Application of snow specific surface area measurement using an optical method based on near-infrared reflectance around 900-nm wavelength to wet snow zones in Japan

IF 1 Q4 GEOGRAPHY, PHYSICAL Bulletin of glaciological research Pub Date : 2014-01-01 DOI:10.5331/BGR.32.55
S. Yamaguchi, H. Motoyoshi, T. Tanikawa, T. Aoki, M. Niwano, Y. Takeuchi, Y. Endo
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引用次数: 8

Abstract

The specific surface area (SSA) of snow can be used as an objective measurement to define the optical sphere diameter of snow; it is therefore a helpful parameter to describe the physical properties of snow, such as albedo. Recently, measurement of snow SSA in the field has become easier with the use of optical methods based on near-infrared reflectance values (Ref). However, existing optical methods have only been validated for dry snow conditions in the field. In this study, we tested the possibility of applying the optical method using light with wavelength of around 900 nm (NIR photometry) to wet snow zones in Japan by comparing the findings with snow pit observation data. Our results indicated that NIR photometry can be applied to wet snow zones before the main melt season when the liquid water content is small, but problems arose during melt season due to the appearance of darker layers with more high liquid water content. To resolve these problems, we propose three improvements to NIR photometry: using three calibration targets ranging from high Ref to low Ref in coverage; establishing an estimation formula for SSA from measured Ref, including lower Ref values; and considering how water in the snow influences Ref.
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基于900 nm左右近红外反射率的光学方法测量雪比表面积在日本湿雪区的应用
雪的比表面积(SSA)可以作为确定雪的光学球直径的客观测量;因此,它是描述雪的物理特性(如反照率)的有用参数。近年来,利用基于近红外反射率值(Ref)的光学方法在野外测量积雪SSA变得更加容易。然而,现有的光学方法仅在干燥的雪地条件下进行了验证。在本研究中,我们通过与雪坑观测数据的比较,测试了将波长约900 nm的光(近红外测光)光学方法应用于日本湿雪区的可能性。研究结果表明,在主要融冰季节之前,液态水含量较少的湿雪区可以采用近红外测光技术,但在融冰季节,由于冰层颜色较深,液态水含量较高,因此出现了问题。为了解决这些问题,我们提出了对近红外测光技术的三种改进:使用从高Ref到低Ref覆盖范围的三个校准目标;根据实测Ref(包括较低Ref值)建立SSA估计公式;考虑到雪中的水如何影响参考文献。
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来源期刊
Bulletin of glaciological research
Bulletin of glaciological research GEOGRAPHY, PHYSICAL-
CiteScore
2.20
自引率
20.00%
发文量
1
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