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Effects of fine-scale soil moisture and canopy heterogeneity on energy and water fluxes in a northern temperate mixed forest.

机译:北方温带混交林中细尺度土壤水分和冠层非均质性对能量和水通量的影响。

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摘要

Coupling between soil moisture, vegetation biomass, and energy fluxes is characterized by nonlinearities and thus current land surface parameterizations with aggregated surface response may produce biased results. This study aims to improve the understanding of the coupling modes between fine-, tree-scale (few meters) canopy and soil moisture variations, and their impacts on spatially integrated energy and water fluxes. The study was carried out for a spatially heterogeneous, temperate mixed forest environment of Northern Michigan located near the University of Michigan Biological Station. A high-resolution, physically-based ecohydrological model (tRIBS+VEGGIE) was used as a data integration tool to upscale spatial heterogeneities resolved at a tree-scale to a coarse-scale (several kilometers). Several simulation cases involving tree-scale variations in initial soil moisture, leaf area, and radiative forcing were designed. In order to infer the effects of coarse-scale aggregation, a lumped case representing the commonly used spatially-lumped representation was also simulated. The results demonstrate that heterogeneous canopy biomass determines the spatial dynamics of soil moisture. The spatial distribution of canopy height may play a particularly important role in determining the domain-scale fluxes when a forest system is in moisture-limiting conditions. Specifically, the tree-scale effects on light exposure and shading result in smaller spatially aggregated transpiration and lower water stress as compared to the results of the lumped representation.
机译:土壤水分,植被生物量和能量通量之间的耦合具有非线性特征,因此,当前具有综合表面响应的土地表面参数化可能会产生偏差的结果。这项研究旨在增进对细小,树尺(几米)冠层与土壤水分变化之间的耦合模式及其对空间积分能量和水通量的影响的理解。该研究是针对位于密歇根大学生物站附近的密歇根州北部一个空间异质,温带混合森林环境而进行的。高分辨率的基于物理的生态水文模型(tRIBS + VEGGIE)被用作数据集成工具,以将以树规模解析为粗略尺度(几千米)的空间异质性提升。设计了一些模拟案例,这些案例涉及初始土壤水分,叶面积和辐射强迫的树尺度变化。为了推断粗尺度聚合的影响,还模拟了代表常用空间集总表示的集总情况。结果表明,非均质冠层生物量决定了土壤水分的空间动态。当森林系统处于水分限制条件下时,冠层高度的空间分布可能在确定域尺度通量中起特别重要的作用。具体地说,与集总表示的结果相比,树比例尺对光照和阴影的影响导致较小的空间聚集蒸腾作用和较低的水分胁迫。

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