关注
Ping Yi
Ping Yi
IFP Energies
在 ifpen.fr 的电子邮件经过验证
标题
引用次数
引用次数
年份
A comparison between low-and high-pressure injection dual-fuel modes of diesel-pilot-ignition ammonia combustion engines
T Li, X Zhou, N Wang, X Wang, R Chen, S Li, P Yi
Journal of the Energy Institute 102, 362-373, 2022
962022
A multicomponent real-fluid fully compressible four-equation model for two-phase flow with phase change
P Yi, S Yang, C Habchi, R Lugo
Physics of Fluids 31 (2), 2019
692019
Development of a quasi-dimensional vaporization model for multi-component fuels focusing on forced convection and high temperature conditions
P Yi, W Long, M Jia, J Tian, B Li
International Journal of Heat and Mass Transfer 97, 130-145, 2016
602016
An efficient liquid film vaporization model for multi-component fuels considering thermal and mass diffusions
Y Zhang, M Jia, P Yi, H Liu, M Xie
Applied Thermal Engineering 112, 534-548, 2017
552017
Real-fluid injection modeling and LES simulation of the ECN Spray A injector using a fully compressible two-phase flow approach
S Yang, P Yi, C Habchi
International Journal of Multiphase Flow 122, 103145, 2020
542020
An enhanced multi-component vaporization model for high temperature and pressure conditions
W Long, P Yi, M Jia, L Feng, J Cui
International Journal of Heat and Mass Transfer 90, 857-871, 2015
382015
An investigation on near-field and far-field characteristics of superheated ammonia spray
S Li, T Li, N Wang, X Zhou, R Chen, P Yi
Fuel 324, 124683, 2022
362022
Transcritical evaporation and micro-explosion of ethanol-diesel droplets under diesel engine-like conditions
P Yi, T Li, Y Fu, S Xie
Fuel 284, 118892, 2021
352021
Development of an improved hybrid multi-component vaporization model for realistic multi-component fuels
P Yi, W Long, M Jia, L Feng, J Tian
International Journal of Heat and Mass Transfer 77, 173-184, 2014
302014
A molecular dynamics study of binary-component n-alkane fuel vaporization characteristics at sub/supercritical nitrogen environments
Y Zhang, M Jia, P Yi, Y Chang, Z He, Q Wang
Proceedings of the Combustion Institute 38 (2), 3303-3312, 2021
242021
On the fuel injection rate profile as boundary conditions for diesel spray combustion simulations
X Zhou, T Li, P Yi, Z Zhang, N Wang, Y Wei
Fuel 276, 118026, 2020
232020
Evaporation and condensation characteristics of n-heptane and multi-component diesel droplets under typical spray relevant conditions
HE Ruitian, YI Ping, LI Tie
International Journal of Heat and Mass Transfer 163, 120162, 2020
192020
Investigation of evaporation and auto-ignition of isolated lubricating oil droplets in natural gas engine in-cylinder conditions
P Yi, W Long, L Feng, L Chen, J Cui, W Gong
Fuel 235, 1172-1183, 2019
182019
An experimental and numerical study of the evaporation and pyrolysis characteristics of lubricating oil droplets in the natural gas engine conditions
P Yi, W Long, L Feng, W Wang, C Liu
International Journal of Heat and Mass Transfer 103, 646-660, 2016
182016
Experimental and numerical investigation of low sulfur heavy fuel oil spray characteristics under high temperature and pressure conditions
P Yi, T Li, Y Wei, X Zhou
Fuel 286, 119327, 2021
172021
Evaporation of pure and blended droplets of diesel and alcohols (C2–C9) under diesel engine conditions
P Yi, M Jia, W Long, L Qiao, T Yang, L Feng
Numerical Heat Transfer, Part A: Applications 71 (3), 311-326, 2017
172017
Evaluations of the KH-RT breakup and dynamic structure SGS models for evaporating sprays under diesel engine-like conditions
R He, P Yi, T Li, X Zhou, Y Gu
Atomization and Sprays 30 (3), 2020
152020
Construction of a decoupling physical–chemical surrogate (DPCS) for practical diesel fuel
Y Zhang, M Jia, P Wang, Y Chang, P Yi, H Liu, Z He
Applied Thermal Engineering 149, 536-547, 2019
152019
Modeling of diesel spray tip penetration during start-of-injection transients
X Zhou, T Li, P Yi
International Journal of Engine Research 22 (9), 3013-3029, 2021
122021
Phase transition of n-heptane/ethanol blends from subcritical to supercritical conditions
R He, P Yi, T Li, Y Zhang, R Chen
International Journal of Heat and Mass Transfer 185, 122405, 2022
112022
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