代表性科研论文 著作及规程: [1]韩延成(著)《长距离调水工程渠道输水控制及数学模型》,位次1/1,书号:987-7-5084-8014-5) [2]韩延成、罗辉、周黎明、陆经纬. 规范:《山东省南水北调工程调度运行规程》(SDNSBD-2014-01),第1位 [3]副主编《引黄济青及其对我国跨流域调水的启示》,第4位
代表性论文: [1] Liang Mengyuan , Han Yan-Cheng* , Easa S M , et al. New solution to build constructed wetland in cold climatic region[J]. Science of The Total Environment,2020,Vol.719: 137124,SCI检索(IF10.754) [2] Yan-Cheng Han*, Said M. Easa. Exact Solution of Optimum Hydraulic Power-Law Section with General Exponent Parameter[J], Journal of Irrigation and Drainage Engineering(ASCE),2018, 144(12), SCI检索 [3] Yan-Cheng Han*, Said M. Easa. Xue-Ping Gao. General Explicit Solutions of Most Economic Sections and Applications for Trapezoidal and Parabolic Channels[J]. Journal of Hydrodynamics, 2019, 31(5): 1034-1042, SCI 检索 [4] Yan-Cheng Han*,Zheng-He Xu,Said M. Easa,Optimal Hydraulic Section of Ice-Covered Open Trapezoidal Channel[J], Journal of Cold Regions Engineering (ASCE), 2017, 2017,31(3),SCI检索 [5] Han Yan-Cheng*,Gao Xue-Ping,Xu Zheng-He,The Best Hydraulic Section of Horizontal-Bottomed Parabolic Channel Section[J], Journal of Hydrodynamics,2017,29(2):305-313,SCI检索 [6] Yan-Cheng Han*, Said M. Easa. Closure to “Exact Solution of Optimum Hydraulic Power-Law Section with General Exponent Parameter” by Yan-Cheng Han and Said M. Easa[J], Journal of Irrigation and Drainage Engineering, 2019, 145(11): 07019011, SCI检索 [7] Yan-Cheng Han*,Said M. Easa,New and improved three and one-third parabolic channel and most efficient hydraulic section[J], Canadian Journal of Civil Engineering , 2017,44(5):387-391, SCI检索 [8] Yan-Cheng Han*,Said M. Easa,Superior cubic channel section and analytical solution of best hydraulic properties[J], Flow Measurement and Instrumentation, 2016,50:169-177. SCI检索 [9] Yan-Cheng Han*. Horizontal bottomed semi-cubic parabolic channel and best hydraulic section[J]. Flow Measurement and Instrumentation 2015,vol.45 (2015) 56–61 , SCI检索 [10] Han Yancheng et al. Zinc complexes supported by N,O-bidentate amino-alkoxyl ligands: Synthesis, characterization and catalytic property for the ring-opening polymerization of l-lactide. Polyhedron[J], Polyhedron,2018, 139 (2018) 243–248, SCI检索 [11] Han Yancheng et al. Ring-Opening Polymerization of Rac-Lactide By Mononuclear Zinc Complexes That Contain Chiral Tetra-Azane Ligands[J], Polyhedron, 2017, 121 :206-210, SCI检索 [12] Han YanCheng ,ZHU Guangyun,ZHANGMengmeng,Synthesis and Characterization of Dinuclear Aluminum ComplexesBearing N , N -Dialkylaniline-amido Liga nds and Its Catalytic Properties for Lactone Polymerization[J],Chem. Res. Chin. Univ.,2014,30(5):874-878, SCI检索 [13] Said M. Easa and Yan-Cheng Han. new compound open channel section with polynomial sides: improving cost and aesthetics[J], water 2019, 11, 1545, SCI检索 [14] 韩延成*,梁梦媛,Said M Easa,唐 伟等. 平底悬链线形明渠水力最优断面求解[J], 农业工程学报(国家A类期刊),2019,35(6):90-99. EI 检索 [15] 韩延成*,初萍萍,梁梦媛,唐 伟,高学平. 冰盖下梯形及抛物线形输水明渠正常水深显式迭代算法[J]. 农业工程学报(国家A类期刊),2018,34(14):101-106, EI 检索 [16] 韩延成*,徐征和,高学平,Said M. Easa,二分之五次方抛物线形明渠设计及其提高水力特性的效果[J],农业工程学报(国家A类期刊),2017,33(4):131-136, EI检索 [17] 韩延成*, 高学平.长距离自流型渠道输水控制的二步法研究[J]. 水科学进展,2006,17 (3):414-418,EI 检索 [18] 韩延成*,高学平 基于RBF 人工神经网络的下游常水位自适应渠道输水控制研究 西北农林科技大学学报,2007,35(8):202-205,中文核心 [19] 韩延成*, 高学平 基于CMAC 神经网络的自适应渠道输水自动控制研究, 灌溉排水学报, 2007 ,26(2),中文核心 [20] 韩延成*, 高学平. 明渠输水运行的步进式自动控制方法及应用, 中国农村水利水电,2007 年2期, 中文核心 |