Trends in downward surface shortwave radiation from multi‐source data over China during 1984–2015
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Wenmin Qin | Aiwen Lin | Lijie He | Zhigao Zhou | A. Lin | Lunche Wang | Wenmin Qin | Zhigao Zhou | Yang Zhong | Lijie He | Lunche Wang | Yang zhong
[1] Chunlüe Zhou,et al. Diurnal Cycle of Surface Air Temperature within China in Current Reanalyses: Evaluation and Diagnostics , 2018 .
[2] Philip J. Rasch,et al. Toward a Minimal Representation of Aerosols in Climate Models: Comparative Decomposition of Aerosol Direct, Semidirect, and Indirect Radiative Forcing , 2012 .
[3] Wenmin Qin,et al. First Effort at Constructing a High-Density Photosynthetically Active Radiation Dataset during 1961–2014 in China , 2019, Journal of Climate.
[4] W. Tian,et al. Factors affecting the surface radiation trends over China between 1960 and 2000 , 2011 .
[5] Wenmin Qin,et al. Comparison of deterministic and data-driven models for solar radiation estimation in China , 2018 .
[6] G. Stanhill,et al. Solar Radiation Changes in Japan during the 20th Century : Evidence from Sunshine Duration Measurements , 2008 .
[7] Jie He,et al. Solar radiation trend across China in recent decades: a revisit with quality-controlled data , 2010 .
[8] Xiangao Xia,et al. Analysis of downwelling surface solar radiation in China from National Centers for Environmental Prediction reanalysis, satellite estimates, and surface observations , 2006 .
[9] P. Stackhouse,et al. Clear-Sky Shortwave Downward Flux at the Earth's Surface: Ground-Based Data vs. Satellite-Based Data. , 2019, Journal of quantitative spectroscopy & radiative transfer.
[10] Y. Qian,et al. More frequent cloud‐free sky and less surface solar radiation in China from 1955 to 2000 , 2005 .
[11] B. Holben,et al. Large contribution of meteorological factors to inter-decadal changes in regional aerosol optical depth , 2019, Atmospheric Chemistry and Physics.
[12] P. Cox,et al. Impact of changes in diffuse radiation on the global land carbon sink , 2009, Nature.
[13] Ling Gao,et al. A Long-Term Historical Aerosol Optical Depth Data Record (1982–2011) Over China From AVHRR , 2019, IEEE Transactions on Geoscience and Remote Sensing.
[14] Martin Wild,et al. Homogenization and trend analysis of the 1958-2016 in-situ surface solar radiation records in China1 , 2018 .
[15] Xiaotong Zhang,et al. Analysis of surface incident shortwave radiation from four satellite products , 2015 .
[16] Spatial distribution of aerosol microphysical and optical properties and direct radiative effect from the China Aerosol Remote Sensing Network , 2019, Atmospheric Chemistry and Physics.
[17] R. Dickinson,et al. Atmospheric impacts on climatic variability of surface incident solar radiation , 2012 .
[18] Martin Wild,et al. Urban impacts on mean and trend of surface incident solar radiation , 2014 .
[19] Xiangao Xia,et al. Ground-based aerosol climatology of China: aerosol optical depths from the China Aerosol Remote Sensing Network (CARSNET) 2002–2013 , 2015 .
[20] Yang Wang,et al. Distinct impact of different types of aerosols on surface solar radiation in China , 2016 .
[21] Kaicun Wang,et al. Determining Factors of Monthly to Decadal Variability in Surface Solar Radiation in China: Evidences From Current Reanalyses , 2019, Journal of Geophysical Research: Atmospheres.
[22] Sergio M. Vicente-Serrano,et al. Trends in downward surface solar radiation from satellites and ground observations over Europe during 1983–2010 , 2017 .
[23] Zhenghui Xie,et al. Evaluation of satellite and reanalysis products of downward surface solar radiation over East Asia: Spatial and seasonal variations , 2013 .
[24] Martin Wild,et al. A Revisit of Global Dimming and Brightening Based on the Sunshine Duration , 2018 .
[25] A. P. Siebesma,et al. Impact of aerosols and clouds on decadal trends in all-sky solar radiation over the Netherlands (1966-2015) , 2017 .
[26] Jiankai Wang,et al. Decadal variability of surface incident solar radiation over China: Observations, satellite retrievals, and reanalyses , 2015 .
[27] Martin Wild,et al. Trends in aerosol radiative effects over China and Japan inferred from observed cloud cover, solar “dimming,” and solar “brightening” , 2009 .
[28] Martin Wild,et al. Measurement Methods Affect the Observed Global Dimming and Brightening , 2013 .
[29] Xiangao Xia,et al. Long-term trends in solar radiation and the associated climatic factors over China for 1961-2000 , 2005 .
[30] Lunche Wang,et al. Innovative trend analysis of solar radiation in China during 1962–2015 , 2018 .
[31] Bruce A. Wielicki,et al. Surface insolation trends from satellite and ground measurements: Comparisons and challenges , 2009 .
[32] Ming Zhang,et al. Performance of the NPP-VIIRS and aqua-MODIS Aerosol Optical Depth Products over the Yangtze River Basin , 2018, Remote. Sens..
[33] Kaicun Wang,et al. Measurement Biases Explain Discrepancies between the Observed and Simulated Decadal Variability of Surface Incident Solar Radiation , 2014, Scientific Reports.
[34] Biao Wang,et al. Long‐term trends of atmospheric absorbing and scattering optical depths over China region estimated from the routine observation data of surface solar irradiances , 2010 .
[35] Martin Wild,et al. Global dimming and brightening: A review , 2009 .
[36] Evaluation of downward surface solar radiation of three reanalysis products over China from 1979 to 2008 , 2015 .
[37] Qinxue Wang,et al. Sunshine dimming and brightening in Chinese cities (1955―2011) was driven by air pollution rather than clouds , 2013 .
[38] Xiaotong Zhang,et al. Evaluation of the Reanalysis Surface Incident Shortwave Radiation Products from NCEP, ECMWF, GSFC, and JMA Using Satellite and Surface Observations , 2016, Remote. Sens..
[39] Yonghui Yang,et al. China's dimming and brightening: evidence, causes and hydrological implications , 2014 .
[40] Xiangao Xia,et al. Ground-based remote sensing of aerosol climatology in China: Aerosol optical properties, direct radiative effect and its parameterization , 2016 .
[41] Kyu-Tae Lee,et al. Parameterizations for the Absorption of Solar Radiation by Water Vapor and Ozone , 1996 .
[42] Jing Li,et al. Increase of surface solar irradiance across East China related to changes in aerosol properties during the past decade , 2018 .
[43] L. Xia,et al. Improvement of aerosol optical depth retrieval using visibility data in China during the past 50 years , 2014 .
[44] Ying Liu,et al. Characteristic and Driving Factors of Aerosol Optical Depth over Mainland China during 1980-2017 , 2018, Remote. Sens..
[45] M. Wild,et al. Decadal variation of surface solar radiation in the Tibetan Plateau from observations, reanalysis and model simulations , 2012, Climate Dynamics.
[46] I. Vardavas,et al. Cloud effects on the solar and thermal radiation budgets of the Mediterranean basin , 2015 .
[47] Ozgur Kisi,et al. Evaporation modelling using different machine learning techniques , 2017 .
[48] Andrew G. Slater,et al. Surface Solar Radiation in North America: A Comparison of Observations, Reanalyses, Satellite, and Derived Products , 2016 .
[49] Quan Wang,et al. Aerosol optical depth retrieval from visibility in China during 1973–2014 , 2017 .
[50] Biao Wang,et al. Data Quality Assessment and the Long-Term Trend of Ground Solar Radiation in China , 2008 .
[51] Kaicun Wang,et al. Merging Satellite Retrievals and Reanalyses to Produce Global Long-Term and Consistent Surface Incident Solar Radiation Datasets , 2018, Remote. Sens..
[52] Jun Qin,et al. Can aerosol loading explain the solar dimming over the Tibetan Plateau? , 2012 .
[53] Martin Wild,et al. Causes of Dimming and Brightening in China Inferred from Homogenized Daily Clear-Sky and All-Sky in situ Surface Solar Radiation Records (1958–2016) , 2019, Journal of Climate.
[54] Ming Zhang,et al. Improving the Estimation of Daily Aerosol Optical Depth and Aerosol Radiative Effect Using an Optimized Artificial Neural Network , 2018, Remote. Sens..
[55] Morten W Fagerland,et al. The Wilcoxon–Mann–Whitney test under scrutiny , 2009, Statistics in medicine.
[56] Congbin Fu,et al. Assessment of GEWEX/SRB version 3.0 monthly global radiation dataset over China , 2011 .
[57] J. Haywood,et al. Modelled and observed changes in aerosols and surface solar radiation over Europe between 1960 and 2009 , 2015 .
[58] Martin Wild,et al. A new look at solar dimming and brightening in China , 2016 .
[59] E. Dutton,et al. Do Satellites Detect Trends in Surface Solar Radiation? , 2004, Science.
[60] Zhanqing Li,et al. Estimation of aerosol effects on surface irradiance based on measurements and radiative transfer model simulations in northern China , 2007 .
[61] O. Kisi,et al. Solar radiation prediction using different techniques: model evaluation and comparison , 2016 .
[62] Martin Wild,et al. Enlightening Global Dimming and Brightening , 2012 .
[63] Xiangao Xia,et al. A critical assessment of direct radiative effects of different aerosol types on surface global radiation and its components , 2014 .
[64] Xiangao Xia,et al. A closer looking at dimming and brightening in China during 1961-2005 , 2010 .
[65] N. Loeb,et al. Surface Irradiances Consistent With CERES-Derived Top-of-Atmosphere Shortwave and Longwave Irradiances , 2013 .
[66] J. Hansen,et al. A parameterization for the absorption of solar radiation in the earth's atmosphere , 1974 .
[67] C. Long,et al. From Dimming to Brightening: Decadal Changes in Solar Radiation at Earth's Surface , 2005, Science.
[68] R. Pinker,et al. Modeling Surface Solar Irradiance for Satellite Applications on a Global Scale , 1992 .
[69] J. Qin,et al. A revisit to decadal change of aerosol optical depth and its impact on global radiation over China , 2017 .
[70] Kaicun Wang,et al. Does the modern‐era retrospective analysis for research and applications‐2 aerosol reanalysis introduce an improvement in the simulation of surface solar radiation over China? , 2018, International Journal of Climatology.
[71] Zhanqing Li,et al. Distinct weekly cycles of thunderstorms and a potential connection with aerosol type in China , 2016 .
[72] Kun Yang,et al. Improving estimation of hourly, daily, and monthly solar radiation by importing global data sets , 2006 .
[73] H. Cai,et al. Evaluation of SVM, ELM and four tree-based ensemble models for predicting daily reference evapotranspiration using limited meteorological data in different climates of China , 2018, Agricultural and Forest Meteorology.