Not logged in
PANGAEA.
Data Publisher for Earth & Environmental Science

Lin, Jialin (2019): Global Datasets of Land Surface State Changes Associated with the Madden-Julian Oscillation [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.906885

Always quote citation above when using data! You can download the citation in several formats below.

RIS CitationBibTeX Citation

Abstract:
This data article reports the global datasets of land surface state changes including daily maximum and minimum temperature, diurnal temperature range, surface precipitation, snow cover, soil moisture and outgoing longwave radiation associated with the Madden-Julian Oscillation (MJO), which are related to the research article entitled "Variation of Global Diurnal Temperature Range Associated with the Madden-Julian Oscillation" published in the Journal of Atmospheric and Solar-Terrestrial Physics by Lin and Qian (2019). The changes of surface air temperature and diurnal temperature range are calculated from two datasets: the Berkeley surface air temperature and the National Oceanic and Atmospheric Administration (NOAA) Climate Prediction Center (CPC) surface air temperature. The change of surface precipitation is derived from the NOAA CPC daily surface precipitation. The change of snow cover is calculated from the MODIS satellite data. The change of soil moisture is derived from the European Space Agency combined satellite data. The change of outgoing longwave radiation is calculated from NOAA satellite measurements. All of the data are stored in separate netcdf files and deposited at PANGAEA. These datasets can be used as observational benchmarks for evaluating the MJO simulations in global climate models, and in studies of MJO's impacts on global physical systems, public health, and ecosystems.
Keyword(s):
Diurnal temperature range; Madden-Julian Oscillation; Snow cover; Soil Moisture; Surface air temperature; Surface precipitation
Related to:
Lin, Jialin; Qian, Taotao (2019): Global datasets of land surface state changes associated with the Madden-Julian Oscillation. Data in Brief, 27, 104719, https://doi.org/10.1016/j.dib.2019.104719
Lin, Jialin; Qian, Taotao (2019): Variation of global diurnal temperature range associated with the Madden-Julian Oscillation. Journal of Atmospheric and Solar-Terrestrial Physics, 195, 105119, https://doi.org/10.1016/j.jastp.2019.105119
Parameter(s):
#NameShort NameUnitPrincipal InvestigatorMethod/DeviceComment
File contentContentLin, Jialin
File formatFile formatLin, Jialin
File sizeFile sizekByteLin, Jialin
File nameFile nameLin, Jialin
Uniform resource locator/link to fileURL fileLin, Jialin
Size:
200 data points

Data

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


Content

File format

File size [kByte]

File name

URL file
DTR Berkeley DJFnetCDF91.891DTR_Berkeley_cormjoDJFDTR_Berkeley_cormjoDJF.nc
DTR Berkeley DJF95netCDF91.891DTR_Berkeley_cormjoDJF95DTR_Berkeley_cormjoDJF95.nc
DTR Berkeley JJAnetCDF91.891DTR_Berkeley_cormjoJJADTR_Berkeley_cormjoJJA.nc
DTR Berkeley JJA95netCDF91.891DTR_Berkeley_cormjoJJA95DTR_Berkeley_cormjoJJA95.nc
DTR CPC DJFnetCDF91.891DTR_CPC_cormjoDJFDTR_CPC_cormjoDJF.nc
DTR CPC DJF95netCDF91.891DTR_CPC_cormjoDJF95DTR_CPC_cormjoDJF95.nc
DTR CPC JJAnetCDF91.891DTR_CPC_cormjoJJADTR_CPC_cormjoJJA.nc
DTR CPC JJA95netCDF91.891DTR_CPC_cormjoJJA95DTR_CPC_cormjoJJA95.nc
OLR NOAA DJFnetCDF91.891OLR_NOAA_cormjoDJFOLR_NOAA_cormjoDJF.nc
OLR NOAA DJF95netCDF91.891OLR_NOAA_cormjoDJF95OLR_NOAA_cormjoDJF95.nc
OLR NOAA JJAnetCDF91.891OLR_NOAA_cormjoJJAOLR_NOAA_cormjoJJA.nc
OLR NOAA JJA95netCDF91.891OLR_NOAA_cormjoJJA95OLR_NOAA_cormjoJJA95.nc
Precip CPC DJFnetCDF91.891Precip_CPC_cormjoDJFPrecip_CPC_cormjoDJF.nc
Precip CPC DJF95netCDF91.891Precip_CPC_cormjoDJF95Precip_CPC_cormjoDJF95.nc
Precip CPC JJAnetCDF91.891Precip_CPC_cormjoJJAPrecip_CPC_cormjoJJA.nc
Precip CPC JJA95netCDF91.891Precip_CPC_cormjoJJA95Precip_CPC_cormjoJJA95.nc
Snow Cover MODIS DJFnetCDF380.852Snow_Cover_MODIS_cormjoDJFSnow_Cover_MODIS_cormjoDJF.nc
Snow Cover MODIS DJF95netCDF380.852Snow_Cover_MODIS_cormjoDJF95Snow_Cover_MODIS_cormjoDJF95.nc
Snow Cover MODIS JJAnetCDF380.852Snow_Cover_MODIS_cormjoJJASnow_Cover_MODIS_cormjoJJA.nc
Snow Cover MODIS JJA95netCDF380.852Snow_Cover_MODIS_cormjoJJA95Snow_Cover_MODIS_cormjoJJA95.nc
Soil Moisture ESA DJFnetCDF91.891Soil_Moisture_ESA_cormjoDJFSoil_Moisture_ESA_cormjoDJF.nc
Soil Moisture ESA DJF95netCDF91.891Soil_Moisture_ESA_cormjoDJF95Soil_Moisture_ESA_cormjoDJF95.nc
Soil Moisture ESA JJAnetCDF91.891Soil_Moisture_ESA_cormjoJJASoil_Moisture_ESA_cormjoJJA.nc
Soil Moisture ESA JJA95netCDF91.891Soil_Moisture_ESA_cormjoJJA95Soil_Moisture_ESA_cormjoJJA95.nc
Tmax Berkeley DJFnetCDF91.891Tmax_Berkeley_cormjoDJFTmax_Berkeley_cormjoDJF.nc
Tmax Berkeley DJF95netCDF91.891Tmax_Berkeley_cormjoDJF95Tmax_Berkeley_cormjoDJF95.nc
Tmax Berkeley JJAnetCDF91.891Tmax_Berkeley_cormjoJJATmax_Berkeley_cormjoJJA.nc
Tmax Berkeley JJA95netCDF91.891Tmax_Berkeley_cormjoJJA95Tmax_Berkeley_cormjoJJA95.nc
Tmax CPC DJFnetCDF91.891Tmax_CPC_cormjoDJFTmax_CPC_cormjoDJF.nc
Tmax CPC DJF95netCDF91.891Tmax_CPC_cormjoDJF95Tmax_CPC_cormjoDJF95.nc
Tmax CPC JJAnetCDF91.891Tmax_CPC_cormjoJJATmax_CPC_cormjoJJA.nc
Tmax CPC JJA95netCDF91.891Tmax_CPC_cormjoJJA95Tmax_CPC_cormjoJJA95.nc
Tmin Berkeley DJFnetCDF91.891Tmin_Berkeley_cormjoDJFTmin_Berkeley_cormjoDJF.nc
Tmin Berkeley DJF95netCDF91.891Tmin_Berkeley_cormjoDJF95Tmin_Berkeley_cormjoDJF95.nc
Tmin Berkeley JJAnetCDF91.891Tmin_Berkeley_cormjoJJATmin_Berkeley_cormjoJJA.nc
Tmin Berkeley JJA95netCDF91.891Tmin_Berkeley_cormjoJJA95Tmin_Berkeley_cormjoJJA95.nc
Tmin CPC DJFnetCDF91.891Tmin_CPC_cormjoDJFTmin_CPC_cormjoDJF.nc
Tmin CPC DJF95netCDF91.891Tmin_CPC_cormjoDJF95Tmin_CPC_cormjoDJF95.nc
Tmin CPC JJAnetCDF91.891Tmin_CPC_cormjoJJATmin_CPC_cormjoJJA.nc
Tmin CPC JJA95netCDF91.891Tmin_CPC_cormjoJJA95Tmin_CPC_cormjoJJA95.nc