代表性论文
SCI检索%%
[1] Shuiqing Liu, Zuhao Zhou*, Jiajia Liu, Jia Li, Yangwen Jia, Hao Wang, Chongyu Xu. Impact of climate change on water quality evolution in cold regions using a water–heat–nitrogen processes coupled model[J]. Environmental Science and Pollution Research, 2024(31): 22395–22409. %%
[2] Ziqi Yan, Zuhao Zhou, Jiajia Liu, Tianfu Wen, Xuefeng Sang, Fanping Zhang. Multiobjective Optimal Operation of Reservoirs Based on Water Supply, Power Generation, and River Ecosystem with a New Water Resource Allocation Model [J]. Journal of Water Resources Planning and Management, 2020, 146(12): 05020024, 1-11. %%
[3] Li, X., Zhou, Z.*, Liu, J., Xu, C., Xia, J.,Wang, P., Wang, H., & Jia, Y. (Xia Li, Zuhao Zhou*, Jiajia Liu, Chong-Yu Xu, Junqiang Xia, Pengxiang Wang, Hao Wang, & Yangwen Jia). Analysis and partitioning of terrestrial water storage in the Yellow River source region[J].Hydrological Processes, 2024, 38(2), e15097.(获得2024年第一季度“Wiley威立中国开放科学高贡献作者”奖)%%
[4] Jinli Zheng, Zuhao Zhou*, Jiajia Liu, Ziqi Yan, Chong-Yu Xu, Yunzhong Jiang, Yangwen Jia, Hao Wang. A novel framework for investigating the mechanisms of climate change and anthropogenic activities on the evolution of hydrological drought[J]. Science of The Total Environment, 2023, 900(11): 165685. Volume 900, 20 November 2023, 165685. %%
[5] Wang, P., Zhou, Z.*, Liu, J., Xu, C., Wang, K., Liu, Y., Li, J., Li, Y., Jia, Y., and Wang, H. (Pengxiang Wang, Zuhao Zhou*, Jiajia Liu, Chong-Yu Xu, Kang Wang, Yangli Liu, Jia Li, Yuqing Li, Yangwen Jia, and Hao Wang). Application of an improved distributed hydrological model based on the soil–gravel structure in the Niyang River basin, Qinghai–Tibet Plateau[J]. Hydrology and Earth System Science, 2023, 27(14): 2681–2701. %%
[6] Shuiqing Liu, Zuhao Zhou*, Jiajia Liu, Kang Wang, Jia Li, Pengxiang Wang, Xinmin Xie, Yangwen Jia, Hao Wang. Simulation of water and nitrogen movement mechanism in cold regions during freezethaw period based on a distributed non-point source pollution model closely coupled water, heat, and nitrogen processes at the watershed scale[J]. Environmental Science and Pollution Research, 2023, 30: 5931–5954. %%
[7] Zuhao Zhou, Ning Han, Jiajia Liu, Ziqi Yan, Chongyu Xu, Jingya Cai, Yizi Shang, Jiasong Zhu. Glacier variations and their response to climate change in an arid inland river basin of Northwest China[J]. Journal of Arid Land, 2020, 12(3):357–373. %%
[8] Yan Z, Zhou Z, Liu J, Zhenyu Han, Ge Gao, Xintong Jiang. Ensemble projection of runoff in a large‐scale basin: modeling with a global BMA approach[J]. Water Resources Research, 2020. %%
[9] Jiajia Liu, Zuhao Zhou*, Ziqi Yan, Jiaguo Gong, Yangwen Jia, Chong-Yu Xu, Hao Wang. A new approach to separating the impacts of climate change and multiple human activities on water cycle processes based on a distributed hydrological model[J]. Journal of Hydrology, 2019, 578(11):1-13. %%
[10] Jingya Cai, Zuhao Zhou*, Jiajia Liu, Hao Wang, Yangwen Jia, Chong-Yu Xu. A three-process-based distributed soil erosion model at catchment scale on the Loess Plateau of China[J]. Journal of Hydrology, 2019, 577(10):1-12. %%
[11] Jia Li, Zuhao Zhou*, Hao Wang, Jiajia Liu, Yangwen Jia, Peng Hu. Development of WEP-COR model to simulate land surface water and energy budgets in a cold region[J]. Hydrology Research, 2019,50(1): 99-116. %%
[12] Zuhao Zhou, Yangwen Jia, Yaqin Qiu, Jiajia Liu, Hao Wang, Chong-Yu Xu, Jia Li, Lin Liu. Simulation of dualistic hydrological processes affected by intensive human activities based on distributed hydrological model [J]. Journal of Water Resources Planning and Management, 2018, 144(12):1-16. %%
[13] Ziqi Yan, Zuhao Zhou, Xuefeng Sang, Hao Wang. Water replenishment for ecological flow with an improved water resources allocation model [J]. Science of the Total Environment, 2018, 643: 1152-1165. %%
[14] XiaoLei Cao, ZuHao Zhou*, XiangDong Chen, WeiWei Shao, ZiRu Wang. Improving leaf area index simulation of IBIS model and its effect on water carbon and energy—A case study in Changbai Mountain broadleaved forest of China[J], Ecological Modelling, 2015, 303: 97-104. %%
[15] Jiajia Liu, Zuhao Zhou*, Yangwen Jia, Hao Wang and Xiangdong Chen. A stem-branch topological codification for watershed subdivision and identification to support distributed hydrological modelling at large river basins. Hydrological Processes, 2014, 28(4): 2074-2081. %%
[16] Xuefeng Sang, Zuhao Zhou, Hao Wang, Dayong Qin, Zhengli Zhai, Qiang Chen. Development of Soil and Water Assessment Tool Model on Human Water Use and Application in the Area of High Human Activities, Tianjin, China[J]. Journal of Irrigation and Drainage Engineering, 2010, 136(1): 23-30. %%
EI检索%%
[17] 韦瑞深,严子奇,周祖昊,蒋云钟.基于宽浅式破坏原则的旱限水位优化技术[J].水资源保护,2023,39(4):152-166. %%
[18] 严子奇,周祖昊,严登华,韦瑞深.江河断面分级分期旱限水位(流量)确定方法研究[J].水科学进展,2023,34(1):53-62. %%
[19] 严子奇,周祖昊,韦瑞深,严登华,王坤.基于双层滑动的水库旱限水位确定算法[J].水科学进展,2022,33(6):914-923. %%
[20] 周祖昊,刘佳嘉,严子奇,王浩,贾仰文.黄河流域天然河川径流量演变归因分析[J]. 水科学进展. 2022,33(1):27-37. (被评为2022年F5000论文(领跑者5000——中国精品科技期刊顶尖学术论文)、“中国知网学术精要(2023年5-6月)高PCSI论文、高被引论文、高下载论文”)%%
[21] 周祖昊,刘扬李,李玉庆,王鹏翔*,王康,李佳,朱熠明,刘佳嘉,王富强. 基于水热耦合的青藏高原分布式水文模型——I.“积雪-土壤-砂砾石层”连续体水热耦合模拟[J]. 水科学进展. 2021,32(1):20-32. %%
[22] 刘扬李,周祖昊*,刘佳嘉,王鹏翔,李玉庆,朱熠明,姜欣彤,王康,王富强. 基于水热耦合的青藏高原分布式水文模型——II.考虑冰川和冻土的尼洋河流域水循环过程模拟[J]. 水科学进展. 2021,32(2):201-210. %%
[23] 刘佳嘉,周祖昊,贾仰文,王浩.水循环演变中多因素综合影响贡献量分解方法[J].水利学报, 2014,45(6): 658-665. %%
[24] 贺华翔, 周祖昊, 牛存稳, 王浩. 基于二元水循环的流域分布式水质模型构建与应用[J]. 水利学报. 2013, 44(3): 284-294. %%
[25] 胡鹏,周祖昊,贾仰文,周娜.基于分布式水文模型的水功能区设计流量研究.水利学报,2013,44(1):42-49. %%
[26] Xifeng Wang, Zuhao Zhou, Guiyu Yang, Yangwen Jia. Development of social-natural dualistic water cycle model and dynamic assessment of water resources in Hun River Basin in China[J].HKIE Transaction, 2012,19(2):31~37. %%
[27] Ge Huaifeng, Zhou Zuhao,Qin Dayong,Yin Jiguo,Chen Qiang. Analysis of Critical Source Areas about Multi-source Nutrient Loadings Based on SWAT Model in Jiyun River Basin[J]. HKIE Transactions, 2010, 17(2): 14~19. %%
[28] 桑学锋,秦大庸, 周祖昊,葛怀凤.基于广义ET的区域水资源水环境综合规划研究(Ⅲ)-应用实例[J].水利学报,2009,40(12): 1409~1415. (2009年度《水利学报》优秀论文) %%
[29] 桑学锋,周祖昊,秦大庸,陈强.基于广义ET的区域水资源水环境综合规划研究(Ⅱ)-模型[J].水利学报,2009,40(10): 1053~1061. (2009年度《水利学报》优秀论文) %%
[30] 周祖昊,王浩,秦大庸,桑学锋.基于ET的水资源与水环境综合规划研究(I)-理论[J].水利学报, 2009,40(9): 1025~1032. (2009年度《水利学报》优秀论文) %%
[31] 桑学锋,周祖昊,秦大庸,魏怀斌.改进的SWAT模型在强人类活动地区的应用[J].水利学报,2008,39(12):1377~1383, 1389.