发表文章 | Chen Jun, Liang peide, Lu Yingxiang and Teng Wu. Hydraulic characteristics and energy dissipation of a new baffle-drop shaft with two wet sides[J]. Canadian Journal of Civil Engineering. 2025. DOI:10.1139/cjce-2024-0368.(SCI) Chen Jun, Huang Yanhua, Wu Teng and Yan Jing. A WaveNet-based convolutional neural network for river water level prediction[J]. Journal of Hydroinformatics. 2023. Doi: 10.2166/hydro.2023.174(SCI) Liang peide, Chen Jun, Wu Teng and Yan Jing. Hydraulic characteristics of a large rotation-angle baffle-drop shaft through synergetic discharge from dry and wet sides[J]. Water Science and Engineering.2025,18(1):115-124.(EI) Chen Jun, Tang hong-wu, Xiao yang, Ji min. Hydrodynamic Characteristics and Sediment Transport of A Tidal River Under Influence of Wading Engineering Groups. China Ocean Engineering, 2013,27 (6):829-842.(SCI) Chen Jun, Tang hong-wu, Li zui-sen, Dai wen-hong. Multi-approach analysis of maximum riverbed scour depth above subway tunnel[J]. Water Science and Engineering. 2010.3(4):431-442.(EI) 陈珺,梁培德,曾睿,陆迎香.折板倾角对深隧入流对称型折板式竖井水力特性影响研究[J].中国农村水利水电, 2025. 陈珺,黄燕华,洪朋,梁培徳,祁李.基于机器学习模型的河道水位预测[J].水利水电科技进展[J], 2023, 43(3): 9-14. 陈珺,陆迎香,唐洪武,闫静.新型对称折板式竖井水力特性[J].水动力学研究与进展A辑,2022,37(01):73-83. 陈珺,于明田,邓丽华,陆迎香.黄河夺淮对淮河中下游影响及防洪治理措施综述[J].人民长江,2021,52(11):9-15. 陈珺,于明田,邓丽华,陆迎香. 感潮河道桥梁和码头工程群对行洪累积影响[J].水利水电科技进展. 2021(02). 陈珺,邓丽华,于明田,施凌. 甬江感潮河流上下游码头群对河道行洪的联合影响[J].水利水电科技进展. 2020(02). 陈珺,李斌,邓丽华,于明田,晏成明.入湖河流尾闾河段河型问题研究进展[J].水利水电科技进展. 2019(02). 王煜祺,陈珺,吴峥,李晓坤.甬江及河口附近海域枯季水沙特性分析[J]. 水利水运工程学报. 2017(05). 李晓坤,陈珺,黄华,李勇涛. 基于元胞自动机模型的内陆河三角洲堆积体演化过程[J].河海大学学报(自然科学版). 2017(04). 陈珺,嵇敏,林江,陈界仁.赣江尾闾河段水沙特性及河床演变[J].水利水电科技进展.2012(3):1-5. 陈珺,嵇敏,张洪记,严文武,唐洪武.甬江洪枯季水沙特性分析[J].水利水运工程学报.2012,10:48-54.
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