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1 Bian, G.D.; Du, Jinkang; Song, Mingming; Zhang, Xueliang; Zhang, Xingqi; Li, Runjie; Wu, Sengyao; Duan, Zheng; Xu, Chong-Yu.
Detection and attribution of flood responses to precipitation change and urbanization: a case study in Qinhuai River Basin, Southeast China. Hydrology Research 2020 ;Volum 51.(2) s. 351-365
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2 Chen, Guiya; Zhao, Xiaofeng; Zhou, Yanlai; Guo, Shenglian; Xu, Chong-Yu; Chang, Fi-John.
Emergency Disposal Solution for Control of a Giant Landslide and Dammed Lake in Yangtze River, China. Water 2019 ;Volum 11.(9) s. -
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3 Chen, Shilei; Xiong, Lihua; Ma, Qiumei; Kim, Jong-Suk; Chen, Jie; Xu, Chong-Yu.
Improving daily spatial precipitation estimates by merging gauge observation with multiple satellite-based precipitation products based on the geographically weighted ridge regression method. Journal of Hydrology 2020 ;Volum 589.
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4 Chen, Xiaohong; Ye, Changqing; Zhang, Jiaming; Xu, Chong-Yu; Zhang, Lijuan; Tang, Yihan.
Selection of an optimal distribution curve for non-stationary flood series. Atmosphere 2019 ;Volum 10.(1) s. -
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5 Chen, Ying; Xu, Chong-Yu; Chen, Xingwei; Xu, Youpeng; Yin, Yixing; Gao, Lu; Liu, Meibing.
Uncertainty in simulation of land-use change impacts on catchment runoff with multi-timescales based on the comparison of the HSPF and SWAT models. Journal of Hydrology 2019 ;Volum 573. s. 486-500
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6 Guo, Shuhui; Xiong, Lihua; Chen, Jie; Guo, Shenglian; Xia, Jun; Zeng, Ling; Xu, Chong-Yu.
Nonstationary regional flood frequency analysis based on the Bayesian method. Water resources management 2022 ;Volum 37. s. 659-681
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7 Hu, Chen; Xia, Jun; She, Dunxian; Xu, Chong-Yu; Zhang, Liping; Song, Zhihong; Zhao, Lin.
A modified regional L-moment method for regional extreme precipitation frequency analysis in the Songliao River Basin of China. Atmospheric research 2019 ;Volum 230. s. -
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8 Huang, Qingzhong; Zhang, Qiang; Xu, Chong-Yu; Li, Qin; Sun, Peng.
Terrestrialwater storage in China: Spatiotemporal pattern and driving factors. Sustainability 2019 ;Volum 11.(23) s. -
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9 Huo, Ran; Chen, Hua; Li, Lu; Xu, Chong-Yu; Li, Jingjing; Hong, Si; Zhan, Chesheng; Xia, Jun.
Flood variability in the upper Yangtze River over the last millennium—Insights from a comparison of climate-hydrological model simulated and reconstruction. Science China. Earth Sciences 2023 ;Volum 66.(3) s. 547-567
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10 Huo, Ran; Li, Lu; Chen, Hua; Xu, Chong-Yu; Chen, Jie; Guo, Shenglian.
Extreme Precipitation Changes in Europe from the Last Millennium to the End of the Twenty-First Century. Journal of Climate 2020 ;Volum 34. s. 567-588
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11 Huo, Ran; Li, Lu; Engeland, Kolbjørn; Xu, Chong-Yu; Chen, Hua; Paasche, Øyvind; Guo, Shenglian.
Changing flood dynamics in Norway since the last millennium and to the end of the 21st century. Journal of Hydrology 2022 ;Volum 613.
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12 Jiang, C.; Xiong, L.H.; Yan, L.; Dong, J.F.; Xu, Chong-Yu.
Multivariate hydrologic design methods under nonstationary conditions and application to engineering practice. Hydrology and Earth System Sciences (HESS) 2019 ;Volum 23.(3) s. 1683-1704
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13 Jiang, Cong; Xiong, Lihua; Xu, Chong-Yu; Yan, Lei.
A river network-based hierarchical model for deriving flood frequency distributions and its application to the Upper Yangtze basin.. Water Resources Research 2021 ;Volum 57.(8) s. -
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14 Jiang, Shanhu; Wang, Menghao; Ren, Liliang; Xu, Chong-Yu; Yuan, Fei; Liu, Yi; Lu, Yujie; Shen, Hongren.
A framework for quantifying the impacts of climate change and human activities on hydrological drought in a semiarid basin of Northern China. Hydrological Processes 2019 ;Volum 33.(7) s. 1075-1088
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15 Lan, Tian; Lin, Kairong; Xu, Chong-Yu; Liu, Zhiyong; Cai, Huayang.
A framework for seasonal variations of hydrological model parameters: impact on model results and response to dynamic catchment characteristics. Hydrology and Earth System Sciences (HESS) 2020 ;Volum 24. s. 5859-5874
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16 Lan, Tian; Lin, Kairong; Xu, Chong-Yu; Tan, Xuezhi; Chen, Xiaohong.
Dynamics of hydrological-model parameters: mechanisms, problems and solutions. Hydrology and Earth System Sciences (HESS) 2020 ;Volum 24. s. 1347-1366
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17 Lan, Tian; Zhang, Hongbo; Xu, Chong-Yu; Singh, Vijay P.; Lin, Kairong.
Detection and attribution of abrupt shift in minor periods in human-impacted streamflow. Journal of Hydrology 2020 ;Volum 584. s. -
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18 Li, Hong; Xu, Chong-Yu; Sæthun, Nils Roar; Braskerud, Bent Christen; Volden, Erland Per.
Identification of floodways by four approaches. EGU; 2019-04-07 - 2019-07-12
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19 Li, Jingjing; Chen, Hua; Xu, Chong-Yu; Li, Lu; Zhao, haoyuan; Huo, Ran; Chen, Jie.
Correction: Li et al. Joint Effects of the DEM Resolution and the Computational Cell Size on the Routing Methods in Hydrological Modelling. Water 2022, 14, 797. Water 2022 ;Volum 14.(11)
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20 Li, Jingjing; Chen, Hua; Xu, Chong-Yu; Li, Lu; Zhao, haoyuan; Huo, Ran; Chen, Jie.
Joint Effects of the DEM Resolution and the Computational Cell Size on the Routing Methods in Hydrological Modelling. Water 2022 ;Volum 14.(5) s. -
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21 Li, Runjie; Du, Jinkang; Bian, Guodong; Wang, Yuefeng; Chen, Changchun; Zhang, Xueliang; Li, Maohua; Wang, Shanshan; Xie, Shunping; Wu, Senyao; Yang, Long; Xu, Chong-Yu.
An Integrated Modelling Approach for Flood Simulation in the Urbanized Qinhuai River Basin, China. Water resources management 2020 ;Volum 34. s. 3967-3984
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22 Li, Wei; Chen, Jie; Li, Lu; Chen, Hua; Liu, Bingyi; Xu, Chong-Yu; Li, Xiangquan.
Evaluation and bias correction of S2S precipitation for hydrological extremes. Journal of Hydrometeorology 2019 ;Volum 20.(9) s. 1887-1906
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23 Li, Xiang-Quan; Chen, Jie; Xu, Chong-Yu; Li, Lu; Chen, Hua.
Performance of post-processed methods in hydrological predictions evaluated by deterministic and probabilistic criteria. Water resources management 2019 ;Volum 33.(9) s. 3289-3302
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24 Li, Zhenya; Yang, Tao; Xu, Chong-Yu; Shi, Pengfei; Yong, Bin; Huang, Ching-Sheng; Wang, Chao.
Evaluating the area and position accuracy of surface water paths obtained by flow direction algorithms. Journal of Hydrology 2020 ;Volum 583.
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25 Lin, Kairong; Chen, Haiyan; Xu, Chong-Yu; Yan, Ping; Lan, Tian; Liu, Zhiyong; Dong, Chunyu.
Assessment of flash flood risk based on improved analytic hierarchy process method and integrated maximum likelihood clustering algorithm. Journal of Hydrology 2020 ;Volum 584. s. -
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26 Lin, Kangling; Sheng, Sheng; Zhou, Yanlai; Liu, Feng; Li, Zhiyu; Chen, Hua; Xu, Chong-Yu; Chen, Jie; Guo, Shenglian.
The exploration of a Temporal Convolutional Network combined with Encoder-Decoder framework for runoff forecasting. Hydrology Research 2020 ;Volum 51.(5) s. 1136-1149
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27 Liu, Jiajia; Zhou, Zuhao; Yan, Ziqi; Gong, Jiaguo; Jia, Yangwen; Xu, Chong-Yu; Wang, Hao.
A new approach to separating the impacts of climate change and multiple human activities on water cycle processes based on a distributed hydrological model. Journal of Hydrology 2019 ;Volum 578. s. -
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28 Ma, Qiumei; Xiong, Lihua; Xia, Jun; Xiong, Bin; Yang, Han; Xu, Chong-Yu.
A censored shifted mixture distribution mapping method to correct the bias of daily IMERG satellite precipitation estimates. Remote Sensing 2019 ;Volum 11.(11) s. -
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29 Ma, Qiumei; Xiong, Lihua; Xu, Chong-Yu; Li, Rongrong; Ji, Changming; Zhang, Yanke.
Flood Wave Superposition Analysis Using Quantitative Matching Patterns of Peak Magnitude and Timing in Response to Climate Change. Water resources management 2021 ;Volum 35. s. 2409-2432
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30 Ngongondo, Cosmo; Zhou, Yanlai; Xu, Chong-Yu.
Multivariate framework for the assessment of key forcing to Lake Malawi levels variations in non-stationary frequency analysis. Environmental Monitoring & Assessment 2020 ;Volum 192. s. -
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31 Qi, Wen-Yan; Chen, Jie; Li, Lu; Xu, Chong-Yu; Li, Jingjing; Xiang, Yiheng; Zhang, Shaobo.
Regionalization of catchment hydrological model parameters for global water resources simulations. Hydrology Research 2022 ;Volum 53.(3) s. 441-466
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32 Qi, Wenyan; Chen, Jie; Li, Lu; Xu, Chong-Yu; Xiang, Yi-Heng; Zhang, Shao-Bo; Wang, Huimin.
Impact of the number of donor catchments and the efficiency threshold on regionalization performance of hydrological models. Journal of Hydrology 2021 ;Volum 601. s. -
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33 Qi, Wenyan; Chen, Jie; Li, Lu; Xu, Chong-Yu; Xiang, Yiheng; Zhang, Shaobo; Wang, Huimin.
Impact of the number of donor catchments and the efficiency threshold on regionalization performance of hydrological models. EGU General Assembly 2021; 2021-04-19 - 2021-04-30
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34 Qi, Wenyan; Chen, Jie; Xu, Chong-Yu; Wan, Yongjing.
Finding the Optimal Multimodel Averaging Method for Global Hydrological Simulations. Remote Sensing 2021 ;Volum 13.(13) s. -
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35 Reynolds, J.E.; Halldin, S.; Seibert, J.; Xu, Chong-Yu; Grabs, T..
Robustness of flood-model calibration using single and multiple events. Hydrological Sciences Journal 2019 (Special issue) s. -
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36 Reynolds, J.E.; Halldin, Sven; Seibert, Jan; Xu, Chong-Yu; Grabs, Thomas.
Flood prediction using parameters calibrated on limited discharge data and uncertain rainfall scenarios. Hydrological Sciences Journal 2020 ;Volum 65.(9) s. 1512-1524
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37 Sheng, Sheng; Chen, Hua; Lin, Kangling; Zhou, Yanlai; Wang, Jinxing; Chen, Jie; Xiong, Lihua; Guo, Shenglian; Xu, Chong-Yu.
Enhancing runoff simulation precision in the critical zone through spatiotemporal interpolation of areal rainfall with matrix decomposition. Hydrological Processes 2023 ;Volum 37.(11) s. -
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38 Shi, Xinyan; Chen, Jie; Gu, Lei; Xu, Chong-Yu; Chen, Hua; Zhang, Liping.
Impacts and socioeconomic exposures of global extreme precipitation events in 1.5 and 2.0 °C warmer climates. Science of the Total Environment 2021 ;Volum 766. s. -
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39 Song, Jinbo; Zhang, Qiang; Wu, Wenhuan; Singh, VP; Shen, Zexi; Wang, Gang; Xu, Chong-Yu.
Amplifying Flood Risk Across the Lower Yellow River Basin, China, Under Shared Socioeconomic Pathways. Frontiers in Earth Science 2022 ;Volum 10. s. -
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40 Wan, Yongjing; Chen, Jie; Xie, Ping; Xu, Chong-Yu; Li, Daiyuan.
Evaluation of climate model simulations in representing the precipitation non-stationarity by considering observational uncertainties. EGU General Assembly 2021; 2021-04-19 - 2021-04-30
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41 Wang, Hui-Min; Chen, Jie; Xu, Chong-Yu; Chen, Hua; Guo, Shenglian; Xie, Ping; Li, Xiangquan.
Does the weighting of climate simulations result in a better quantification of hydrological impacts?. Hydrology and Earth System Sciences (HESS) 2019 ;Volum 23.(10) s. 4033-4050
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42 Wang, Huimin; Chen, Jie; Xu, Chong-Yu; Zhang, J.K.; Chen, Hua.
A framework to quantify the uncertainty contribution of GCMs over multiple sources in hydrological impacts of climate change. Earth's Future 2020 ;Volum 8. s. -
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43 Wang, Jialing; Chen, Hua; Xu, Chong-Yu; Zeng, Qiang; Wang, Qingjing; Kim, Jong-Suk; Chen, Jie; Guo, Shenglian.
Tracking the error sources of spatiotemporal differences in TRMM accuracy using error decomposition method. Hydrology Research 2018 ;Volum 49.(6) s. 1960-1976
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44 Wang, Weiguang; Chen, Lu; Xu, Chong-Yu.
Editorial: Hydrological Modeling in Water Cycle Processes. Water 2021 ;Volum 13.(14) s. -
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45 Xiong, Bin; Xiong, Lihua; Guo, SL; Xu, Chong-Yu; Xia, Jun; Zhong, Yixuan; Yang, Han.
Nonstationary Frequency Analysis of Censored Data: A Case Study of the Floods in the Yangtze River From 1470 to 2017. Water Resources Research 2020 ;Volum 56.(8)
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46 Xiong, Bin; Xiong, Lihua; Xia, Jun; Xu, Chong-Yu; Jiang, Cong; Du, Tao.
Assessing the impacts of reservoirs on downstream flood frequency by coupling the effect of scheduling-related multivariate rainfall with an indicator of reservoir effects. Hydrology and Earth System Sciences (HESS) 2019 ;Volum 23.(11) s. 4453-4470
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47 Xiong, Feng; Guo, Shenglian; Liu, Pan; Xu, Chong-Yu; Zhong, Yixuan; Yin, Jiabo; He, Shaokun.
A general framework of design flood estimation for cascade reservoirs in operation period. Journal of Hydrology 2019 ;Volum 577. s. -
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48 Xu, Chong-Yu.
Issues influencing accuracy of hydrological modeling in a changing environment. Water Science and Engineering 2021 ;Volum 14.(2) s. 167-170
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49 Xue, Yang; Magnusson, Jan; Xu, Chong-Yu.
Transferability of regionalization methods under changing climate. Journal of Hydrology 2019 ;Volum 568. s. 67-81
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50 Yan, Lei; Xiong, Lihua; Jiang, Cong; Zhang, Mengjie; Wang, Dong; Xu, Chong-Yu.
Updating intensity–duration–frequency curves for urban infrastructure design under a changing environment. WIREs Water 2021 ;Volum 8.(3) s. -
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