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The capacity of urban forest patches to infiltrate stormwater is influenced by soil physical properties and soil moisture

机译:城市森林补丁渗透雨水的能力受土壤物理性质和土壤水分的影响

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摘要

Forest patches in developed landscapes perform ecohydrological functions that can reduce urban stormwater flows. However, urban forest patch contributions to runoff mitigation are not well understood due to a lack of performance data. In this study, we focus on the potential of urban forest patch soils to infiltrate rainfall by characterizing rates of unsaturated hydraulic conductivity (K) in 21 forest patches in Baltimore, Maryland. Soil bulk density, organic matter, soil moisture, percent of coarse fragments (= 2 mm), and texture were evaluated at the same locations to assess drivers of K. The K was significantly higher in soils with high sand content and related positively with the percent of coarse fragment material in the soil. Forest patch size did not impact K. We estimate that 68 percent of historic rainfall could be infiltrated by urban forest patch soils at the measured K rates. Continuous monitoring at one forest patch also showed that K is dynamic in time and influenced by antecedent soil moisture conditions. We conservatively estimate that unsaturated urban forest patch soils alone are capable of infiltrating most rain events of low to moderate intensities that fell within these forest patches in the Baltimore region. Considering this ecohydrologic function, the protection and expansion of forest patches can make substantial contributions to stormwater mitigation.
机译:开发风景中的森林补丁进行了生态学功能,可以减少城市雨水流动。然而,由于缺乏性能数据,城市森林补丁对径流缓解的贡献并不充分理解。在这项研究中,我们专注于城市森林斑块土壤的潜力,通过在马里兰巴尔的摩的21林斑块中表征21林斑块中的不饱和液压导电性(K)率来渗透降雨。在相同位置评估土壤堆积密度,有机物,土壤水分,粗碎片(> = 2mm)的百分比,评估K的驱动器的驾驶员。k在具有高砂含量的土壤中显着高,并且与土壤中粗碎片材料的百分比。森林贴片尺寸没有影响力K.我们估计,在测量的K率下,城市森林斑块土壤可以渗透68%的历史降雨。在一个森林贴片的连续监测也表明K是动态的及时性,受前一种土壤湿度条件的影响。我们保守地估计,单独的不饱和城市森林斑块土壤能够渗透最低的雨量事件,以至于在巴尔的摩地区的这些森林斑块内落下的温和强度。考虑到这种生态中的功能,森林斑块的保护和扩展可以为雨水减轻做出重大贡献。

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