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Development of a handheld integrating sphere snow grain sizer (HISSGraS)

Authors :
Teruo Aoki
Akihiro Hachikubo
Motoshi Nishimura
Masahiro Hori
Masashi Niwano
Tomonori Tanikawa
Konosuke Sugiura
Ryo Inoue
Satoru Yamaguchi
Sumito Matoba
Rigen Shimada
Hiroshi Ishimoto
Jean-Charles Gallet
Source :
Annals of Glaciology, Pp 1-12
Publisher :
Cambridge University Press.

Abstract

We developed a Handheld Integrating Sphere Snow Grain Sizer (HISSGraS) for field use to measure the specific surface area (SSA) of snow. In addition to snow samples, HISSGraS can directly measure snow surfaces and snow pit walls. The basic measurement principle is the same as that of the IceCube SSA instrument. The retrieval algorithm for SSA from reflectance employs two conversion equations formulated using spherical and nonspherical grain shape models. We observed SSAs using HISSGraS, IceCube and the gas adsorption method in a snowfield in Hokkaido, Japan. Intercomparison of the results confirmed that with HISSGraS direct measurement, SSA profile observations can be completed in just ~1/10 the time required for measurement of snow samples. Our results also suggest that HISSGraS and IceCube have similar accuracy when the same snow samples are measured using the same grain shape model. However, SSAs of near-surface snow layers measured using the three techniques exhibited some biases, possibly due to rapid snow metamorphism or melting during measurement and some technical issues with optical techniques. When excluding SSA data for the surface layer, which metamorphosed remarkably during measurement, IceCube- and HISSGraS-derived SSAs correlated strongly with those obtained by gas adsorption and HISSGraS accuracy is 21–34%.

Details

Language :
English
ISSN :
02603055 and 17275644
Database :
Directory of Open Access Journals
Journal :
Annals of Glaciology
Publication Type :
Academic Journal
Accession number :
edsdoj.8c85fd7866824f748fe97b94379776b7
Document Type :
article
Full Text :
https://doi.org/10.1017/aog.2023.72