张继才

主持多项国家自然科学基金、省部级自然科学基金项目,作为核心骨干参与 4 项国家重点研发计划项目。第一和通讯作者在CMAME, OCEAN MODELLING, JGR-OCEANS, CSR, ECSS等国际主流SCI期刊发表论文 30 余篇(5-Y平均影响因子~3.5),其中含中科院小类1区、2区论文 20 余篇。曾获得山东省优秀博士学位论文、浙江大学求是青年学者、山东省优秀毕业生、山东省研究生优秀科技创新成果奖(指导教师)等荣誉奖励。培养、联合培养毕业博士生3人,其中1人获得山东省优秀博士学位论文。担任“海洋科学”期刊青年编委、国家自然科学基金评审人,JPO、JGR、Progress in Oceanography、Ocean Modelling、ECSS等十余种国际权威SCI期刊评审人。更多信息请访问: https://www.researchgate.net/profile/Jicai-Zhang-3
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研发自主知识产权海洋伴随同化模式及关键参数时空分布自动优化算法:通过融合数值模型与观测资料,数据同化可反演无法直接测量的关键变量和未知参数,从而显著提高了海洋/大气预报和气候预测的能力。代码和参数是海洋/气候模式的“芯片”,自主构建多个物理海洋领域伴随同化模式,比较、精选国际前沿优化算法,具有同化多源观测数据(浮标、验潮站、卫星、地波雷达、船基)的能力,可显著降低模式与观测的偏差;提出并实现了海洋模式时空变化的控制参数设置,发展了模式参数自动优化算法,对于融合呈时空碎片分布的多源观测数据、提升海洋模式关键过程的参数化方案具有重要意义。(Zhang et al., CMAME, 2010, 2014; Wang et al., OM, 2018; Zhang et al., JAOT, 2019; Wang et al., JGR, 2021; Qian et al., OM, 2021等)
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河口海岸区域底边界层过程的长期高频观测与关键参数的时间变化估计:实现了海洋底边界层过程的高频、长期、多情境观测,揭示了强流海域的底边界层减阻机制以及参数的时间变化性;通过数学推导和算法设计,在满足反问题适定性的条件下,基于伴随同化方法实现了时间分布底摩擦系数和垂向涡粘系数的自动优化估计。对于深入了解强流、多岛屿环境的湍流和能量耗散过程,以及从时间分布角度提升海洋模型关键参数化方案提供了科学和技术支撑。(Du et al., JGR, 2022; Qian et al., POF, 2022)
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开发适应超高分辨率模式的多源数据同化系统、开展海洋预报和防灾减灾应用:多源数据同化技术是海洋环境安全保障领域的重要支撑技术,基于集合调整卡曼滤波和并行技术,构建了“两洋一海”区域适应超高分辨率海洋预报模式(4km ROMS)的多源数据同化系统,有效降低了“两洋一海”区域的海洋预报误差;构建了江浙近海非结构网格浪-流耦合数值模式,在盐水入侵、江浙近海典型台风浪和风暴潮模式参数优选、风暴潮增减水不对称性、寒潮浪时空、风暴潮-天文潮非线性机制分布等方面进行了系统研究,有助于提升江浙近海防灾减灾能力。(Chu et al., ECSS, 2019, 2021; Zhang et al., Natural Hazards, 2020; Xu et al., Applied Ocean Research, 2022等)


研究生指导
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国家自然科学基金面上项目,近海潮控海域底摩擦效应时间变化机理及伴随参数估计研究,41876086,2019.1-2022.12,主持,在研 (研发底边界层长期+高频观测技术;研发时间变化底摩擦参数化方法)
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国家重点研发计划——“全球变化及应对”重点专项,高分辨率海洋模式关键物理过程参数化方案的研发,2017YFA0604100,2017.07-2022.06,核心骨干,结题 (开展群岛水域组网观测;研发气候模式底摩擦参数化方案)
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国家重点研发计划——“海洋环境安全保障”重点专项,“两洋一海”区域超高分辨率多圈层耦合短期数值预报系统研制,2017YFC1404000,2017.07-2021.07,核心骨干,结题 (研发我国战略核心海区超高分辨率浪-潮-流耦合数据同化系统)
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国家重大科学研究计划——全球变化专项,扬子大三角洲演化与陆海交互作用过程及效应研究之第二子课题:流域-海岸-陆架物质交换与扬子大三角洲沉积动力过程,2013.01-2017.12,核心骨干,已结题 (扬子大三角洲、长江口海洋沉积动力过程的观测与数值模拟)
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国家自然科学基金青年项目,41206001,三维海洋模式空间分布参数设置的伴随法实现及应用,2013.01-2015.12,主持,已结题 (构建自主产权海洋伴随同化模式;研发空间分布自动参数化方案)
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江苏省自然科学基金,BK2012315,江苏辐射沙脊群海域地波雷达资料同化及三维海流信息反演、预报,2012.07-2015.06,主持,已结题 (研发我国自主地波雷达观测数据的同化技术)
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浙江省自然科学基金面上项目,LY15D060001,三维悬浮泥沙输运伴随同化模型构建及参数反演研究,2015.01-2017.12,主持,已结题 (构建自主知识产权悬浮泥沙多源伴随同化模式;研发悬浮泥沙多参数自动优化技术)
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浙江省海洋监测预报中心,浙江省海洋环境预报及灾害预警报系统(2016年),2015.12-2016.08,子课题负责人(负责风暴潮、台风浪)
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浙江省海洋监测预报中心,浙江省海洋环境预报及灾害警报系统(2017年),2016.12-2017.08,子课题负责人(负责风暴潮、台风浪)
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浙江省海洋监测预报中心,浙江省海洋环境预报及灾害警报系统(2018年),2017.12-2018.08,子课题负责人(负责风暴潮、台风浪)
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海南省近海海洋综合调查与评价专项,海南省典型海洋灾害的规律与防治对策,2008.11-2012.06,子课题负责人(负责风暴潮、台风浪)
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浙江大学青年科研创新专项,海洋模型参数估计及其应用,2019.01-2020.12,主持,已结题
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教育部留学归国人员科研启动基金,基于伴随同化方法的三维潮流模式参数估计研究,主持
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国家海洋局公益项目,珠江口、台湾浅滩地形变化监测管理保障系统,2011.01-2014.12,骨干
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国家自然科学基金面上项目,密度分层模型的内潮数值模拟与同化研究,2011.01-2013.12,骨干(排名第二)
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国家自然科学基金面上项目,潮流脊影响下开敞型潮滩的地貌动力过程及演化模式,2014.01-2017.12,骨干(排名第二)
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Publications as First/Corresponding Author
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Yanqiu Gao, Jicai Zhang*, Kui Liu**, Haibo Chen, Minjie Xu, 2024. Improvement of an extended ensemble coupled data Assimilation–Forecast system and its application in El Niño diversity predictions. Ocean & Coastal Management, 247, 2024, 106917, https://doi.org/10.1016/j.ocecoaman.2023.106917. 1区
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Yunfei Du, Zhang, J.C.*, Bian, C., Fang, X., Cheng, J., Wang, G., et al. (2023). Multiscale spatio-temporal variations of suspended sediment fronts in the semi-enclosed Bohai Sea, China. Journal of Geophysical Research: Oceans, 128, e2023JC019773. https://doi.org/10.1029/2023JC019773 2区
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Qin Y, Su C, Chu D, Jicai Zhang*, Song J. A Review of Application of Machine Learning in Storm Surge Problems. Journal of Marine Science and Engineering. 2023; 11(9):1729. https://doi.org/10.3390/jmse11091729 2区
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Yunfei Du, Yue Qin, Dongdong Chu, Shuangyan He, Jicai Zhang*, Guansuo Wang, Ya Ping Wang. Spatial and temporal variability of suspended sediment fronts over the Yangtze Bank in the Yellow and East China Seas. Estuarine, Coastal and Shelf Science, 2023, 288: 108361, https://doi.org/10.1016/j.ecss.2023.108361. 2区
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Zilu Wei, Xiaohui Jiao, Yunfei Du, Jicai Zhang*, Haidong Pan, Guansuo Wang, Daosheng Wang*, Ya Ping Wang, The temporal variations in principal and shallow-water tidal constituents and their application in tidal level calculation: an example in Zhoushan Archipelagoes with complex bathymetry, Ocean & Coastal Management, 2023, 237, 106516, https://doi.org/10.1016/j.ocecoaman.2023.106516. 1区
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Qian S, Du Y, Wei Z, Jicai Zhang*, Cheng J, Wang D and Wang YP (2023) Effects of spatial bottom friction parameterization scheme on the tidal ynamics in the macrotidal East China Seas. Frontiers in Marine Science, 10: 1085118. doi: 10.3389/fmars.2023.1085118 1区TOP
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Minjie Xu, Yuzhe Wang, Jicai Zhang*, Dezhou Yang, Xunqiang Yin*, Dejun Dai, Guansuo Wang, Xianqing Lu. Data assimilation in a regional high-resolution circulation-wave-tide coupled model by using ensemble adjustment Kalman filter (EAKF) and its application during 2020 cold spell event over Asia-Pacific region. Applied Ocean Research, 2022, 129: 103375. https://doi.org/10.1016/j.apor.2022.103375 1区
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Yunfei Du, Jicai Zhang*, Zilu Wei, Wenbin Yin, Hui Wu, Yeping Yuan, Ya Ping Wang. Study on the spatio-temporal variability of suspended sediment fronts along the southern East China Sea:Contribution of multiple factors. Journal of Geophysical Research-Oceans, 2022, 127, e2021JC018392. https://doi.org/10.1029/2021JC018392. 2区
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Zilu Wei, Xiaohui Jiao, Jicai Zhang*, Yunfei Du, Zengrui Rong, Hui Wu, Ya Ping Wang. Dynamic Cause of the Sudden Death Event of Small Yellow Croaker (Larimichthys polyactis) in the East China Sea in Winter 2017. Frontiers in Marine Science, 2022, 9: 908195. doi: 10.3389/fmars.2022.908195 (JCR Q1) 1区TOP
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Xiaohui Jiao, Jicai Zhang*, Qun Li*, Chunyan Li. Observational Study on the Variability of Mixed Layer Depth in the Bering Sea and the Chukchi Sea in the Summer of 2019. Frontiers in Marine Science, 2022,9: 862857. doi: 10.3389/fmars.2022.862857 (JCR Q1) 1区TOP
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Suhui Qian, Jicai Zhang*, Daosheng Wang, Ya Ping Wang. Observational study on drag reduction of continental-shelf bottom boundary layer. Physics of Fluids, 2022, 34, 055127. https://doi.org/10.1063/5.0091335 (JCR Q1) 1区TOP
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Dongdong Chu, Haibo Niu, Ya Ping Wang, Anzhou Cao, Li Li, Yunfei Du, Jicai Zhang*. Numerical study on tidal duration asymmetry and shallow-water tides within multiple islands: An example of the Zhoushan Archipelago. Estuarine, Coastal and Shelf Science, 2021, 262: 107576. https://doi.org/10.1016/j.ecss.2021.107576 (5Y-IF: 2.889, JCR Q1)
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Yunfei Du, Daosheng Wang, Jicai Zhang*, Ya Ping Wang, Daidu Fan. Estimation of initial conditions in a three-dimensional suspended sediment transport model with the adjoint method: a case study in the Hangzhou Bay. Continental Shelf Research, 2021, 227: 104526. https://doi.org/10.1016/j.csr.2021.104526
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Daosheng Wang, Jicai Zhang*, Ya Ping Wang. Estimation of bottom friction coefficient in multi-constituents tidal models using the adjoint method: temporal variations and spatial distributions. Journal of Geophysical Research: Oceans, 2021, 126, e2020JC016949. https://doi.org/10.1029/2020JC016949 2021/04 (5Y-IF: 3.559, JCR Q1)
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Suhui Qian, Daosheng Wang, Jicai Zhang*, Chunyan Li. Adjoint estimation and interpretation of spatially varying bottom friction coefficients for a tidal model in the Bohai, Yellow and East China Seas with multi-mission satellite observations. Ocean Modelling, 2021, 161, 101783. https://doi.org/10.1016/j.ocemod.2021.101783 2021/03 (5Y-IF: 3.517, JCR Q1)
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Yunfei Du, Huiyi Lin, Shuangyan He, Daosheng Wang, Ya Ping Wang, Jicai Zhang*. Tide-induced variability and mechanisms of surface suspended sediment in the Zhoushan Archipelago along the Southeastern coast of China based on GOCI data with. Remote Sensing, 2021, 13(5), 929. https://doi.org/10.3390/rs13050929 2021/03/03 (5-Year IF: 5.001, JCR Q2)
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Xilin Zhang, Dongdong Chu, Jicai Zhang*. Effects of nonlinear terms and topography in a storm surge model along Southeastern coast of China: a case study of typhoon Chan-hom. Natural Hazards, 2021, 107(1), 551-574 https://doi.org/10.1007/s11069-021-04595-y 2021/01 (5Y-IF: 2.799, JCR Q2)
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Daosheng Wang, Jicai Zhang*, Lin Mu*. A feature point scheme for improving estimation of the temporally varying bottom friction coefficient in tidal models using adjoint method. Ocean Engineering, 2021, 220, 108481, 15 January 2021 https://doi.org/10.1016/j.oceaneng.2020.108481 (5Y-IF: 3.302, JCR Q1)
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Dongdong Chu, Haibo Niu, Wenli Qiao, Xiaohui Jiao, Xilin Zhang, Jicai Zhang*. Modelling study on the asymmetry of positive and negative storm surges along the Southeastern coast of China. Journal of Marine Science and Engineering, 2021, 9, 458. https://doi.org/10.3390/jmse9050458 2021/04 (IF: 2.033, JCR Q2)
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Pinyan Xu, Qiao Zheng, Zhumei Che*, Ye Zhu, Jicai Zhang*. Numerical Study on the Spatio-Temporal Distribution of Sea Waves Induced by Cold Fronts along the Southeastern Coast of China. Journal of Marine Science and Engineering, 2021, 9(12), 1452; https://doi.org/10.3390/jmse9121452
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Daosheng Wang, Jicai Zhang*, Xinyan Mao, Changwei Bian, ZhouZhou. Simultaneously assimilating multi-source observations into a three-dimensional suspended cohesive sediment transport model by the adjoint method in the Bohai Sea. Estuarine, Coastal and Shelf Science, 2020, 241, 106809, https://doi.org/10.1016/j.ecss.2020.106809 2020-08-31 (5Y-IF: 2.889, JCR Q1)
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Yao Xu, Jicai Zhang*, Yun Xu, Wangmin Ying, Ya Ping Wang, Zhumei Che, Ye Zhu. Analysis of the spatial and temporal sensitivities of key parameters in the SWAN model: An example using Chan-hom typhoon waves. Estuarine, Coastal and Shelf Science, 2020, 232, 106489. 2020-01-05 https://doi.org/10.1016/j.ecss.2019.106489. (5Y-IF: 2.889, JCR Q1)
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Jicai Zhang*, Guoqing Li, Jiacheng Yi, Yanqiu Gao, Anzhou Cao. A Method on Estimating Time-Varying Vertical Eddy Viscosity for An Ekman Layer Model with Data Assimilation. Journal of Atmospheric and Oceanic Technology, 2019, 36: 1789-1812. https://doi.org/10.1175/JTECH-D-18-0223.1 2019-09-01 (2018 Impact Factor 2.224, JCR Q2)
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Dongdong Chu, Jicai Zhang*, Yongsheng Wu, Xiaohui Jiao, Suhui Qian. Sensitivity analysis on parameterization of key processes for storm surge modelling in East China Sea: an example for typhoon Winnie. Estuarine, Coastal and Shelf Science, 2019, 231: 106460. https://doi.org/10.1016/j.ecss.2019.106460 2019-12-31 (5Y-IF: 2.889, JCR Q1)
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Jicai Zhang, Dongdong Chu, Daosheng Wang*, Anzhou Cao, Xianqing Lv, Daidu Fan. Estimation of spatially varying parameters in three-dimensional cohesive sediment transport models by assimilating remote sensing data. Journal of Marine Science and Technology, 2018, 23: 319–332. 2018-06-01 (2018 Impact factor 1.845, JCR Q1)
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Daosheng Wang, Anzhou Cao, Jicai Zhang*, Daidu Fan, Yongzhi Liu, Yue Zhang, 2017. A three-dimensional cohesive sediment transport model with data assimilation: Model development, sensitivity analysis and parameter estimation. Estuarine, Coastal and Shelf Science, 2018, 206: 87-100. 2018-06-30 (5Y-IF: 2.889, JCR Q1)
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Xinyan Mao, Daosheng Wang*, Jicai Zhang*, Changwei Bian, Xianqing Lv. Dynamically constrained interpolation of the sparsely observed suspended sediment concentrations in both space and time. Journal of Atmospheric and Oceanic Technology, 2018, 35(5): 1151-1167. 2018-05 (2018 Impact Factor 2.224, JCR Q2)
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Daosheng Wang, Jicai Zhang*, Xianqiang He, Dongdong Chu, Xianqing Lv, Ya Ping Wang, Yang Yang, Daidu Fan, Shu Gao. Parameter estimation for a cohesive sediment transport model by assimilating satellite observations in the Hangzhou Bay: temporal variations and spatial distributions. Ocean Modelling, 2018,121: 34–48. 2018-01 (5Y-IF: 3.517, JCR Q1)
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Ning Li, Xianqing Lv, Jicai Zhang*. Application of Surface Spline Interpolation Method in Parameter Estimation of a PM 2.5 Transport Adjoint Model. Mathematical Problems in Engineering 2018:1-11, DOI: 10.1155/2018/6231271
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Daosheng Wang, Jicai Zhang*, Ya Ping Wang, Xianqing Lv, Yang Yang, Daidu Fan, Shu Gao. A Methodology for Estimating the Parameters in Three-Dimensional Cohesive Sediment Transport Models by Assimilating In Situ Observations with the Adjoint Method. Journal of Atmospheric and Oceanic Technology, 2017, 34: 1469-1482. 2017-07 (2018 Impact Factor 2.224, JCR Q1)
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Ning Li, Yongzhi Liu, Xianqing Lv, Jicai Zhang* and Kai Fu*. The high order conservative method for the parameters estimation in a PM2.5 transport adjoint model. Advances in Meteorology, 2017, Vol 2017: 1-13, https://doi.org/10.1155/2017/46265852017 2017-12-25 (2018 Impact Factor 1.577)
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Anzhou Cao, Yanqiu Gao, Jicai Zhang*, Xianqing Lv. Trajectory Estimation of Aircraft in a Double-Satellite Passive Positioning System with the Adjoint Method. Mathematical Problems in Engineering 2013(4), DOI: 10.1155/2013/502610
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Jicai Zhang*, Dongdong Chu, Ping Wang, Joseph Hughes, Jun Cheng. Hydrodynamic modelling of salinity variations in a semi‐engineered mangrove wetland. Contributions to Modern and Ancient Tidal Sedimentology: Proceedings of the Tidalites 2012 conference, Bernadette Eds: Tessier Jea-Yves Reynaud, 2016, https://doi.org/10.1002/9781119218395.ch1 2016-01-29
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Jicai Zhang*, Ya Ping Wang. A Method for Inversion of Periodic Open Boundary Conditions in Two-Dimensional Tidal Models. Computer Methods in Applied Mechanics and Engineering,2014, 275, 20-38 2014-06-15 (5Y-IF: 5.697, JCR Q1)
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Jicai Zhang*, Haibo Chen. Semi-Idealized Study on Estimation of Partly and Fully Space Varying Open Boundary Conditions for Tidal Models. Abstract and Applied Analysis 2013(5), DOI: 0.1155/2013/282593
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Jicai Zhang, Ping Wang*, Joshph Hughes. EOF Analysis of Water Level Variations for Microtidal and Mangrove-Covered Frog Creek System, West-Central Florida. Journal of Coastal Research, 2012, 28(5): 1279-1288 2012-09 (2018 IF 1.053)
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Jicai Zhang*, Xianqing Lu, Ping Wang and Yaping Wang. Study on linear and nonlinear bottom friction parameterizations for regional tidal models using data assimilation. Continental Shelf Research, 2011, 31: 555-573 2011-04-15 (2018 Impact Factor 2.134, JCR Q2)
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Jicai Zhang*, Xianqing Lu. Inversion of three-dimensional tidal currents in marginal seas by assimilating satellite altimetry. Computer Methods in Applied Mechanics and Engineering, 2010, 199: 3125-3136 (5Y-IF: 5.697, JCR Q1)
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Jicai Zhang, Xianqing Lu*. Parameter Estimation for a Three-Dimensional Numerical Barotropic Tidal Model with Adjoint Method. International Journal for Numerical Methods in Fluids, 2008, 57: 47-92 2008-05-10 (2018 Impact Factor 1.631)
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Jicai Zhang, Xianqing Lu*. On the simulation of M-2 tide in the Bohai, Yellow and East China Seas with TOPEX/Poseidon altimeter data. Terrestrial, Atmosphere and Oceanic Sciences, 2008, 19(1-2): 173-181 2008-04 (2018 Impact Factor 0.543)
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Jicai Zhang, Jianguo Zhu, Xianqing Lu*. Numerical Study on the Bottom Friction Coefficient of the Bohai Sea, the Yellow Sea and the East China Sea. Chinese Journal of Computational Physics, 2006, 23(6): 731-737
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Xianqing Lu(导师), Jicai Zhang. Numerical study on spatially varying bottom friction coefficient of a 2-D tidal model with adjoint method. Continental Shelf Research, 2006, 26: 1905–1923 2006-10.
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张继才, 吕咸青*。 渤、黄、东海二维潮汐模式底摩擦系数的反演研究。 计算力学学报,2007,22(3):214-219
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张继才,吕咸青*。空间分布底摩擦系数的伴随法反演研究。自然科学进展,2005,15(9):1086-1093
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张继才*,吕咸青, 孙丽艳。基于卫星高度计资料同化的渤海和黄海M2潮流数值模拟。南京大学学报(自然科学),2010,46(6):654-663
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易家成,高艳秋,张继才*。基于伴随同化方法的Ekman模型垂向涡动黏性系数时间变化研究。海洋科学,2018,Vol. 42,No. 12,71-82,DOI: 10.11759/hykx20180408002
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郑桥,张继才*,车助镁, 朱业。浙江近海典型寒潮浪的数值模拟:以2015年3月和2016年1月为例。海洋科学,2019 ,43 (10):75-87
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李国庆,高艳秋,张继才*。Ekman模型时间变化风应力系数的伴随参数估计。海洋与湖沼,2019,50(5):979-993
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杜云飞,张继才(指导教师),王道胜*。杭州湾三维悬浮泥沙输运模型初始场的伴随法反演研究。海洋与湖沼,2020,51(5):1025-1042
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张西琳,楚栋栋,张继才*,车助镁,李春雁。东南沿海台风风暴潮增水过程中非线性机制和地形的作用研究:以1509号台风“灿鸿”为例。海洋与湖沼,2020,51(6),1320-1331
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林辉义,高艳秋,张继才*。基于再分析数据的南大洋区域Ekman流时空分布规律研究。海洋与湖沼,2021,52(4):860-873 ,DOI: 10.11693/hyhz20210100010
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楚栋栋;李梦雨;车助镁;元媛;栾华龙;张继才。杭州湾及舟山海域可能最大台风风暴潮增水的数值研究。长江科学院院报,2023,已接收。
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楚栋栋;覃悦;李梦雨;王敏;曾鑫;元媛;车助镁;张继才。基于1950-2003年中国近海历史风暴潮增水时空特征分析,长江科学院院报,2023,已接收