城市土壤含水量与降雨的时间响应以及露天和树下的穿透动态

IF 2.3 4区 环境科学与生态学 Q3 WATER RESOURCES
Katarina Zabret, K. Lebar, M. Šraj
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引用次数: 1

摘要

摘要截雨过程是生物水文循环的重要组成部分,植被通过调节降雨到达地面的数量和动态发挥着重要作用。本文采用基于事件的分析方法,讨论了降雨过程中植被对上层土壤体积含水量(VWC)时间响应动态的影响。更具体地说,基于对两种落叶树(Betula pendula Roth)和两种针叶树(Pinus nigra Arnold)的开放和下方群体的VWC的连续测量,分析了2021年11月19日至2022年6月30日期间发生的六起事件,其特征是不同的水文气象和植被条件,以及斯洛文尼亚卢布尔雅那一个城市试验区的露天和秋季降雨。上部深度(16cm)的VWC值在桦树下最高,其次是开阔地和松树下。然而,在最低深度(74cm),桦树下的VWC值最低。VWC对降雨量和贯穿量的响应显示出与事件前湿度条件相关的季节性模式,无叶期VWC最大值出现得更快。此外,降雨量及其在事件期间的动态会显著影响响应,因为VWC通常在更强烈的降雨发生后达到峰值。这种基于事件的分析,提供了对事件发展动态的深入了解,对于理解生物水文过程至关重要,非常有益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporal response of urban soil water content in relation to the rainfall and throughfall dynamics in the open and below the trees
Abstract Rainfall interception process is an important part of the biohydrological cycle, in which vegetation plays an important role by regulating the amount and dynamics of rainfall reaching the ground. In this paper, an event-based analysis is performed to discuss the influence of vegetation on dynamic of temporal response of soil volumetric water content (VWC) in the upper soil layer during rainfall events. More specifically, six events that occurred between 19 November 2021 and 30 June 2022, characterized by different hydro-meteorological and vegetation conditions, are analyzed based on continuous measurements of VWC in the open and below groups of two deciduous (Betula pendula Roth.) and two coniferous trees (Pinus nigra Arnold), as well as rainfall in the open and throughfall on an urban experimental plot in Ljubljana, Slovenia. VWC values at the upper depth (16 cm) were the highest under the birch tree, followed by the location in the open and under the pine tree. However, in the lowest depth (74 cm) VWC values were the lowest under the birch tree. VWC responses to rainfall and throughfall showed seasonal patterns related to the pre-event wetness conditions, with a faster occurrence of maximum VWC values in the leafless period. Additionally, rainfall amount and its dynamics during the event significantly affect the response, as VWC in general reaches its peak after the occurrence of more intense rainfall. Such an event-based analysis, offering an insight into the dynamics of the event development, is crucial and very beneficial for understanding of the biohydrological processes.
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来源期刊
CiteScore
4.20
自引率
5.30%
发文量
30
审稿时长
>12 weeks
期刊介绍: JOURNAL OF HYDROLOGY AND HYDROMECHANICS is an international open access journal for the basic disciplines of water sciences. The scope of hydrology is limited to biohydrology, catchment hydrology and vadose zone hydrology, primarily of temperate zone. The hydromechanics covers theoretical, experimental and computational hydraulics and fluid mechanics in various fields, two- and multiphase flows, including non-Newtonian flow, and new frontiers in hydraulics. The journal is published quarterly in English. The types of contribution include: research and review articles, short communications and technical notes. The articles have been thoroughly peer reviewed by international specialists and promoted to researchers working in the same field.
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