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Data Publisher for Earth & Environmental Science

Niwano, Masashi; Aoki, Teruo; Tanikawa, Tomonori; Ohkawara, Nozomu; Matoba, Sumito; Kodama, Yuji (2020): (Supplement 1) Gap-filled half-hourly meteorological/snow data to drive snow models at Sapporo, Japan, in netCDF format [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.919794, In: Niwano, M et al. (2020): Meteorological and snow observation data obtained at Sapporo, Japan for snow-related process studies [dataset bundled publication]. PANGAEA, https://doi.org/10.1594/PANGAEA.919800

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Keyword(s):
meteorological measurement; optical remote sensing of snow; radiation measurement; Sapporo; seasonal snow; snow grain size; snow impurity; snow surface energy balance
Related to:
Aoki, Teruo; Kuchiki, Katsuyuki; Niwano, Masashi; Kodama, Yuji; Hosaka, Masahiro; Tanaka, Taichu (2011): Physically based snow albedo model for calculating broadband albedos and the solar heating profile in snowpack for general circulation models. Journal of Geophysical Research, 116(D11), https://doi.org/10.1029/2010JD015507
Niwano, Masashi; Aoki, Teruo; Kuchiki, Katsuyuki; Hosaka, Masahiro; Kodama, Yuji (2012): Snow Metamorphism and Albedo Process (SMAP) model for climate studies: Model validation using meteorological and snow impurity data measured at Sapporo, Japan. Journal of Geophysical Research-Earth Surface, 117(F3), https://doi.org/10.1029/2011JF002239
Niwano, Masashi; Aoki, Teruo; Kuchiki, Katsuyuki; Hosaka, Masahiro; Kodama, Yuji; Yamaguchi, Satoru; Motoyoshi, Hiroki; Iwata, Yukiyoshi (2014): Evaluation of updated physical snowpack model SMAP. Bulletin of Glaciological Research, 32(0), 65-78, https://doi.org/10.5331/bgr.32.65
Tanikawa, Tomonori; Kuchiki, Katsuyuki; Aoki, Teruo; Ishimoto, H; Hachikubo, Akihiro; Niwano, Masashi; Hosaka, Masahiro; Matoba, Sumito; Kodama, Yuji; Iwata, Yukiyoshi; Stamnes, Knut (2020): Effects of Snow Grain Shape and Mixing State of Snow Impurity on Retrieval of Snow Physical Parameters From Ground‐Based Optical Instrument. Journal of Geophysical Research: Atmospheres, 125(15), https://doi.org/10.1029/2019JD031858
Coverage:
Median Latitude: 43.084028 * Median Longitude: 141.339028 * South-bound Latitude: 43.082222 * West-bound Longitude: 141.336389 * North-bound Latitude: 43.085833 * East-bound Longitude: 141.341667
Date/Time Start: 2005-10-31T15:30:00 * Date/Time End: 2008-10-31T15:30:00
Minimum Elevation: 12.0 m * Maximum Elevation: 15.0 m
Event(s):
SAP1 (Sapporo)  * Latitude: 43.082222 * Longitude: 141.341667 * Date/Time: 2005-10-31T15:30:00 * Elevation: 15.0 m * Location: Japan * Method/Device: Weather station/meteorological observation (WST) * Comment: Institute of Low Temperature Science, Hokkaido University, Sapporo, Japan
SAP2 (Sapporo)  * Latitude: 43.085833 * Longitude: 141.336389 * Date/Time: 2008-10-31T15:30:00 * Elevation: 12.0 m * Location: Japan * Method/Device: Weather station/meteorological observation (WST) * Comment: Institute of Low Temperature Science, Hokkaido University, Sapporo, Japan
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
Event labelEventNiwano, Masashi
File contentContentNiwano, Masashi
File nameFile nameNiwano, Masashi
File formatFile formatNiwano, Masashi
File sizeFile sizekByteNiwano, Masashi
Uniform resource locator/link to fileURL fileNiwano, Masashi
Size:
70 data points

Data

Download dataset as tab-delimited text — use the following character encoding:


Event

Content

File name

File format

File size [kByte]

URL file
SAP1 Gap-filled half-hourly meteorological snow data 2006-2007Sapporo_30min_model-input_2006-2007netCDF477.938Sapporo_30min_model-input_2006-2007.nc
SAP1Gap-filled half-hourly meteorological snow data 2007-2008Sapporo_30min_model-input_2007-2008netCDF480.563Sapporo_30min_model-input_2007-2008.nc
SAP2 Gap-filled half-hourly meteorological snow data 2008-2009Sapporo_30min_model-input_2008-2009netCDF477.938Sapporo_30min_model-input_2008-2009.nc
SAP2Gap-filled half-hourly meteorological snow data 2009-2010Sapporo_30min_model-input_2009-2010netCDF477.938Sapporo_30min_model-input_2009-2010.nc
SAP2Gap-filled half-hourly meteorological snow data 2010-2011Sapporo_30min_model-input_2010-2011netCDF477.938Sapporo_30min_model-input_2010-2011.nc
SAP2Gap-filled half-hourly meteorological snow data 2011-2012Sapporo_30min_model-input_2011-2012netCDF480.563Sapporo_30min_model-input_2011-2012.nc
SAP2Gap-filled half-hourly meteorological snow data 2012-2013Sapporo_30min_model-input_2012-2013netCDF477.938Sapporo_30min_model-input_2012-2013.nc
SAP2Gap-filled half-hourly meteorological snow data 2013-2014Sapporo_30min_model-input_2013-2014netCDF477.938Sapporo_30min_model-input_2013-2014.nc
SAP2Gap-filled half-hourly meteorological snow data 2014-2015Sapporo_30min_model-input_2014-2015netCDF477.938Sapporo_30min_model-input_2014-2015.nc
SAP2Gap-filled half-hourly meteorological snow data 2015-2016Sapporo_30min_model-input_2015-2016netCDF480.563Sapporo_30min_model-input_2015-2016.nc
SAP2Gap-filled half-hourly meteorological snow data 2016-2017Sapporo_30min_model-input_2016-2017netCDF477.938Sapporo_30min_model-input_2016-2017.nc
SAP2Gap-filled half-hourly meteorological snow data 2017-2018Sapporo_30min_model-input_2017-2018netCDF477.938Sapporo_30min_model-input_2017-2018.nc
SAP2Gap-filled half-hourly meteorological snow data 2018-2019Sapporo_30min_model-input_2018-2019netCDF477.938Sapporo_30min_model-input_2018-2019.nc
SAP2Gap-filled half-hourly meteorological snow data 2019-2020Sapporo_30min_model-input_2019-2020netCDF480.563Sapporo_30min_model-input_2019-2020.nc