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Dianlei Feng
Dianlei Feng
在 tongji.edu.cn 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
A density-adaptive SPH method with kernel gradient correction for modeling explosive welding
MB Liu, ZL Zhang, DL Feng
Computational Mechanics 60, 513-529, 2017
942017
Smoothed particle hydrodynamics modeling of linear shaped charge with jet formation and penetration effects
DL Feng, MB Liu, HQ Li, GR Liu
Computers & Fluids 86, 77-85, 2013
682013
Investigation of explosive welding through whole process modeling using a density adaptive SPH method
ZL Zhang, DL Feng, MB Liu
Journal of Manufacturing Processes 35, 169-189, 2018
572018
Biofilm formation by the oral pioneer colonizer Streptococcus gordonii: an experimental and numerical study
H Rath, D Feng, I Neuweiler, NS Stumpp, U Nackenhorst, M Stiesch
FEMS microbiology ecology 93 (3), fix010, 2017
342017
Predicting the damage on a target plate produced by hypervelocity impact using a decoupled finite particle method
ZL Zhang, DL Feng, T Ma, MB Liu
Engineering Analysis with Boundary Elements 98, 110-125, 2019
262019
Numerical study on high velocity impact welding using a modified SPH method
ZL Zhang, T Ma, MB Liu, D Feng
International Journal of Computational Methods 16 (02), 1846001, 2019
222019
GPU-accelerated smoothed particle hydrodynamics modeling of jet formation and penetration capability of shaped charges
JY Chen, DL Feng, SX Deng, C Peng, FS Lien
Journal of Fluids and Structures 99, 103171, 2020
192020
A spatially stabilized TDG based finite element framework for modeling biofilm growth with a multi-dimensional multi-species continuum biofilm model
D Feng, I Neuweiler, U Nackenhorst
Computational Mechanics 59, 1049-1070, 2017
182017
A time-space flux-corrected transport finite element formulation for solving multi-dimensional advection-diffusion-reaction equations
D Feng, I Neuweiler, U Nackenhorst, T Wick
Journal of Computational Physics 396, 31-53, 2019
142019
A comparative study of using two numerical strategies to simulate the biochemical processes in microbially induced calcite precipitation
D Feng, X Wang, U Nackenhorst, X Zhang, P Pan
Journal of Rock Mechanics and Geotechnical Engineering 14 (2), 592-602, 2022
132022
A 3D smoothed particle hydrodynamics method with reactive flow model for the simulation of ANFO
G Wang, G Liu, Q Peng, S De, D Feng, M Liu
Propellants, Explosives, Pyrotechnics 40 (4), 566-575, 2015
112015
Numerical modeling of the damage mechanism of concrete-soil multilayered medium subjected to underground explosion using the GPU-accelerated SPH
JY Chen, DL Feng, JH Liu, SY Yu, Y Lu
Engineering Analysis with Boundary Elements 151, 265-274, 2023
102023
Recent developments of SPH in modeling explosion and impact problems
M Liu, DL Feng, Z Guo
3rd International Conference on Particle-Based Methods. Fundamentals and …, 2013
102013
Numerical modeling of shaped charge jet penetration into ceramic–metal double-layered medium using smoothed particle hydrodynamics
JY Chen, DL Feng, QY Sun, C Peng, YH Zhu, SY Yu
International Journal of Impact Engineering 175, 104526, 2023
92023
Numerical investigation on the role of check dams with bottom outlets in debris flow mobility by 2D SPH
H Shi, Y Huang, D Feng
Scientific Reports 12 (1), 20456, 2022
72022
Modeling of Symbiotic Bacterial Biofilm Growth with an Example of the Streptococcus–Veillonella sp. System
D Feng, I Neuweiler, R Nogueira, U Nackenhorst
Bulletin of Mathematical Biology 83, 1-36, 2021
72021
A modified SPH method for modeling explosion and impact problems
M Liu, D Feng, Z Guo
APCOM & ISCM, 2013
72013
Numerical modeling of hypervelocity impacts on carbon fiber reinforced plastics using a GPU-accelerated SPH model
Y Lu, J Chen, D Feng, L Wang, M Liu
Computational Mechanics 72 (5), 907-926, 2023
62023
Numerical modelling of interaction between aluminium structure and explosion in soil
JY Chen, DL Feng, FS Lien, E Yee, SX Deng, F Gao, C Peng
Applied Mathematical Modelling 99, 760-784, 2021
62021
Numerical Simulation of Detonation and Brisance Performance of Aluminized HMX Using Density‐Adaptive SPH
JY Chen, DL Feng, GY Wang, F Gao, C Peng
Propellants, Explosives, Pyrotechnics 46 (12), 1800-1814, 2021
42021
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