GSTDTAP  > 资源环境科学
DOI10.1029/2019WR024905
Within‐Stand Boundary Effects of Snow Water Equivalent Distribution in Forested Areas
R. W. Webb; M. S. Raleigh; D. McGrath; N. P. Molotch; K. Elder; C. Hiemstra; L. Brucker; H. P. Marshall
2020-07-04
发表期刊Water Resources Research
出版年2020
英文摘要

Forested areas exhibit high spatial variability in the distribution of snow water equivalent (SWE). Previous work has focused on forested areas with respect to snow accumulation in adjacent clearings. There is generally less snow in forested areas with greater variability relative to open areas due to the influence of tree canopies. However, the length scale of the transition from open areas to forested conditions is uncertain. Hence, the goal of this paper is to determine the length scales associated with forest boundary effects on SWE accumulation distribution patterns within forest stands. To accomplish this, we utilize a unique ground penetrating radar dataset collected during the NASA SnowEx campaign on Grand Mesa, Colorado in February 2017 to determine spatial SWE distribution patterns of areas under canopy and in clearings, and the length scales of transitions between these patterns (i.e. the size of within‐stand boundary areas). We define within‐stand boundary areas as the transitional zone from a clearing to relatively stable SWE distribution, or background distribution patterns, within forest stands. The largest within‐stand boundary effect occurred on the leeward side of stands with a mean extent of 44 m, or 4.3 mean canopy heights. In contrast, windward within‐stand boundary effects showed a mean extent of 28 m, or 3.7 mean canopy heights. We present a conceptual framework of the complex wind dynamics that occur in forest stands to explain the within‐stand boundary effects on SWE distribution. Future investigations could improve understanding of this complex process and associated driving variables.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/281764
专题资源环境科学
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R. W. Webb,M. S. Raleigh,D. McGrath,等. Within‐Stand Boundary Effects of Snow Water Equivalent Distribution in Forested Areas[J]. Water Resources Research,2020.
APA R. W. Webb.,M. S. Raleigh.,D. McGrath.,N. P. Molotch.,K. Elder.,...&H. P. Marshall.(2020).Within‐Stand Boundary Effects of Snow Water Equivalent Distribution in Forested Areas.Water Resources Research.
MLA R. W. Webb,et al."Within‐Stand Boundary Effects of Snow Water Equivalent Distribution in Forested Areas".Water Resources Research (2020).
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