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Resolving the Influence of Forest-Canopy Structure on Snow Depth Distributions with Terrestrial Laser Scanning

机译:解决林冠层结构对陆地激光扫描雪深度分布的影响

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Predicting changes in forested seasonal snowpacks under altered climate scenarios is one of the most pressing hydrologic challenges facing today's society. Approximately 2 billion people worldwide, as well as numerous ecosystems and ecosystem services depend on water released from snowmelt. Airborne- and satellite-based remote sensing methods hold the potential to transform measurements of terrestrial water stores in snowpack, improve process representations of snowpack accumulation and ablation, and generate high quality predictions that inform potential strategies to better manage water resources. While the effects of forest on snowpack are well documented, many of the fine-scale processes influenced by the forest-canopy are not directly accounted for because most snow models don't explicitly represent canopy structure and canopy heterogeneity. The goal of this project is improving snow remote-sensing methods in forested ecosystems using fine scale lidar measurements to identify capabilities and limitations of coarser scale remote sensing. We use terrestrial laser scanning (TLS) data collected during NASA's 2017 SnowEX campaign to resolve canopy and sub-canopy snow distributions at high resolution, and to understand the relationships between canopy and snow distributions across scales. Our sample scales range from individual trees to patches of trees across the Grand Mesa, Colorado, USA, NASA SnowEx site.
机译:改变气候情景下预测森林季节性积雪的变化是当今社会面临的最紧迫水文挑战之一。全球约20亿人,以及许多生态系统和生态系统服务依赖于雪花释放的水。基于空中和卫星的遥感方法持有潜力,以改变积雪中的地面水资源储存的测量,改善积雪积累和消融的过程表示,并产生高质量的预测,以提供更好地管理水资源的潜在策略。虽然森林对积雪的影响有很好的记录,但许多受森林冠层影响的许多细微过程都没有直接占因为大多数雪模型没有明确代表树冠结构和冠层异质性。该项目的目标是使用精细激光雷达测量来改善森林生态系统中的雪遥感方法,以确定粗略秤遥感的能力和限制。我们使用在NASA 2017 Snaxex运动期间收集的地面激光扫描(TLS)数据来解决高分辨率的冠层和子冠层雪分布,并了解横跨尺度的树冠和雪分布之间的关系。我们的样本鳞片范围从个别树木到横跨大梅萨,科罗拉多州,美国,美国宇航局雪雪道网站的树木。

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