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Ice Wall Growth and Decay: Meteorological Analysis and Modelling

机译:冰墙的生长和衰减:气象分析和建模

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摘要

The growth and decay of three ice walls were surveyed and analysed during the winter of 2010-11. Ice walls form on a cliff face due to the freezing of seeping ground water: two of the studied ice walls are on north-facing rock faces and one is on a south-facing cliff. Models of ice wall growth and decay were developed using meteorological data collected in their immediate surroundings and checked against growth and decay rates measured by volume changes obtained from terrestrial light detection and ranging images. A complete energy balance model is proposed and compared with two other simplified models. The first one is a temperature index or freezing degree-hours model (FDHm), and the second one is a model that combines the FDHm and the radiation heat budget (Q_(rad))- Both models reveal that heat loss from air convection from the seeping water to the atmosphere is the dominant heat transfer flux responsible for the north-facing ice wall growth and decay. Solar radiation also plays a major role in the melting of these ice walls. The overall evolution of the south-facing ice wall is more dependent on the daily variation of Q_(rad). When the air temperature falls below 0 ℃, the ice forms mostly during the night while solar radiation favours its melting during the day.
机译:在2010-11年冬季,对三个冰墙的生长和衰变进行了调查和分析。由于渗入的地下水冻结,在悬崖面上形成了冰墙:研究的两个冰墙在朝北的岩石面上,一个在朝南的悬崖上。冰壁生长和衰减的模型是使用在其周围环境中收集的气象数据开发的,并针对通过由地面光检测和测距图像获得的体积变化所测量的生长和衰减率进行了检查。提出了一个完整的能量平衡模型,并将其与其他两个简化模型进行比较。第一个是温度指数或冰冻小时数模型(FDHm),第二个是结合FDHm和辐射热收支(Q_(rad))的模型-两种模型都表明空气对流产生的热量损失来自渗入大气的水是导致北冰壁生长和衰减的主要传热通量。太阳辐射在这些冰壁的融化中也起着重要作用。朝南的冰墙的整体演变更多地取决于Q_(rad)的日变化。当气温降至0℃以下时,冰大部分形成于夜晚,而太阳辐射则有利于白天融化。

著录项

  • 来源
    《Permafrost and Periglacial Processes 》 |2015年第1期| 84-102| 共19页
  • 作者

    F. Gauthier; M. Allard; B. Hetu;

  • 作者单位

    Centre d'etudes nordiques, Departement de biologie, chimie et geographie, Universite du Quebec a Rimouski, Rimouski, Quebec, Canada,Centre d'etudes nordiques, Departement de geographie, Universite Laval, Pavilion Abitibi-Price, 2405 rue de la Terrasse, Quebec, Quebec, Canada G1V 0A6;

    Centre d'etudes nordiques, Departement de geographie, Universite Laval, Quebec, Quebec, Canada;

    Centre d'etudes nordiques, Departement de biologie, chimie et geographie, Universite du Quebec a Rimouski, Rimouski, Quebec, Canada;

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

    rockwall icing; ice wall; energy balance model; freezing degree hours; terrestrial light detection and ranging;

    机译:岩壁结冰;冰墙;能量平衡模型;冷冻度小时;地面光探测和测距;

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