旱和半干旱地区广泛研究了土壤表面外壳,但不在工程城市绿色基础设施(GI)系统的背景下,特别是在温带环境中。雨滴脉冲可以将较大的土壤聚集体分成较小的颗粒,将它们从原始位置分散,并有助于在土壤表面形成地壳。又可以减少渗透并增加径流和土壤对侵蚀的敏感性的渗透性。植被Canopies可以通过消除一些滴剂的动能来帮助缓解地壳形成,尽管在GI系统中未进行植物提供的保护程度。本文介绍了利用降雨模拟器进行的实验室研究,以确定人工植被檐篷,以便与裸机控制相比。在22种不同的模拟雨事件中的每一个之后测量土壤表面对渗透的机械电阻。在实验中,分别在植物和裸机控制箱中渗透性抗性的变化百分比增加了83.5%和148%。与对照植物盒相比,裸机控制箱也显示出统计上显着的(P <.001)的持续时间增加,表明渗透率降低。这些结果表明,植被檐篷可以在保护雨滴撞击中保护GI系统中发现的土壤中发挥关键作用。

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