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Effects of shelterbelts on snow distribution and sublimation

机译:防护林带对降雪和升华的影响

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摘要

On the Canadian Prairies and the northern US Great Plains, snow is an important component of annual precipitation, sometimes constituting over 40% of the total, although there is much annual and regional variability. Much of this snow is transported by wind, causing substantial sublimation losses, which are reduced by obstacles and topographic features on the landscape that reduce snow transport and trap snow. Agroforestry configurations trap snow and reduce the amount and distance of snow movement and, because of this, reduce the amount of moisture lost to sublimation. The planning of agroforestry measures should therefore take into account their effects on snow hydrology. In this study, the effects of shelterbelts on snow quantity and distribution are shown over multiple years, including a number of locations in Manitoba and Saskatchewan. Results show that snow transport reached equilibrium in 400 m or less (i.e., that sublimation rates were at their maximum beyond 400 m leeward of a shelterbelt). Also, in a paired landscape inventory, the landscape with shelterbelts had 29% more snow water equivalent (SWE) than the unsheltered landscape. Site-specific meteorological data was used in the Prairie Blowing Snow Model, now a component of the Cold Regions Hydrological Model, to calculate the effects of agroforestry configurations on snow water conservation. Modeled snow distribution agreed well with measured snow at Conquest, Saskatchewan, in the winter of 2009/2010. Using actual weather data for the same location for the period 1996–2011, the model calculated the annual sublimation from 200 m wide fields protected by shelterbelts to be up to 12.5 mm less than similar unsheltered fields.
机译:在加拿大大草原和美国北部大平原上,降雪是年降水量的重要组成部分,尽管每年和地区的变化很大,但有时占总降水量的40%以上。大量的积雪是通过风运输的,导致大量的升华损失,而地形上的障碍和地形特征则减少了积雪的运输和积雪,减少了升华损失。农林业结构可以积雪并减少积雪运动的距离和距离,因此减少了因升华而损失的水分。因此,农林业措施的规划应考虑到其对积雪水文学的影响。在这项研究中,多年以来显示了防护林带对积雪数量和分布的影响,包括曼尼托巴省和萨斯喀彻温省的许多地点。结果表明,雪的运输在400 m或更短的时间内达到了平衡(即升华率在防护带下风超过400 m时达到最大值)。此外,在成对的景观清单中,有防护林的景观的雪水当量(SWE)比无遮挡的景观高29%。草原吹雪模型(现已成为寒冷地区水文模型的组成部分)中使用了特定地点的气象数据,以计算农林业结构对积雪水保护的影响。 2009/2010年冬季,模拟的雪分布与萨斯喀彻温省Conquest的实测雪吻合得很好。利用1996-2011年同一地点的实际天气数据,该模型计算出的200m宽阔年限中,由防护林带保护的田地的年升华量最多比类似的非庇护地少12.5mm。

著录项

  • 来源
    《Agroforestry Systems》 |2012年第3期|p.335-344|共10页
  • 作者单位

    Agri-Environment Services Branch, Agroforestry Development Centre, Agriculture and Agri-Food Canada, P.O. Box 940, Indian Head, SK, S0G 2K0, Canada;

    Agri-Environment Services Branch, Agroforestry Development Centre, Agriculture and Agri-Food Canada, Room 600, 138-4th Avenue SE, Calgary, AB, T2G 4Z6, Canada;

    Centre for Hydrology, University of Saskatchewan, 117 Science Place, Saskatoon, SK, S7N 5C8, Canada;

    Centre for Hydrology, University of Saskatchewan, 117 Science Place, Saskatoon, SK, S7N 5C8, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Snow; Sublimation; Hydrology; Shelterbelt;

    机译:雪;升华;水文学;风雨棚;

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