Evaluation of FY-3B Reprocessed OLR Data in the Asian—Australian Monsoon Region during 2011–2019: Comparison with NOAA OLR
暂无分享,去创建一个
R. Wu | Wanchun Zhang | Lin Wang | Wen Chen | Lin Liu
[1] Lei Lin,et al. Future Changes in the Asian‐Australian Monsoon System With 1.5°C and 2°C Rise in Temperature , 2021, Journal of Geophysical Research: Atmospheres.
[2] F. Zheng,et al. Decadal change in ENSO related seasonal precipitation over southern China under influences of ENSO and its combination mode , 2020, Climate Dynamics.
[3] Weijing Li,et al. Why Is the East Asian Summer Monsoon Extremely Strong in 2018?—Collaborative Effects of SST and Snow Cover Anomalies , 2019, Journal of Meteorological Research.
[4] T. Hadi,et al. Contributing Factors to Spatiotemporal Variations of Outgoing Longwave Radiation (OLR) in the Tropics , 2019, Journal of Climate.
[5] R. Wu,et al. Dominant Interannual Covariations of the East Asian–Australian Land Precipitation during Boreal Winter , 2019, Journal of Climate.
[6] Renhe Zhang,et al. Boreal Summer Intraseasonal Oscillation in the Asian–Pacific Monsoon Region Simulated in CAMS-CSM , 2019, Journal of Meteorological Research.
[7] R. Wu,et al. Diversity of the Pacific–Japan Pattern among CMIP5 Models: Role of SST Anomalies and Atmospheric Mean Flow , 2018, Journal of Climate.
[8] R. Wu,et al. Large-Scale Pattern of the Diurnal Temperature Range Changes over East Asia and Australia in Boreal Winter: A Perspective of Atmospheric Circulation , 2018 .
[9] Qi Xu,et al. Interannual variability of summertime outgoing longwave radiation over the Maritime Continent in relation to East Asian summer monsoon anomalies , 2017, Journal of Meteorological Research.
[10] Norman G. Loeb,et al. The El Niño–Southern Oscillation effect on tropical outgoing longwave radiation: A daytime versus nighttime perspective , 2017 .
[11] D. E. Harrison,et al. Global Seasonal Precipitation Anomalies Robustly Associated with El Niño and La Niña Events—An OLR Perspective*,+ , 2015 .
[12] P. Xie,et al. A Validation of Passive Microwave Rain-Rate Retrievals from the Chinese FengYun-3B Satellite , 2015 .
[13] G. Zhai,et al. In-situ measurements of cloud-precipitation microphysics in the East Asian monsoon region since 1960 , 2015, Journal of Meteorological Research.
[14] W. Tao,et al. Diverse Influences of ENSO on the East Asian–Western Pacific Winter Climate Tied to Different ENSO Properties in CMIP5 Models , 2015 .
[15] Yihui Ding,et al. Interdecadal variability of the East Asian winter monsoon and its possible links to global climate change , 2014, Journal of Meteorological Research.
[16] Klaus M. Weickmann,et al. A Comparison of OLR and Circulation-Based Indices for Tracking the MJO , 2014 .
[17] D. Jackson,et al. Satellite-Based Reconstruction of the Tropical Oceanic Clear-Sky Outgoing Longwave Radiation and Comparison with Climate Models , 2014 .
[18] Jingjing Liu,et al. Postlaunch Calibration of FengYun-3B MERSI Reflective Solar Bands , 2013, IEEE Transactions on Geoscience and Remote Sensing.
[19] D. E. Harrison,et al. El Niño Impacts on Seasonal U.S. Atmospheric Circulation, Temperature, and Precipitation Anomalies: The OLR-Event Perspective* , 2013 .
[20] Hu Yang,et al. Long-Term Calibration and Accuracy Assessment of the FengYun-3 Microwave Temperature Sounder Radiance Measurements , 2012, IEEE Transactions on Geoscience and Remote Sensing.
[21] Hu Yang,et al. Environmental Data Records From FengYun-3B Microwave Radiation Imager , 2012, IEEE Transactions on Geoscience and Remote Sensing.
[22] Jun Yang,et al. Improvements on global meteorological observations from the current Fengyun 3 satellites and beyond , 2012, Int. J. Digit. Earth.
[23] Xiao Wu,et al. Estimating the outgoing longwave radiation from the FY-3B satellite visible infrared radiometer Channel 5 radiance observations , 2011 .
[24] Hu Yang,et al. The FengYun-3 Microwave Radiation Imager On-Orbit Verification , 2011, IEEE Transactions on Geoscience and Remote Sensing.
[25] David T. Bolvin,et al. Improving the global precipitation record: GPCP Version 2.1 , 2009 .
[26] Bin Wang,et al. How Well Do Atmospheric General Circulation Models Capture the Leading Modes of the Interannual Variability of the Asian-Australian Monsoon? , 2009 .
[27] Bin Wang,et al. Interdecadal Changes in the Major Modes of Asian–Australian Monsoon Variability: Strengthening Relationship with ENSO since the Late 1970s* , 2008 .
[28] Bin Wang,et al. Pacific–East Asian Teleconnection: How Does ENSO Affect East Asian Climate? , 2000 .
[29] V. Kousky,et al. A Comparison of Rainfall, Outgoing Longwave Radiation, and Divergence over the Amazon Basin , 1998 .
[30] Phillip A. Arkin,et al. Global Monthly Precipitation Estimates from Satellite-Observed Outgoing Longwave Radiation , 1998 .
[31] P. Chu,et al. Recent Climate Change in the Tropical Western Pacific and Indian Ocean Regions as Detected by Outgoing Longwave Radiation Records , 1997 .
[32] Phillip A. Arkin,et al. Large-scale interannual variability of monthly outgoing longwave radiation anomalies over the global tropics , 1992 .
[33] Quanhua Liu,et al. Outgoing longwave radiation and its diurnal variation at regional scales derived from Meteosat , 1988 .
[34] Patricia M. Cisarik,et al. A Comparison , 1913, Texas medical journal.
[35] Bin Wang,et al. Future change of Asian-Australian monsoon under RCP 4.5 anthropogenic warming scenario , 2013, Climate Dynamics.
[36] Yihui Ding,et al. The relationships between the global satellite-observed outgoing longwave radiation and the rainfall over China in summer and winter , 2004 .
[37] Robert G. Ellingson,et al. A Study of Diurnal Variation of OLR from the GOES Sounder , 2003 .
[38] T. Nitta,et al. Recent Warming of Tropical Sea Surface Temperature and Its Relationship to the Northern Hemisphere Circulation , 1989 .