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Tai Jin
Tai Jin
Associate Professor in Zhejiang University
Dirección de correo verificada de zju.edu.cn - Página principal
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Large eddy simulations of spray combustion instability in an aero-engine combustor at elevated temperature and pressure
Y Cheng, T Jin, K Luo, Z Li, H Wang, J Fan
Aerospace Science and Technology 108, 106329, 2021
432021
DNS analysis of a three-dimensional supersonic turbulent lifted jet flame
K Luo, T Jin, S Lu, J Fan
Fuel 108, 691-698, 2013
362013
DNS investigation on flame structure and scalar dissipation of a supersonic lifted hydrogen jet flame in heated coflow
T Jin, K Luo, S Lu, J Fan
International journal of hydrogen energy 38 (23), 9886-9896, 2013
322013
Analysis and development of novel data-driven drag models based on direct numerical simulations of fluidized beds
K Luo, D Wang, T Jin, S Wang, Z Wang, J Tan, J Fan
Chemical Engineering Science 231, 116245, 2021
312021
Direct numerical simulation of turbulence modulation by particles in compressible isotropic turbulence
Q Dai, K Luo, T Jin, J Fan
Journal of Fluid Mechanics 832, 438-482, 2017
302017
Simulations of cellular detonation interaction with turbulent flows
T Jin, K Luo, Q Dai, J Fan
AIAA Journal 54 (2), 419-433, 2016
292016
Direct numerical simulation of particle dispersion in a three-dimensional spatially developing compressible mixing layer
Q Dai, T Jin, K Luo, J Fan
Physics of Fluids 30 (11), 2018
282018
Interaction of a planar reacting shock wave with an isotropic turbulent vorticity field
C Huete, T Jin, D Martínez-Ruiz, K Luo
Physical Review E 96 (5), 053104, 2017
282017
Ignition dynamics of DME/methane-air reactive mixing layer under reactivity controlled compression ignition conditions: Effects of cool flames
T Jin, Y Wu, X Wang, KH Luo, T Lu, K Luo, J Fan
Applied energy 249, 343-354, 2019
262019
Eulerian–Lagrangian direct numerical simulation of preferential accumulation of inertial particles in a compressible turbulent boundary layer
W Xiao, T Jin, K Luo, Q Dai, J Fan
Journal of Fluid Mechanics 903, A19, 2020
252020
Direct numerical simulation on auto-ignition characteristics of turbulent supercritical hydrothermal flames
C Song, K Luo, T Jin, H Wang, J Fan
Combustion and Flame 200, 354-364, 2019
242019
Direct numerical simulation on supersonic turbulent reacting and non-reacting spray jet in heated coflow
T Jin, K Luo, Q Dai, J Fan
Fuel 164, 267-276, 2016
232016
Experimental study of the effect of outlet boundary on combustion instabilities in premixed swirling flames
Y Yang, G Wang, Y Fang, T Jin, J Li
Physics of Fluids 33 (2), 2021
222021
Dynamics of triple-flames in ignition of turbulent dual fuel mixture: A direct numerical simulation study
T Jin, KH Luo, X Wang, K Luo, J Fan
Proceedings of the Combustion Institute 37 (4), 4625-4633, 2019
222019
Pressure effects on flame structures and chemical pathways for lean premixed turbulent H2/air flames: Three-dimensional DNS studies
X Wang, T Jin, Y Xie, KH Luo
Fuel 215, 320-329, 2018
222018
High-fidelity numerical analysis of non-premixed hydrothermal flames: Flame structure and stabilization mechanism
C Song, T Jin, H Wang, Z Gao, K Luo, J Fan
Fuel 259, 116162, 2020
212020
Studies on shock interactions with moving cylinders using immersed boundary method
K Luo, Y Luo, T Jin, J Fan
Physical Review Fluids 2 (6), 064302, 2017
182017
Direct numerical simulation of a three-dimensional spatially evolving compressible mixing layer laden with particles. I. Turbulent structures and asymmetric properties
Q Dai, T Jin, K Luo, J Fan
Physics of Fluids 31 (8), 2019
172019
DMD analysis for velocity fields of a laminar premixed flame with external acoustic excitation
Y Yang, Y Fang, L Zhong, Y Xia, T Jin, J Li, G Wang
Experimental Thermal and Fluid Science 123, 110318, 2021
152021
Investigation of supersonic turbulent flows over a sphere by fully resolved direct numerical simulation
C Mao, T Jin, K Luo, J Fan
Physics of Fluids 31 (5), 2019
152019
El sistema no puede realizar la operación en estos momentos. Inténtalo de nuevo más tarde.
Artículos 1–20