Anthropogenically-driven increases in the risks of summertime compound hot extremes J Wang, Y Chen, SFB Tett, Z Yan, P Zhai, J Feng, J Xia Nature communications 11 (1), 528, 2020 | 243 | 2020 |
Assessment of the economic impacts of heat waves: a case study of Nanjing, China Y Xia, Y Li, D Guan, DM Tinoco, J Xia, Z Yan, J Yang, Q Liu, H Huo Journal of Cleaner Production 171, 811-819, 2018 | 154 | 2018 |
Review of recent studies of the climatic effects of urbanization in China ZW Yan, J Wang, JJ Xia, JM Feng Advances in Climate Change Research 7 (3), 154-168, 2016 | 134 | 2016 |
Observational and modeling study of interactions between urban heat island and heatwave in Beijing X He, J Wang, J Feng, Z Yan, S Miao, Y Zhang, J Xia Journal of Cleaner Production 247, 119169, 2020 | 109 | 2020 |
The super-heat wave in eastern China during July-August 2013: a perspective of climate change. J Xia, K Tu, Z Yan, Y Qi International Journal of Climatology 36 (3), 2016 | 82 | 2016 |
Changes in seasonal cycle and extremes in China during the period 1960–2008 Z Yan, J Xia, C Qian, W Zhou Advances in Atmospheric Sciences 28, 269-283, 2011 | 79 | 2011 |
Convolutional neural network-based statistical post-processing of ensemble precipitation forecasts W Li, B Pan, J Xia, Q Duan Journal of hydrology 605, 127301, 2022 | 66 | 2022 |
A model output machine learning method for grid temperature forecasts in the Beijing area H Li, C Yu, J Xia, Y Wang, J Zhu, P Zhang Advances in Atmospheric Sciences 36, 1156-1170, 2019 | 53 | 2019 |
On “observation minus reanalysis” method: A view from multidecadal variability J Wang, Z Yan, PD Jones, J Xia Journal of Geophysical Research: Atmospheres 118 (14), 7450-7458, 2013 | 43 | 2013 |
Attribution of extreme precipitation in the lower reaches of the Yangtze River during May 2016 C Li, Q Tian, R Yu, B Zhou, J Xia, C Burke, B Dong, SFB Tett, N Freychet, ... Environmental Research Letters 13 (1), 014015, 2018 | 41 | 2018 |
Loss of work productivity in a warming world: Differences between developed and developing countries S Yu, J Xia, Z Yan, A Zhang, Y Xia, D Guan, J Han, J Wang, L Chen, Y Liu Journal of Cleaner Production 208, 1219-1225, 2019 | 38 | 2019 |
Machine learning-based weather support for the 2022 Winter Olympics J Xia, H Li, Y Kang, C Yu, L Ji, L Wu, X Lou, G Zhu, Z Wang, Z Yan, ... Advances in Atmospheric Sciences 37, 927-932, 2020 | 37 | 2020 |
Homogenization of climate series: The basis for assessing climate changes ZW Yan, Z Li, JJ Xia Science China Earth Sciences 57, 2891-2900, 2014 | 37 | 2014 |
Multidecadal variability in local growing season during 1901–2009 J Xia, Z Yan, P Wu Climate dynamics 41, 295-305, 2013 | 35 | 2013 |
Anthropogenically-driven increases in the risks of summertime compound hot extremes. Nat. Commun., 11, 528 J Wang, Y Chen, SFB Tett, Z Yan, P Zhai, J Feng, J Xia | 27 | 2020 |
Reconstruction of the radar reflectivity of convective storms based on deep learning and Himawari-8 observations M Duan, J Xia, Z Yan, L Han, L Zhang, H Xia, S Yu Remote Sensing 13 (16), 3330, 2021 | 25 | 2021 |
Regional water budgets and hydroclimatic trend variations in Xinjiang from 1951 to 2000 Z Zheng, Z Ma, M Li, J Xia Climatic Change 144, 447-460, 2017 | 23 | 2017 |
Projections of the advance in the start of the growing season during the 21st century based on CMIP5 simulations J Xia, Z Yan, G Jia, H Zeng, PD Jones, W Zhou, A Zhang Advances in Atmospheric Sciences 32, 831-838, 2015 | 22 | 2015 |
Decisive atmospheric circulation indices for July–August precipitation in North China based on tree models X Tong, Z Yan, J Xia, X Lou Journal of Hydrometeorology 20 (8), 1707-1720, 2019 | 21 | 2019 |
ENSO elicits opposing responses of semi-arid vegetation between Hemispheres A Zhang, G Jia, HE Epstein, J Xia Scientific Reports 7 (1), 42281, 2017 | 19 | 2017 |