CERES Level 3
Entry Title: CERES and GEO-Enhanced TOA, Within-Atmosphere and Surface Fluxes, Clouds and Aerosols Daily Terra-Aqua Edition4A

Entry ID: CER_SYN1deg-Day_Terra-Aqua-MODIS_Edition4A
Aerosols Clouds Radiation Budget
DOI

10.5067/Terra+Aqua/CERES/SYN1degDay_L3.004A

Citation Styles for this Dataset
Publications which Cite this Collection

Liang, Kaixin; Wang, Jinfei; Luo, Hao; Yang, Qinghua (2023). The Role of Atmospheric Rivers in Antarctic Sea Ice Variations.


Horvath, Sean; Boisvert, Linette; Parker, Chelsea; Webster, Melinda; Taylor, Patrick; Boeke, Robyn; Fons, Steven; Stewart, J. Scott (2023). Database of daily Lagrangian Arctic sea ice parcel drift tracks with coincident ice and atmospheric conditions.


Zhou, Lu; Heuzé, Céline; Mohrmann, Martin (2023). Sea Ice Production in the 2016 and 2017 Maud Rise Polynyas.


Feng, Jin; Zhang, Ke; Zhan, Huijie; Chao, Lijun (2023). Improved soil evaporation remote sensing retrieval algorithms and associated uncertainty analysis on the Tibetan Plateau.


Schuddeboom, A. J.; McDonald, A. J. (2022). Understanding Internal Cluster Variability Through Subcluster Metric Analysis in a Geophysical Context.


Trautmann, Tina; Koirala, Sujan; Carvalhais, Nuno; Güntner, Andreas; Jung, Martin (2021). The importance of vegetation in understanding terrestrial water storage variations.


Bony, Sandrine; Schulz, Hauke; Vial, Jessica; Stevens, Bjorn (2021). Sugar, Gravel, Fish, and Flowers: Dependence of Mesoscale Patterns of Trade‐Wind Clouds on Environmental Conditions.


Cui, Jiecan; Shi, Tenglong; Zhou, Yue; Wu, Dongyou; Wang, Xin; Pu, Wei (2020). Satellite-based radiative forcing by light-absorbing particles in snow across the Northern Hemisphere.


Zhang, Jianhao; Zuidema, Paquita (2020). The diurnal cycle of the smoky marine boundary layer observed during August in the remote southeast Atlantic. Atmospheric Chemistry and Physics, 19 (23), 14493. https://doi.org/10.5194/acp-19-14493-2019


Kraft, Basil; Jung, Martin; Körner, Marco; Koirala, Sujan; Reichstein, Markus (2019). Towards hybrid modeling of the global hydrological cycle.


Liu, Qiaozhen; Zhang, Zhaoyang; Fan, Meng; Wang, Quan (2019). The Divergent Estimates of Diffuse Radiation Effects on Gross Primary Production of Forest Ecosystems Using Light‐Use Efficiency Models.


Tornow, F.; Domenech, C.; Cole, J. N. S.; Madenach, N.; Fischer, J. (2018). Changes in TOA SW Fluxes over Marine Clouds When Estimated via Semiphysical Angular Distribution Models.


Li, Jiawei; Han, Zhiwei; Chen, Liang; Wu, Yunfei; Luo, Li (2018). Modeling study of aerosol-meteorology feedback during winter haze events over the north China plain.


Wright, Jonathon S.; Sun, Xiaoyi; Konopka, Paul; Krüger, Kirstin; Legras, Bernard; Molod, Andrea M.; Tegtmeier, Susann; Zhang, Guang J.; Zhao, Xi (2018). Differences in tropical high clouds among reanalyses: origins and radiative impacts.


Wehrli, Kathrin; Guillod, Benoit P.; Hauser, Mathias; Leclair, Matthieu; Seneviratne, Sonia I. (2018). Identifying Key Driving Processes of Major Recent Heat Waves.


Chen, Xingan; Huang, Yuefei; Nie, Chong; Zhang, Shuo; Wang, Guangqian; Chen, Shiliu; Chen, Zhichao (2017). A long-term reconstructed TROPOMI solar-induced fluorescence dataset using machine learning algorithms.


Ghausi, Sarosh Alam; Ghosh, Subimal; Kleidon, Axel (2016). Breakdown in precipitation–temperature scaling over India predominantly explained by cloud-driven cooling.


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Keywords

From GCMD Science Keywords:
  • ALBEDO
  • CLOUD DROPLET CONCENTRATION/SIZE > CLOUD MICROPHYSICS
  • CLOUD BASE PRESSURE > CLOUD PROPERTIES
  • SOLAR IRRADIANCE
  • PHOTOSYNTHETICALLY ACTIVE RADIATION
  • SURFACE PRESSURE
  • CLOUD TOP PRESSURE > CLOUD PROPERTIES
  • CLOUD BASE TEMPERATURE > CLOUD PROPERTIES
  • NET RADIATION
  • CLOUD FRACTION > CLOUD PROPERTIES
  • INCOMING SOLAR RADIATION
  • ATMOSPHERIC PRESSURE
  • CLOUD TOP TEMPERATURE > CLOUD PROPERTIES
  • CLOUD OPTICAL DEPTH/THICKNESS > CLOUD MICROPHYSICS
  • CLOUD EMISSIVITY > CLOUD RADIATIVE TRANSFER
  • CLOUD TOP HEIGHT > CLOUD PROPERTIES
  • AEROSOLS
  • Atmosphere Incoming Shortwave (SW) Entropy
  • Atmosphere Outgoing Longwave (LW) Entropy
  • Clear-Sky Fluxes
  • Cloud Effective Height
  • Cloud Effective Pressure
  • Cloud Effective Temperature
  • Cloud Infrared Emissivity
  • Cloud Particle Phase
  • Column Ozone
  • In-Atmosphere Fluxes
  • Photosynthetically Active Radiation (PAR) Fluxes
  • Shortwave (SW) Diffused Fluxes
  • Shortwave (SW) Direct Fluxes
  • Surface Downward Longwave (LW) Entropy
  • Surface Fluxes
  • Surface Incoming Shortwave (SW) Entropy
  • Surface Upward Longwave (LW) Entropy
  • TOA (Top of Atmosphere) Flux
  • TOA (Top of Atmosphere) Incoming Shortwave (SW) Entropy
  • TOA (Top of Atmosphere) Outgoing Longwave (LW) Entropy
  • Window (Wn) Region Flux
Data Distribution

File Format(s):

HDF4

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Spatial Information

spatial-coverage-map
Spatial Coverage: (S: -90, N: 90), (W: -180, E: 180)
Spatial Coverage Type: Not provided
Coordinate System: Cartesian
Granule Spatial Representation: Cartesian
Locations

GLOBAL TROPOSPHERE
Temporal Information

Temporal Coverage: 2002-07-01 - Present
Platforms

Earth Observation Satellites
Aqua
Earth Observing System, Aqua
CERES-FM4
Clouds and the Earth's Radiant Energy System - Flight Model 4
Shortwave Detector Total Detector Window Detector
CERES-FM3
Clouds and the Earth's Radiant Energy System - Flight Model 3
Shortwave Detector Total Detector Window Detector
CERES SCANNER
Clouds and the Earth's Radiant Energy System Scanner
MODIS
Moderate-Resolution Imaging Spectroradiometer
Terra
Earth Observing System, Terra (AM-1)
CERES-FM1
Clouds and the Earth's Radiant Energy System - Flight Model 1
Shortwave Detector Total Detector Window Detector
CERES-FM2
Clouds and the Earth's Radiant Energy System - Flight Model 2
Shortwave Detector Total Detector Window Detector
CERES SCANNER
Clouds and the Earth's Radiant Energy System Scanner
MODIS
Moderate-Resolution Imaging Spectroradiometer
GEOSTATIONARY SATELLITES
IMAGING RADIOMETERS
IMAGING RADIOMETERS
Metadata Dates

Created on 2015-03-27
Last updated on 2024-02-12