SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES

P(論文) Spectral albedo and transmittance of snow are investigated by field observation and a multiple scattering model. Observations were carried out on a snow field with enough snow depth (∿7m) at Murodo (36°34′30″N, 137°36′00″E, H=2440m) in Northern Alps of Japan in April 1994. The spectral albedo...

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Main Authors: アオキ, テルオ, アオキ, タダオ, フカボリ, マサシ, イイダ, ハジメ, AOKI, Teruo, AOKI, Tadao, FUKABORI, Masashi, IIDA, Hajime
Language:English
Published: National Institute of Polar Research 1995
Subjects:
Online Access:https://nipr.repo.nii.ac.jp/record/3910/files/KJ00001015027.pdf
https://doi.org/10.15094/00003910
https://nipr.repo.nii.ac.jp/records/3910
_version_ 1829314286051131392
author アオキ, テルオ
アオキ, タダオ
フカボリ, マサシ
イイダ, ハジメ
AOKI, Teruo
AOKI, Tadao
FUKABORI, Masashi
IIDA, Hajime
author_facet アオキ, テルオ
アオキ, タダオ
フカボリ, マサシ
イイダ, ハジメ
AOKI, Teruo
AOKI, Tadao
FUKABORI, Masashi
IIDA, Hajime
author_sort アオキ, テルオ
collection National Institute of Polar Research Repository, Japan
description P(論文) Spectral albedo and transmittance of snow are investigated by field observation and a multiple scattering model. Observations were carried out on a snow field with enough snow depth (∿7m) at Murodo (36°34′30″N, 137°36′00″E, H=2440m) in Northern Alps of Japan in April 1994. The spectral albedo was observed with a grating type spectrometer at wavelengths from 0.35 to 2.5μm. In this time, the snow surface was covered with an ice crust of 1-2cm thickness containing impurities, and comparatively pure snow was below it. Spectral albedos for snow surfaces with ice crust and without it (removed artificially) agree with the results of a multiple scattering model for snow containing impurities with radius of 500μm and for pure snow with radius of 100μm, respectively. On the other hand, transmittance inside the snow was observed by an optical fiber probe with a spectrometer. The observed transmittances of both snow with surface ice crust and without it at the depth of 15-18cm from the surface had a spectral distribution with peak in the wavelength region from 0.5 to 0.6μm. However, snow transmittance by a multiple scattering model for pure snow becomes a spectral distribution with peak in the wavelength region from 0.45 to 0.50μm as the snow depth increases. This suggests that only a small amount of impurity contained in snow without surface ice crust affects the transmittance inside the snow. departmental bulletin paper
genre Polar meteorology and glaciology
Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology
genre_facet Polar meteorology and glaciology
Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology
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institution Open Polar
language English
op_collection_id ftnipr
op_doi https://doi.org/10.15094/00003910
op_relation Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology
9
201
AA10756213
https://nipr.repo.nii.ac.jp/record/3910/files/KJ00001015027.pdf
https://doi.org/10.15094/00003910
https://nipr.repo.nii.ac.jp/records/3910
publishDate 1995
publisher National Institute of Polar Research
record_format openpolar
spelling ftnipr:oai:nipr.repo.nii.ac.jp:00003910 2025-04-13T14:25:53+00:00 SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES アオキ, テルオ アオキ, タダオ フカボリ, マサシ イイダ, ハジメ AOKI, Teruo AOKI, Tadao FUKABORI, Masashi IIDA, Hajime 1995-09 application/pdf https://nipr.repo.nii.ac.jp/record/3910/files/KJ00001015027.pdf https://doi.org/10.15094/00003910 https://nipr.repo.nii.ac.jp/records/3910 eng eng National Institute of Polar Research Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology 9 201 AA10756213 https://nipr.repo.nii.ac.jp/record/3910/files/KJ00001015027.pdf https://doi.org/10.15094/00003910 https://nipr.repo.nii.ac.jp/records/3910 1995 ftnipr https://doi.org/10.15094/00003910 2025-03-19T10:19:57Z P(論文) Spectral albedo and transmittance of snow are investigated by field observation and a multiple scattering model. Observations were carried out on a snow field with enough snow depth (∿7m) at Murodo (36°34′30″N, 137°36′00″E, H=2440m) in Northern Alps of Japan in April 1994. The spectral albedo was observed with a grating type spectrometer at wavelengths from 0.35 to 2.5μm. In this time, the snow surface was covered with an ice crust of 1-2cm thickness containing impurities, and comparatively pure snow was below it. Spectral albedos for snow surfaces with ice crust and without it (removed artificially) agree with the results of a multiple scattering model for snow containing impurities with radius of 500μm and for pure snow with radius of 100μm, respectively. On the other hand, transmittance inside the snow was observed by an optical fiber probe with a spectrometer. The observed transmittances of both snow with surface ice crust and without it at the depth of 15-18cm from the surface had a spectral distribution with peak in the wavelength region from 0.5 to 0.6μm. However, snow transmittance by a multiple scattering model for pure snow becomes a spectral distribution with peak in the wavelength region from 0.45 to 0.50μm as the snow depth increases. This suggests that only a small amount of impurity contained in snow without surface ice crust affects the transmittance inside the snow. departmental bulletin paper Other/Unknown Material Polar meteorology and glaciology Proceedings of the NIPR Symposium on Polar Meteorology and Glaciology National Institute of Polar Research Repository, Japan
spellingShingle アオキ, テルオ
アオキ, タダオ
フカボリ, マサシ
イイダ, ハジメ
AOKI, Teruo
AOKI, Tadao
FUKABORI, Masashi
IIDA, Hajime
SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES
title SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES
title_full SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES
title_fullStr SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES
title_full_unstemmed SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES
title_short SPECTRAL ALBEDO AND TRANSMITTANCE OF SNOW CONTAINING IMPURITIES
title_sort spectral albedo and transmittance of snow containing impurities
url https://nipr.repo.nii.ac.jp/record/3910/files/KJ00001015027.pdf
https://doi.org/10.15094/00003910
https://nipr.repo.nii.ac.jp/records/3910