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On the relationship between snow grain morphology and in-situ near infrared calibrated reflectance photographs

机译:雪粒形态与原位近红外定标反射率照片的关系

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摘要

Seasonal and permanent snow cover a significant portion of our planet, and its impact on climate is significant. Through specific thermophysical properties, snow controls radiative and turbulent fluxes between the ground and the atmosphere, but many aspects of the energy balance are poorly understood due to lingering uncertainties regarding snow properties, such as grain size in particular. Rapid and accurate measurement method has yet to be developed given the reality of field and laboratory logistical constraints, and the sensitivity of snow to any sort of manipulation.rnIn this paper, we investigate the relationship between snow grain morphology parameters measured from visible (traditional) snow grain photography and optical diameter estimated from Near-InfraRed (NIR) reflectance photographs of snow walls. A total of 51 snowpits were analyzed during our International Polar Year field campaign across a 1000 km South-to-North transect over Eastern Canada. We compared the NIR measurements with the theoretical snow albedo model of Kokhanovsky and Zege (2004). Results show the large difference between the snow specific surface area (SSA) of snow grains derived from snow albedo model and the geometrical (visual) diameter. From three different snow grain classes which can be distinguished from traditional photography, linkages can be made with shape factors required in the optical model in order to retrieve optical grain size from NIR photography.
机译:季节性和永久性降雪覆盖了我们星球的很大一部分,并且对气候的影响也很大。通过特定的热物理特性,降雪控制着地面与大气之间的辐射通量和湍流,但是由于对降雪特性的不确定性(尤其是晶粒尺寸)存在不确定性,人们对能量平衡的许多方面了解甚少。考虑到现场和实验室后勤约束的实际情况,以及雪对任何形式的操纵的敏感性,尚未开发出快速,准确的测量方法。本文研究从可见(传统)方法测量的雪粒形态参数之间的关系。根据雪墙的近红外(NIR)反射照片估算的雪粒摄影和光学直径。在我们的“国际极地年”野外运动期间,在加拿大东部横跨1000公里的南北向样带中共分析了51个雪坑。我们将近红外测量结果与Kokhanovsky and Zege(2004)的理论雪反照率模型进行了比较。结果表明,由雪反照率模型得出的雪粒的雪比表面积(SSA)与几何(视觉)直径之间存在很大差异。从可以与传统摄影区别开来的三种不同的雪粒类别中,可以与光学模型中所需的形状因子进行链接,以便从NIR摄影中获取光学粒的大小。

著录项

  • 来源
    《Cold regions science and technology》 |2010年第1期|34-42|共9页
  • 作者单位

    Centre d'Applications et de Recherches en Teledetection, Universite de Sherbrooke, Quebec, Canada;

    Centre d'Applications et de Recherches en Teledetection, Universite de Sherbrooke, Quebec, Canada;

    Centre d'Applications et de Recherches en Teledetection, Universite de Sherbrooke, Quebec, Canada;

    Universite Joseph Fourier - Grenoble 1/CNRS, Laboratoire de Glaciologie et Geophysique de l'Environnement, France;

    Universite Joseph Fourier - Grenoble 1/CNRS, Laboratoire de Glaciologie et Geophysique de l'Environnement, France;

    Universite Joseph Fourier - Grenoble 1/CNRS, Laboratoire de Glaciologie et Geophysique de l'Environnement, France;

    Centre d'Applications et de Recherches en Teledetection, Universite de Sherbrooke, Quebec, Canada;

    Universite Joseph Fourier - Grenoble 1/CNRS, Laboratoire de Glaciologie et Geophysique de l'Environnement, France;

    Centre d'Applications et de Recherches en Teledetection, Universite de Sherbrooke, Quebec, Canada;

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

    snow grain; infrared reflectance; optical diameter; albedo model; in-situ measurements;

    机译:雪粒红外反射率光学直径反照率模型原位测量;

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