师资队伍

教师名录

张景新

工程力学系

办公电话:13917108421
电子邮件:zhangjingxin@sjtu.edu.cn
通讯地址:澳门十大信誉好的网站

       张景新,男,副教授、博士生导师。本科、研究生毕业于澳门十大信誉好的网站工程力学系,先后赴新加坡南洋理工大学、德国柏林Institute of Ecohydrology and Inland Fisheries做访问学者开展研究工作。长期从事基础力学教学工作,主要讲授《流体力学》、《计算流体力学》、《环境流体力学》、《理论力学》等基础专业课程。长期从事环境水动力学问题研究,专注于带自由表面水动力学的数值模拟技术研究及大型计算软件的研发。主持国家自然科学基金3项,参与自然科学基金重点项目、面上项目、国家重大研究计划共10 余项。发表科研论文90余篇,出版专著2部,取得国家发明专利2项、软件著作权10项。获评“大禹水利科技奖”一等奖1次、二等奖2次。


  1. 河口潮汐水流、波浪、泥沙输运等的数值模拟技术研究
    1) 河口风暴潮过程及洪水灾害模拟技术研究及计算软件实现;
    2)海岸带波浪演化模拟技术研究;
    3)河口水、沙、盐、可溶物质输运建模研究;
    4)海岸、河口带大尺度的高精度数值模拟技术研究(DES)

  2. 植被水流及区域物质输运数值模拟技术研究
    1)波流与刚性植被相互作用及局部传质关键水动力因素研究;
    2)波流与柔性植被相互作用及环境水动力学问题研究;
    3)植被条件下水环境建模及应用研究

  3. 波流、结构物相互作用的数值模拟技术研究(IBM模拟技术、CFD-DEM模拟技术)
    1)CFD-IBM模拟技术研究及应用:波流结构物相互作用研究;块体动力过程模拟技术研究;海洋结构物(固定式、漂浮式)水动力过程仿真;
     2)CFD-DEM模拟技术研究及应用:细颗粒泥沙局部冲淤模拟技术研究;散体动力过程模拟技术研究;河道整治工程的损毁水动力因素研究;

     3)水沙两相流建模技术及应用研究;

  4. 带自由表面水动力学大型计算软件系统自主研发
    1)自由表面水动力模拟系统研发及计算软件开发
    2)高性能并行计算技术研究及软件实现

1、第九届流体力学专业委员会工业与环境流体力学专业组成员;
2、中国水利学会河口专委会委员

3、上海市水利学会委员

4、水动力学研究与进展、Journal of Hydrodynamics编委


主持科研项目:
1. 国家自然科学基金《生态海堤浅滩植被群消浪与塑滩的水动力学机理研究》,研究期限2026年~2029年。

2. 国家自然科学基金《海上风力机支撑结构局部冲刷的动力机制及基于流动控制的防冲刷技术研究》,研究期限2016年~2019年。

3. 国家自然科学基金青年基金《河口海岸带近床面水动力及泥沙运动研究》,研究期限2008年-2010年。

4. 重点实验室基金《深海矿物质颗粒在垂直管道中输运的数值模拟研究》,2025.09-2026.12,本人职责:主持

参与研究工作:

1. 国家自然科学基金叶企孙联合基金“拖曳线列阵在高速纵向水流作用下的流噪声预报方法研究”,执行状态:2025-2028.
1. 国家重大研究计划“面向深远海的大功率海上风电机组及关键部件设计研发”子课题,课题编号2019YFB1503703,执行状态:2020-2023.
2. 国家重点基础研究发展计划(973)项目“大型风力机的关键力学问题研究及设计实现”子课题,课题编号:2014CB046203,执行状态:2014-2018。
3. 海岸破波带复杂流动与泥沙运动机理研究(项目编号:10172058)
4. 高速水中航行体空泡流的非定常特性研究(项目编号:10972138)
5. 跨海桥梁工程的水动力学基础问题研究(项目编号:10572093)
6. 我国南海海啸波爬高及其共振机理研究(项目编号:11202130)
7. 计算水力学中无网格技术的研究现状及趋势(项目编号:51541911)
8. 海底管线肩部三维冲刷的研究(项目编号:BC0100133)
9. 海啸力学及其在南中国海的应用(项目编号:1163012)

1. 出版著作

《非静压水波模型理论及应用》 张景新 澳门十大信誉好的网站出版社
《计算水力学中的无网格方法》 梁东方 张景新 王华 陈日东 澳门十大信誉好的网站出版社

2. 发表论文

2025.01~2025.12

²  Luo P.X., Zhang J.X.  The dynamic impact of surging waves on coastal structures via a wave–structure coupling model. Physics of Fluids,2025, 37, 082106, doi: 10.1063/5.0279462.

²  Jin C.P., Zhang J.X. Forced motion modes of a patch of flexible rods in open channel flows. Physics of Fluids, 2025, 37(2), DOI: 10.1063/5.0252029.

²  Jin C.P., Zhang J.X. Numerical strategy of modelling flexible vegetation flows using a semi-resolved numerical model by means of distributed virtual body forces. Journal of Fluids and Structures, 133(2025) 104270.

²  Chen J., Wang L., Yang S.F., Zhang J.X. Semi-resolved CFD-DEM coupling simulation of wave interaction with submerged permeable breakwaters. Ocean Engineering 321 (2025) 120411.

²  Zhisong Li, Yufei Wang, Jingxin Zhang, Xiuwen Li. New generation methods of large-amplitude solitary waves from theDirichlet boundary of a finite-length wave flume. Ocean Engineering, 2026,343, Part 5, 123466.

²  严昱,张景新.非平底明渠植被水流尾流特征的实验研究[J/OL].水动力学研究与进展A,1-8[2025-10-11].https://doi.org/10.16076/j.cnki.cjhd.2025.04.004.

2024.01~2024.12

²  Chen J., Zhang J.X. A hierarchical linked cell method based on scale-proportional multi-level DEM grids. Powder Technology 448 (2024) 120296.

²  Luo P.X., Zhang J.X. An immersed boundary method coupled non-hydrostatic model for free surface flow. Computers and Fluids, 2024, 275, 106241.

²  Luo P.X., Zhang J.X., et al. Simulation of wave scattering over a floating platform in the ocean with a coupled CFD-IBM model. Theoretical and Applied Mechanics Letters, 2024, 14, 100516.

²  Jin C.P., Zhang J.X. Numerical simulation of fluid-vegetation coupled dynamic using a promoted semi-resolved coupling model. Ocean Engineering, 2024, 302, 117678.

²  Jin C.P., Zhang J.X. Numerical simulation of the fluid and flexible rods interaction using a semi-resolved coupling model promoted by anisotropic Gaussian kernel function. Theoretical and Applied Mechanics Letters, 2024, https://doi.org/10.1016/j.taml.2024.100520.

²  史佳明 张景新 直立式圆柱局部冲刷初始形态演化的CFD-DEM数值模拟. 水动力学研究与进展(A辑),2024394):1-8.

2023.01~2023.12

²  Luo P.X., Zhang J.X. Numerical simulating wave propagation over solid obstructions using a non-hydrostatic free surface flow model combined immersed boundary method. Ocean Engineering 269 (2023) 113526.

²  Chen J., Zhang J.X. Semi-resolved CFD-DEM coupling model for submerged granular collapse. Powder Technology, 425 (2023) 118624.

²  Luo P.X., Zhang J.X. Modeling Free Surface Flow Passing Solid Obstructions Using the Immersed Boundary Method. International Journal of Offshore and Polar Engineering, 2023, 33(2):215-222.  DOI: 10.17736/ijope.2023.ak49

2022.01~2022.12

²  Chen J., Zhang J.X. A semi-resolved CFD-DEM coupling model using a two-way domain expansion method. Journal of Computational Physics, 2022, 469, 111532.

²  Jin C.P., Zhang J.X. Numerical investigation of the wave interaction with flexible vegetation: model setup and validation for a single stem study case. Anthropocene Coasts, 2022, https://doi.org/10.1007/s44218-022-00003-5

²  Liang D.F., Huang J., Zhang J.X., Shi S.J., Zhu N., Chen J. Three-dimensional simulations of scour around pipelines of finite lengths. Journal of Marine Science and Engineering, 2022, 10,106. https://doi.org/10.3390/jmse10010106.

²  张景新 赵永生 樊翔 何炎平 邹望 海上浮式风力机支撑结构的流固耦合动力学研究.力学与实践,2022445):1093-1104.

2021.01~2021.12

²  Zhang J.X. Significance of generating synthetic turbulence for zonal detached eddy simulation of shallow water flows. Ocean Engineering, 2021, 237: 109418. 

²  Wang J., Zhang J.X., Liang D.F., Gan L. Numerical investigation of shallow wake behind a patch of rigid emergent vegetation. Journal of Hydrodynamics, 2021, 33(4): 673-687.

²  Fan X., Tang J.J., Zhang Y.X., Sun H.S., Gu Y.Q., Zhang J.X. Numerical investigation of the ship propeller load under reversed propulsion condition. Journal of Hydrodynamics, 2021, 33(2): 361-369.

²  Li Z.S., Zhang J.X., Liu H. Boussinesq modeling for the runup of solitary-like waves on a slope and circular island. Ocean Engineering,2021,226: 108742.

²   https://doi.org/10.1016/j.oceaneng.2021.108742.

²  汪健 张景新 单柱直径差异性条件下柱群浅水流动的特征分析. 水动力学研究与进展, 2021363):421-428.

²  江雅赛 张景新 有限植被群水流尾流场特征的数值模拟研究. 水动力学研究与进展, 2021363):429-438.

2020.01~2020.12

        ² Zhang J.X.,Wang J., Fan X., Liang D.F. Detached-eddy simulation of turbulent coherent structures around groynes in a trapezoidal open channel. Journal of Hydrodynamics,2020, 32

             (2): 326-336.

2019.01~2019.12

²  Zhang J.X., Liang D.F., Fan X., Liu H. Detached eddy simulation of flow through a circular patch of free-surface-piercing cylinders. Advances in Water Resources, 2019, 123, 96-108. 

²  Zhang J.X., Fan X., Liang D.F., Liu H.  Numerical investigation of nonlinear wave passing through finite circular array of slender cylinders. Engineering application of computational fluid dynamics, 2019, 13(1), 102-116.

²  Zhang J.X., Wang J., Fan X., Liang D.F., Numerical investigation of water wave near-trapping by rigid emergent vegetation. Journal of Hydro-environment Research, 2019,25:35-47.  Doi.org/10.1016/j.jher.2019.07.003

²  Wang J., Zhang J.X., Liang D.F., Gan L. Non-hydrostatic modelling of shallow water flow around a circular array of emergent cylinders. Journal of Hydroinformatics, 2019.  DOI: 10.2166/hydro.2019.018.

²  Fan X., Zhang J.X., Liu H. Numerical Investigation of Run-ups on Cylinder in Steep Regular Wave[J]. China Ocean Engineering, 2019, 33(5):601-607. 

²  吴梦瑶 张景新 基于多孔介质模型的有限柱群绕流模拟 水动力学研究与进展,201934(4): 467-474. DOI: 10.16076/J.cnki.cjhd.2019.04.006

2018.01~2018.12

²  Zhang J.X., Liang D.F.,Liu H. A hybrid hydrostatic and non-hydrostatic numerical model for shallow flow simulations. Estuarine, Coastal and Shelf Science, 2018, 205: 21-29.

²  Fan X., Zhang J.X., Liu H. Numerical analysis on the secondary load cycle on a vertical cylinder in steep regular waves. Ocean Engineering, 2018, 168:133-139.

²  钱晨程 张景新  截面形状对局部马蹄涡影响的数值研究. 水动力学研究与进展,2018 335):601-608.

²  杨骐 梁东方 张景新 汪健 刚性挺水植物群落三维尾流流场特征分析. 水动力学研究与进展,2018334):420-427.

2017.01~2017.12

²  Zhang J.X., Liang D.F., Liu H. An efficient 3D non-hydrostatic model for simulating near-shore breaking waves. Ocean Engineering, 2017, 140, 19-28.

²  Zhang J.X., Liu H. Modeling of waves overtopping and flooding in the coastal reach by a non-hydrostatic model. Procedia IUTAM 25 (2017) 126-130.

²  Sukhodolova T., Weber A., Zhang J., and Wolter C. Effect of macrophyte development on the oxygen metabolism of an urban river rehabilitation structure. Science of The Total Environment, 2017, 574:1125-1130.

²  Liang D.,F He X.Z., Zhang J.X. An ISPH model for flow-like landslides and interaction with structures. Journal of Hydrodynamics, 2017, 29(5): 894-897.

²  Fan X., Zhang J.X., Liu H. Numerical investigation of the hydrodynamic performance of a multi-column tension-leg-type floating wind turbine under effects of waves. HOUILLE BLANCHE-REVUE INTERNATIONALE DE L EAU, 2017,(1):37-43

²  张景新 基于非静压模型的波浪破碎模拟. 水科学进展,2017283):438-444.

²  王凯 张景新 孤立波与碎石型防波堤相互作用的CFD-DEM数值模拟. 水动力学研究与进展,2017324):408-416.

2016.01~2016.12

²  Zhang J.X., Liang D.F., Liu H. A detached eddy simulation model for free surface flows. ACTA Aerodynamica Sinica, 2016, Vol.34, No. 2: 239-251.

²  Liang D.F., Zhang J.X., Li T.J., Xiao Y. Refined seaward boundary conditions for modelling shallow water waves in semi-enclosed water bodies. Applied Ocean Research, 2016, 57: 64-77.

²  Wang J., Liang D.F., Zhang J.X., Xiao Y. Comparison between shallow water and Boussinesq models for predicting cascading dam-break flows. Natural Hazards, 2016, DOI 10.1007/s11069-016-2317-x.

²  Weber A., Zhang J.X., Nardin A., Sukhodolov A., and Wolter C. Modelling the influence of aquatic vegetation on the hydrodynamics of an alternative band protection measure in a navigable waterway. River Research and Applications, 2016, DOI: 10.1002/rra.3052.

²  Zhang J.X., Liu H. Modeling of waves overtopping and flooding in the coastal reach by a non-hydrostatic model. IUTAM Symposium on Storm Surge Modelling and Forecasting, 2016.

²  Fan X., Zhang J.X., Liu H. Numerical Analysis on Motion of Multi-column Tension-Leg-Type Floating Wind Turbine Basement. Transactions of Nanjing University of Aeronautics and Astronautics, 201633(1): 73-79.

²  韩露 张景新 魏清福 明渠流动条件下单圆墩的阻水效应数值模拟. 水动力学研究与进展, 2016,Vol. 31, No. 1: 76-82.

²  李子龙 寇军 张景新 明渠条件下单丁坝绕流特征的数值模拟. 计算力学学报,2016,Vol. 33, No.2: 245-251.

²  车海鸥 王凯 张景新 带自由表面水流与颗粒离散元耦合模型研究. 计算力学学报,2016, Vol.33, No.5, 747-752.

²  刘恒 张景新 胡天群  非淹没圆柱群局部水流场特征分析. 水动力学研究与进展,2016,Vol.31, No.2: 161-170.

2015.01~2015.12

²  Zhang J.X., Wang X.K., Liang D.F., Liu H. Application of detached-eddy simulation to free surface flow over dunes. Engineering Applications of Computational Fluid Mechanics, 2015, Vol.9, No.1, 556-566.

²  Wang X.K., Zhang J.X., Hao Z., Zhou B., Tan S.K. Influence of wall proximity on flow around two tandem circular cylinders. Ocean Engineering, 2015(94): 36-50.

²  Sukhodolov A.N., Martin B., Zhang J.X. Sukhodolova T.  A study of flow dynamics implications for benthic fauna in a meander bend of a lowland river. J. of Hydraulic Research, 2015,Vol. 53(4): 488-504.

²  张景新. 复杂地形下带自由表面水流的分离涡模拟. 计算物理,2015,Vol. 32, No. 5: 561-571.

²韩露 张景新 明渠流动条件下单圆墩的阻水效应实验模拟. 水动力学研究与进展, 2015, Vol.30, No.2:208-214.





  • 流体力学 本科生

  • 理论力学 本科生

  • 环境流体力学 研究生

  • 计算流体力学 研究生

软件著作权
1. 非结构混合网格生成器MixGrid(NO.00791697)
2. 环境水动力学数值模拟软件HydroFlow(NO.00791698)
3. 颗粒流的离散单元法模拟软件 HydroDEM (NO.5445806)
4. 流固耦合浸没边界法模拟软件 HydroIBM(NO.5445797)
5. 数值波浪水池模拟软件 HydroWAVE (NO. 5445790)
6. 涡流发生器模拟软件 VorGen (NO. 5446117)

7. 不可压缩变密度流数值仿真软件HydroMDF(NO.11036358)

8. 基于MPI/OpenMP混合并行的带自由表面水流数值仿真软件(NO.11036469)

9. 柔性植被水流数值仿真软件(2024SR0864464)

10. 水沙运动数值仿真软件(2024SR1009009)

专利

基于空间耦合一体化数值模型的水流模拟方法(ZL 2020 1 0326471.7)


  • 2019年度校级教书育人集体二等奖

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