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Tree traits and meteorological factors influencing the initiation and rate of stemflow from isolated deciduous trees

机译:树状特征和气象因素影响孤立落叶树的启动和茎流量的速率

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Tree canopy processes affect the volume and biogeochemistry of inputs to the hydrological cycle in cities. From June 2012 to November 2013, we studied stemflow production from 37 isolated deciduous park trees in a semi-arid climate dominated by small precipitation events. To clarify the effects of canopy traits on stemflow metrics, we analysed branch angles, bark relief (one component of roughness), tree size, canopy and wood cover fraction, median leaf size, and branch and leader counts. High branch angles contributed to stemflow production in both single-leader and multi-leader trees. While bark relief was negatively correlated with stemflow rates in multi-leader trees, it was positively correlated with rates for single-leader trees, possibly reflecting the conducive role of linear furrows once bark of single-leader trees is saturated. The association between numerous leaders, low stemflow initiation thresholds, and high rates deserves further study. Among meteorological variables, rain depth was strongly correlated with stemflow yields; rainfall inclination angle and wind speed were positively correlated with yields, while total intra-storm break duration and vapour pressure deficit were inversely related. For rain depths 3mm, greater stemflow was generally associated with leafless canopies. In support of integrated stormwater management, our results can inform climate-sensitive selection and siting of urban trees with traits that tend to either promote or minimize stemflow, depending on infiltration potential. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:树冠的过程影响城市水文循环投入的体积和生物态化学。从2012年6月到2013年11月,我们研究了37棵孤立的落叶公园树木,在一个由小降水事件中的半干旱气候中占据了37棵孤立的落叶公园树木。为了阐明冠层性状对茎流度量的影响,我们分析了分支角度,树皮浮雕(粗糙度的一个部件),树尺寸,冠层和木盖分数,中值叶片尺寸和分支机构。高分支角度促成了单一领导和多领导树的茎干生产。虽然吠声浮雕与多领导树木中的STOM流程率呈负相关,但它与单线树木的速率呈正相关,可能反映了线性沟的有利作用一旦单一领导树树的树皮饱和。许多领导者,低茎流发起阈值和高利率之间的关联值得进一步研究。在气象变量中,雨深与茎流量强烈相关;降雨倾斜角度和风速与产率正相关,而风暴间破裂的持续时间和蒸气压缺陷呈呈正常相关。对于雨深<3mm,大量茎流量通常与无叶檐篷相关。为了支持综合雨水管理,我们的结果可以通过特性向城市树木的气候敏感选择和选址提供信息,这往往会根据渗透潜力来促进或最小化STOP流程。版权所有(c)2015 John Wiley&Sons,Ltd。

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