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Influence of forest and shrub canopies on precipitation partitioning and isotopic signatures

机译:森林和灌木林冠对降水分配和同位素特征的影响

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摘要

Over a 4-month summer period, we monitored how forest (Pinus sylvestris) and heather moorland (Calluna spp. and Erica spp.) vegetation canopies altered the volume and isotopic composition of net precipitation (NP) in a southern boreal landscape in northern Scotland. During that summer period, interception losses were relatively high and higher under forests compared to moorland (46% of gross rainfall [GR] compared with 35%, respectively). Throughfall (TF) volumes exhibited marked spatial variability in forests, depending upon local canopy density, but were more evenly distributed under heather moorland. In the forest stands, stemflow was a relatively small canopy flow path accounting for only 0.9-1.6% of NP and only substantial in larger events. Overall, the isotopic composition of NP was not markedly affected by canopy interactions; temporal variation of stable water isotopes in TF closely corresponded to that of GR with differences of TF-GR being -0.52 parts per thousand for H-2 and -0.14 parts per thousand for O-18 for forests and 0.29 parts per thousand for H-2 and -0.04 parts per thousand for O-18 for heather moorland. These differences were close to, or within, analytical precision of isotope determination, though the greater differences under forest were statistically significant. Evidence for evaporative fractionation was generally restricted to low rainfall volumes in low intensity events, though at times, subtle effects of liquid-vapour moisture exchange and/or selective transmission though canopies were evident. Fractionation and other effects were more evident in stemflow but only marked in smaller events. The study confirmed earlier work that increased forest cover in the Scottish Highlands will likely cause an increase in interception and green water fluxes at the expenses of blue water fluxes to streams. However, the low-energy, humid environment means that isotopic changes during such interactions will only have a minor overall effect on the isotopic composition of NP.
机译:在四个月的夏季期间,我们监测了苏格兰北部南部寒带地区的森林(Pinus sylvestris)和希瑟高地(Calluna spp。和Erica spp。)植被冠层如何改变净降水量(NP)的数量和同位素组成。在那个夏季期间,与荒地相比,森林下的截留损失相对较高并且更高(分别占总降雨量[GR]的46%和35%)。根据森林冠层的密度,穿透量(TF)量在森林中表现出明显的空间变异性,但在希瑟高地之下分布更均匀。在林分中,茎流是相对较小的冠层流径,仅占NP的0.9-1.6%,在较大的事件中仅占很大比例。总体而言,冠层相互作用对NP的同位素组成没有明显影响。 TF中稳定水同位素的时间变化与GR密切相关,H-2的TF-GR差异为-0.5千分,O-18的TF-GR差异为-0.14千分,H-的差异为0.29千分O-18(希瑟高地)为2和-0.04千分之几。这些差异接近或等于同位素测定的分析精度,尽管森林下的较大差异具有统计学意义。蒸发分馏的证据通常仅限于低强度事件中的低降雨量,尽管有时液篷水分交换和/或通过冠层的选择性传播的微妙影响是显而易见的。在茎流中分馏和其他作用更为明显,但仅在较小的事件中才明显。该研究证实了先前的工作,即苏格兰高地森林覆盖率的增加可能会导致拦截和绿色水通量的增​​加,而蓝色水通量却会增加。但是,低能量,潮湿的环境意味着在这种相互作用期间同位素的变化只会对NP的同位素组成产生较小的总体影响。

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  • 来源
    《Hydrological Processes》 |2017年第24期|4282-4296|共15页
  • 作者单位

    Univ Aberdeen, Northern Rivers Inst, Elphinstone Rd, Aberdeen AB24 3UF, Scotland;

    Univ Aberdeen, Northern Rivers Inst, Elphinstone Rd, Aberdeen AB24 3UF, Scotland|Univ Freiburg, Chair Hydrol, Freiburg, Germany;

    Univ Aberdeen, Northern Rivers Inst, Elphinstone Rd, Aberdeen AB24 3UF, Scotland;

    Univ Freiburg, Chair Hydrol, Freiburg, Germany;

    Univ Aberdeen, Northern Rivers Inst, Elphinstone Rd, Aberdeen AB24 3UF, Scotland|IGB Leibniz Inst Freshwater Ecol & Inland Fisheri, Berlin, Germany|Humboldt Univ, Dept Geog, Berlin, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    boreal forest; canopy; forest hydrology; interception; isotopes; throughfall;

    机译:北方森林;林冠;森林水文学;拦截;同位素;穿透;

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