训导职责资格
磋商员(2021.9–于今):同济大学,土木匠程学院
磋商员,PI(2019.7–2021.7):汉诺威莱布尼茨大学(德国),土木匠程学院
博士后(2017.06–2019.06):汉诺威莱布尼茨大学(德国),土木匠程学院
博士(2013.09–2017.06):汉诺威莱布尼茨大学(德国),土木匠程学院
硕士(2010.09–2013.07):中国科学院大学,力学磋商所
学士(2006.09–2010.06):同济大学,航空航天与力学学院
磋商格式及经费搭救
1.微不雅圭表微生物指引碳酸钙千里淀非均匀演变作用下渗流机理磋商.2023-2025,国度当然科学基金,主捏
2.可变形多孔介质流-固耦合经过数值磋商.2022-2025,上海市领军东谈主才(中央高校基本科研业务费),主捏
3.动荡器结构受冲击损害破损经过数值模拟,2024-2026,同济大学学科交叉蚁合攻关格式,主捏
4.滑坡全经过演化规矩当场光滑粒子能源学分析磋商, 2024-2025,地质灾害防治与地质环境保护国度要点本质室怒放基金,主捏
5.浙东滨海地区海防古名胜保护重要技巧研发及欺诈,2024-2027,浙江省宁波市要点技巧研发格式,课题考究
6.Multi-scale modeling of biofilm detachment in fluid with a poroviscoelastic model.2019-2021,德国当然科学基金(DFG),主捏(结题)
7.Numerical and experimental investigations of the biosealing process in fractured rocks.2020-2022,中科院武汉岩土所国度要点本质室怒放基金,主捏(结题)
社会兼职
1.中国力学学会会员
2.《估量力学学报》后生编委
3.《建筑施工》特邀编委
4.《驻扎工程》后生编委
5.《International Journal of Hydromechatronics》 编委
6.外洋防灾减灾协会 (ICGdR) 会员
7.上海市水利协会会员
科研教学奖励
1.Outstanding Youth Paper Award, The 21st International Conference on Boundary Element and Meshless Techniques
2.第一届“赛昇杯”数智大赛三等奖
3.2023年高档学校水利类专科教学恶果一等奖(3/5)
4.同济大学2022届优秀毕业狡计(论文)请示考验
5.2022宇宙力学类优秀本科毕业论文A类优秀论文请示考验
请示学生获奖
2024-9,第一届同济大学土木与交叉学科磋商生学术论坛“和会调动智能--新工科配景下的土木匠程”优秀论述奖(学生:楚亚杰)
2024-8,ICCES2024 Best Student Paper Award(学生:易灿)
2024-7,第一届“赛昇杯”数智大赛三等奖(学生:王佳文、王玲翔、刘蓓蕾、邵荟草)
2023-12,2022-2023学年同济大学磋商生优秀学生(学生:易灿)
2022-6,2022年宇宙力学类优秀本科毕业论文A类优秀论文 (学生:陆遥)
2022-6,同济大学2022届优秀毕业狡计(论文)(学生:陆遥)
磋商标的
(一)估量水能源学模子与递次
(二)流-固-土耦合经过模拟
(三)微生物系统数值模拟
(四)估量爆炸、冲击能源学
(五)高性能估量、仿真软件平台建造
学术发表
近期会辩论述
1.第四届无网格粒子类递次发达与欺诈研讨会(2024.8),乌鲁木都,大会论述
2.The 30th International Conference on Computational & Experimental Engineering and Sciences(2024.7),新加坡,主题论述(keynote lecture)
3.第七届宇宙颗粒材料估量力学会议暨第四届估量颗粒技巧外洋研讨会(2024.5),南京,主题邀请论述
4.第七届宇宙流固耦合与非定常流膂力学学术会议(2024.4),盐城,分组特邀论述
5.第15届世界估量力学大会暨第8届亚太估量力学大会(WCCM-APCOM 2022),日本横滨,主题论述(keynote lecture)
6.第三届无网格粒子类递次发达与欺诈研讨会, 广西南宁,主会场论述
期刊论文(抑制2024年9月)
31. L. Wang, Y. Chu, X. Wang, P. Pan, D. Feng*; Numerical investigation of heterogeneous calcite distributions in MICP processes,Minerals, 2024, 14(10), 999.
30. T. Fu, D. Feng*, J. Yin, C. Yi, J. Chen; Multi-dimensional modeling of solitary wave-structure interaction problems by using a δ-LES-SPH model,Engineering Analysis with Boundary Elements, 2024,169,105965.
29. D. Feng*, I. Neuweiler; A poroelastic δ-SPH model for modeling biofilm deformation and sloughing in microfluidic channels. Computers and Geotechnics, 2024,175,106700.
28. M. Hu*, Q. Tan, D. Feng, Y. Ren, Y. Huang*; Simulation of Rock Crack Propagation and Failure Behavior Based on a Mixed Failure Model with SPH. Rock Mechanics and Rock Engineering, 2024: 1-22.
27. J. Chen, D. Feng*, C. Peng*, R. Ni, Y. Wu, T. Li, X. Song; A coupled FD-SPH method for shock-structure interaction and dynamic fracture propagation modeling, Applied Mathematical Modelling, 2024, doi: https://doi.org/10.1016/j.apm.2024.06.010.
26. D. Feng*, Y. Chu*, L. Feng, L. Wang, Y. Huang; Pore-Scale Modeling of the MICP process by using a coupled FEM-LBM-CA Model: With a focus on the heterogeneity of the pore structures. Computers and Geotechnics, 2024,172,106414.
25. Y. Huang, B. Liu, D. Feng*, H. Shi; Interaction Mechanisms between Natural Debris Flow and Rigid Barrier Deflectors: A New Perspective for Rational Design and Optimal Arrangement. CMES-Computer Modeling in Engineering & Sciences, 2024,139(2).
24. L. Wang, H. Shao, C. Yi, Y. Huang*, D. Feng*; Optimization of Injection Methods in the Microbially Induced Calcite Precipitation Process by Using a Field Scale Numerical Model. Water, 2024,16(1),82.
23. D. Feng, C. Yi, M. Hu*, T. Gao, Y. Huang*; Simulation of non-cohesive soil turning based on an SPH model. Computers and Geotechnics, 2023,160,105502, https://doi.org/10.1016/j.compgeo.2023.105502.
22. Y. Lu, J. Chen, D. Feng*, L. Wang, M. Liu*; Numerical modeling of hypervelocity impacts on carbon fiber reinforced plastics using a GPU-accelerated SPH model. Computational Mechanics, 2023, https://doi.org/10.1007/s00466-023-02318-7
21. J. Chen, D. Feng*, J. Liu, S. Yu, Y. Lu; Numerical modeling of the damage mechanism of concrete-soil multilayered medium subjected to underground explosion using the GPU-accelerated SPH,Engineering Analysis with Boundary Elements,2023,151,265-274.
20. J. Chen, D. Feng*, Q. Sun, C. Peng, Y. Zhu, S. Yu; Numerical modeling of shaped charge jet penetration into ceramic–metal double-layered medium using smoothed particle hydrodynamics,International Journal of Impact Engineering,2023,175,104526
19. H.Shi, Y. Huang, D. Feng, Numerical investigation on the role of check dams with bottom outlets in debris flow mobility by 2D SPH. Scientific Reports, 2022, 12, 20456.
18. 冯殿垒;I. Neuweiler; 黄雨;海潮与多孔结构流固耦合经过的SPH模拟磋商, 中国科学: 物理学 力学 天文体, 2022, 52(10)104715.
17. D. Feng, X. Wang, U. Nackenhorstc, X. Zhang, P. Pan; A comparative study of using two numerical strategies to simulate the biochemical processes in MICP, Journal of Rock Mechanics and Geotechnical Engineering, 2022, 14(2): 592-602.
16. J.Y. Chen; D. Feng; G. Y. Wang; F. Gao; C. Peng; Numerical Simulation of Detonation and Brisance Performance of Aluminized HMX Using Density‐Adaptive SPH. Propellants, Explosives, Pyrotechnics, 2021, 46(12), 1800-1814.
15. D. Feng*; I. Neuweiler; R. Nogueira; U. Nackenhorst; Modeling of symbiotic bacterial biofilm growth with an example of the Streptococcus-Veillonella sp. system, Bulletin of Mathematical Biology, 2021, 83(5).
14. D. Feng*; I.Neuweiler; M.B. Liu; U. Nackenhorst; Numerical modeling of the mechanical response of bacterial biofilm to flow by using an SPH poroviscoelastic model, PAMM, 2021, 20(1).
13. J.Y. Chen; D. Feng; F.S. Lien; C. Peng; Numerical modelling of interaction between aluminium structure and explosion in soil, Applied Mathematical Modelling, 2021, 99: 760-784.
12. J.Y. Chen; D. Feng; S.X. Deng; C. Peng; F.S. Lien; GPU-accelerated smoothed particle hydrodynamics modeling of jet formation and penetration capability of shaped charges, Journal of Fluids and Structures, 2020, 99(103171)
11. D. Feng*; I. Neuweiler; U. Nackenhorst; T. Wick; A time-space flux-corrected transport finite element formulation for solving multi-dimensional advection-diffusion-reaction equations, Journal of Computational Physics, 2019, 396(1): 31-53.
10. Z.L. Zhang; T. Ma; D. Feng; M.B. Liu; A new formula for predicting the crater size of a target plate produced by hypervelocity impact, International Journal of Computational Methods, 2019, 17(1).
9. Z.L. Zhang; D. Feng; T. Ma; M.B. Liu; Predicting the damage on a target plate produced by hypervelocity impact using a decoupled finite particle method, Engineering Analysis with Boundary Elements, 2019, 98: 110-125.
8. D. Feng*; I. Neuweiler; U. Nackenhorst; A time-space FCT-FE formulation for 1D time dependent advection-diffusion equation, PAMM, 2018, 18(1).
7. Z.L. Zhang; T. Ma; M.B. Liu; D. Feng; Numerical study on high velocity impact welding using a modified SPH method, International Journal of Computational Methods, 2018, 15(3).
6. Z.L. Zhang; D. Feng; M.B. Liu; Investigation of explosive welding through whole process modeling using a density adaptive SPH method, Journal of Manufacturing Processes, 2018, 35(35): 169-189
5. D. Feng*; I.Neuweiler; U.Nackenhorst; A spatially stabilized TDG based finite element framework for modeling biofilm growth with a multi-dimensional multi-species continuum biofilm model, Computational Mechanics, 2017, 59(6): 1049-1070.
4. H. Rath; D. Feng; I. Neuweiler; N.S. Stumpp; U. Nackenhorst; M. Stiesch; Biofilm formation by the oral pioneer colonizer Streptococcus gordonii: an experimental and numerical study, FEMS Microbiology Ecology, 2017, 93(3).
3. M.B. Liu; Z.L. Zhang; D. Feng; A density-adaptive SPH method with kernel gradient correction for modeling explosive welding, Computational Mechanics, 2017, 3(60): 513-529
国厂偷拍在线播放2. G.Y. Wang; G.R. Liu; Q. Peng; Su. De; D. Feng; M.B. Liu; A 3D smoothed particle hydrodynamics method with reactive flow model for the simulation of ANFO, Propellants Explosives Pyrotechnics, 2015, 4(40): 566-575.
1. D. Feng; M.B. Liu,; H.Q. Li; G.R. Liu; Smoothed particle hydrodynamics modeling of linear shaped charge with jet formation and penetration effects, Computers & Fluids, 2013, (86): 77-85.
典籍章节
1. D. Feng, H. Rath, I. Neuweiler, N. Stumpp, U. Nackenhorst; A deeper insight of a multi-dimensional continuous biofilm growth model: experimental observation and parameter studies. Biomedical Technology: Modeling, Experiments and Simulation, Lecture Notes in Applied and Computational Mechanics, Springer, 2018, 257-272.
会议全文
3. D. Feng, I. Neuweiler, U. Nackenhorst; Numerical simulation of 2D multi-species bacterial biofilm growth using the combined TDG-FIC finite element method. 6th International Conference on Computational Bioengineering, ICCB 2015; Barcelona, Spain.
2. M. Liu, D. Feng, Z. Guo; Recent developments of SPH in modeling explosion and impact problems. 3rd International Conference on Particle-Based Methods. Fundamentals and Applications, Particles 2013; Stuttgart, Germany.
1. 冯殿垒, 刘谋斌(2012); 聚能装药线性射流酿成的SPH数值模拟. 2012颗粒材料估量力学会议, CMGM-2012; 张家界, 中国.
课题构成员(环境水能源课题组;Environmental Hydraulics Group)
2022级磋商生
博士磋商生
姓名:楚亚杰
磋商标的:孔隙圭表微生物指引碳酸钙矿化经过磋商
个东谈主景仰:登山,慢跑
硕士磋商生
姓名:付体涵
磋商标的:基于配景网格技巧的ISPH估量递次
个东谈主先容:付出奏第章,体壮展光泽。涵妙手中龙,材干贯长虹。
2023级磋商生
博士磋商生
姓名:甘雨
磋商标的:多圭表多场耦合当场SPH递次欺诈磋商
个东谈主先容:试真金不怕火的极端是花开万里
硕士磋商生
姓名:王佳文
磋商标的:黎曼SPH递次在流-固-土耦合问题中的欺诈
趣味景仰:跑步、羽毛球
姓名:邵荟草
磋商标的:内嵌物理学问神经集聚在微生物指引碳酸钙千里淀经过中的欺诈
个东谈主先容:东谈主生海海,以无厚入有间。
2024级磋商生
博士磋商生
姓名:易灿
磋商标的:UL-TLSPH框架卑鄙-固-土耦合经过模拟磋商
个东谈主先容:苍山多支路,莫忘少年心
姓名:王玲翔
磋商标的:数据模拟达西圭表下MICP经过
个东谈主先容:颠仆又爬起,山峰静暗暗
课题组部分红员合影(团队考究东谈主在拍照) 课题组2022年10月合影(岩土楼门前)
课题组2023年9月合影(岩土楼门前) 课题组2023年9月合影(岩土楼内)
2023年9月成都IAEG会议 课题组2024年9月合影
招生信息
每年招收博士、硕士磋商生几许名,接待对环境水能源问题、爆炸冲击问题、生物岩土工程、估量流膂力学、流固耦协力学、高性能估量平台建造感趣味的同学加入团队!“环境水能源-最cool课题组”虚席以待,笃定请邮件计议。