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Snowmelt energy balance in a burned forest stand, Crowsnest Pass, Alberta.

机译:亚伯达省Crowsnest Pass的一片被烧森林中的融雪能量平衡。

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摘要

Forested watersheds in western North America are subject to significant change from natural and anthropogenic disturbance, including wildfire. Forest canopy changes have subsequent impacts on sub-canopy snow processes. A simple, process-based point energy balance model was developed to quantify differences in energy balance characteristics between a burned and a healthy forest stand. Potential model uncertainties were identified using sensitivity analyses. Simulated snowmelt accurately recreated measured snowmelt, providing confidence in the model's ability to simulate energy balance processes in subcanopy environments where wind redistribution and sublimation are not major drivers of the local snowmelt energy balance. In the burned stand, subcanopy snow accumulation was greater but melted more rapidly than in the healthy stand. The removal of forest canopy resulted in more energy available for snowmelt, including higher short-wave and lower long-wave radiation, and increased turbulent fluxes. Burned stands should be considered a separate land cover type in larger scale watershed models.
机译:北美西部的森林流域会受到自然和人为干扰(包括野火)的重大影响。林冠层变化对次冠层积雪过程具有后续影响。建立了一个简单的基于过程的点能量平衡模型,以量化被烧森林和健康林分之间能量平衡特征的差异。使用敏感性分析确定潜在的模型不确定性。模拟的融雪可以准确地重新创建测得的融雪,从而使该模型具有信心,可以在风速重新分配和升华不是当地融雪能量平衡的主要驱动力的亚冠层环境中模拟能量平衡过程。在燃烧的林分中,与健康林分相比,冠层下积雪更大,但融化速度更快。森林冠层的清除导致更多的能量可用于融雪,包括更高的短波辐射和更低的长波辐射,以及增加的湍流。在较大规模的分水岭模型中,应将燃烧的林分视为单独的土地覆盖类型。

著录项

  • 作者

    Burles, Katie.;

  • 作者单位

    University of Lethbridge (Canada).;

  • 授予单位 University of Lethbridge (Canada).;
  • 学科 Hydrologic sciences.
  • 学位 M.Sc.
  • 年度 2010
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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