13 results — topic: climatology

Dataset

SPLASH Field Study; NOAA and CIRES Ceilometer Cloud Data Products at Brush Creek, Colorado, 2021-10-19 to 2023-08-14 (NCEI Accession 0301003)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2025DOI: 10.25921/v28k-r512
Dataset

SPLASH Field Study; HELiX UAS Solar Irradiance data from 2022-03-12 to 2022-06-04 (NCEI Accession 0303584)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2025DOI: 10.25921/1x3z-k658
Dataset

SPLASH Field Study; NOAA GML Brush Creek & Kettle Ponds Snow Depth Estimates (NCEI Accession 0302850)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2025DOI: 10.25921/ywdd-4314
Dataset

SPLASH Field Study; NOAA PSL Soil Moisture and Surface Temperature Probe Data at Avery Picnic and Kettle Ponds, Colorado (NCEI Accession 0302136)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2025DOI: 10.25921/9875-sa56
Dataset

SPLASH Field Study; BST/NOAA PSL Level 3 UAS Soil Moisture, Digital Elevation, Normalized Difference Vegetative Index, and Surface Temperature (NCEI Accession 0301536)

From fall 2021 through summer 2023, NOAA and research partners participated in the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology (SPLASH). This field study installed a comprehensive, state-of-the-art observing network in the East River watershed of the Colorado mounta

NCEI2025DOI: 10.25921/kre7-sn43
Dataset

SPLASH Field Study; NOAA NSSL CLAMPS2 TROPoe Retrievals from 2021-10-21 to 2022-01-18 (NCEI Accession 0303080)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2025DOI: 10.25921/9nsn-0p81
Dataset

SPLASH Field Study; NOAA GML Surface Radiation Budget and Near-Surface Meteorology Data at Kettle Ponds and Brush Creek, Colorado (NCEI Accession 0302673)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2025DOI: 10.25921/125x-nz30
Dataset

SPLASH Field Study; Snow-level Radar FMCW Moments at Brush Creek, Colorado, 2021-12-20 to 2023-09-05 (NCEI Accession 0289129)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2024DOI: 10.25921/sgv1-1f48
Dataset

SPLASH Field Study; Snow-level Radar FMCW Moments at Kettle Ponds, Colorado, 2021-09-29 to 2023-09-06 (NCEI Accession 0289123)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2024DOI: 10.25921/cgta-2v72
Dataset

SPLASH Field Study; Surface Meteorological Observations at Roaring Judy, Colorado, 2021-09-28 to 2023-09-05 (NCEI Accession 0287379)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2024DOI: 10.25921/sx1d-p897
Dataset

SPLASH Field Study; Ott Disdrometer Raw & Stats Observations at Kettle Ponds, Colorado, 2021-09-30 to 2023-09-05 (NCEI Accession 0287378)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2024DOI: 10.25921/kpfz-1x77
Dataset

SPLASH Field Study; Ott Disdrometer Raw & Stats Observations at Brush Creek, Colorado, 2021-10-19 to 2023-09-03 (NCEI Accession 0287380)

From fall 2021 through summer 2023, NOAA and research partners conducted a field study (SPLASH - the Study of Precipitation, the Lower Atmosphere and Surface for Hydrometeorology). This field study established a state-of-the-art observing network in the East River watershed of the Colorado mountains

NCEI2024DOI: 10.25921/h2hh-r486
Dataset

Global Daily Surface Blue-sky Albedo Climatology and Land Cover Climatology Dataset from 20-year MODIS Products (500m)

Only the first days of each month were uploaded to Zenodo due to the data storage limitation, and the full dataset is available at http://glass.umd.edu/albedo_clim/. Surface albedo plays a critical role in climate, hydrological, and biogeochemical modeling and weather forecasting. Therefore, precise

Aolin Jia, Dongdong Wang, Shunlin Liang2022DOI: 10.5281/zenodo.6359686