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城市森林在雨水管理方面的比较分析。

A comparative analysis of urban forests for storm-water management.

机构信息

Strategic Landscape Planning and Management, School of Life Sciences, Weihenstephan, Technische Universität München, Emil-Ramann-Str. 6, 85354, Freising, Germany.

Research Center for Eco-Environmental Engineering, Dongguan University of Technology, Daxue Road 1, Dongguan, 523808, China.

出版信息

Sci Rep. 2023 Jan 26;13(1):1451. doi: 10.1038/s41598-023-28629-6.

Abstract

Large-scale urban growth has modified the hydrological cycle of our cities, causing greater and faster runoff. Urban forests (UF), i.e. the stock of trees and shrubs, can substantially reduce runoff; still, how climate, tree functional types influence rainfall partitioning into uptake and runoff is mostly unknown. We analyzed 92 published studies to investigate: interception (I), transpiration (T), soil infiltration (IR) and the subsequent reduction in runoff. Trees showed the best runoff protection compared to other land uses. Within functional types, conifers provided better protection on an annual scale through higher I and T but broadleaved species provided better IR. Regarding tree traits, leaf area index (LAI) showed a positive influence for both I and T. For every unit of LAI increment, additional 5% rainfall partition through T (3%) and I (2%) can be predicted. Overall, runoff was significantly lower under mixed species stands. Increase of conifer stock to 30% in climate zones with significant winter precipitation and to 20% in areas of no dry season can reduce runoff to an additional 4%. The study presented an overview of UF potential to partition rainfall, which might help to select species and land uses in different climate zones for better storm-water management.

摘要

大规模的城市发展改变了我们城市的水文循环,导致更大和更快的径流量。城市森林(UF),即树木和灌木的存量,可以大大减少径流量;然而,气候、树木功能类型如何影响降雨分配为吸收和径流量,这在很大程度上是未知的。我们分析了 92 篇已发表的研究,以调查:截留(I)、蒸腾(T)、土壤入渗(IR)以及随后减少径流量。与其他土地利用方式相比,树木表现出更好的径流保护。在功能类型内,针叶树通过更高的 I 和 T 在年度尺度上提供更好的保护,但阔叶树种提供了更好的 IR。关于树木特征,叶面积指数(LAI)对 I 和 T 都有积极的影响。每增加一个单位的 LAI,通过 T(3%)和 I(2%)分配的降雨量可额外增加 5%。总的来说,在混合物种林分下,径流量明显更低。在冬季降水较多的气候区,将针叶树的存量增加到 30%,在没有旱季的地区增加到 20%,可以将径流量减少额外的 4%。该研究概述了 UF 对降雨分配的潜力,这可能有助于在不同气候区选择物种和土地利用方式,以更好地进行雨水管理。

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