Tianfeng Lu

Tianfeng Lu

University of Connecticut

H-index: 56

North America-United States

About Tianfeng Lu

Tianfeng Lu, With an exceptional h-index of 56 and a recent h-index of 42 (since 2020), a distinguished researcher at University of Connecticut, specializes in the field of Combustion.

His recent articles reflect a diverse array of research interests and contributions to the field:

Modeling of high-speed, methane–air, turbulent combustion, Part I: One-dimensional turbulence modeling with comparison to DNS

Embedded direct numerical simulation of ignition kernel evolution and flame initiation in dual-fuel spray assisted combustion

Modeling of high-speed, methane-air, turbulent combustion, Part II: Reduced methane oxidation chemistry

PELE-Transforming Combustion Science and Technology with Exascale Simulations

A direct numerical simulation study of the dilution tolerance of propane combustion under spark-ignition engine conditions

Spectral element modeling of plasma-assisted ignition using a phenomenological model

Effects of non-thermal termolecular reactions on detonation development in hydrogen (H2)/methane (CH4)-air mixtures

Transforming Combustion Science and Technology with Exascale Simulations.

Tianfeng Lu Information

University

Position

___

Citations(all)

13636

Citations(since 2020)

6681

Cited By

10004

hIndex(all)

56

hIndex(since 2020)

42

i10Index(all)

115

i10Index(since 2020)

107

Email

University Profile Page

Google Scholar

Tianfeng Lu Skills & Research Interests

Combustion

Top articles of Tianfeng Lu

Modeling of high-speed, methane–air, turbulent combustion, Part I: One-dimensional turbulence modeling with comparison to DNS

Combustion and Flame

2024/5/1

Embedded direct numerical simulation of ignition kernel evolution and flame initiation in dual-fuel spray assisted combustion

Combustion and Flame

2024/1/1

Modeling of high-speed, methane-air, turbulent combustion, Part II: Reduced methane oxidation chemistry

Combustion and Flame

2024/5/1

PELE-Transforming Combustion Science and Technology with Exascale Simulations

2023/2/14

A direct numerical simulation study of the dilution tolerance of propane combustion under spark-ignition engine conditions

Combustion and Flame

2023/1/1

Spectral element modeling of plasma-assisted ignition using a phenomenological model

Bulletin of the American Physical Society

2022/11/20

Effects of non-thermal termolecular reactions on detonation development in hydrogen (H2)/methane (CH4)-air mixtures

Combustion and Flame

2022/10/1

Transforming Combustion Science and Technology with Exascale Simulations.

2022/4/1

Tianfeng Lu
Tianfeng Lu

H-Index: 41

An Analytical Sensitivity Analysis Method for Turbulent Reacting Flows

2022

Tianfeng Lu
Tianfeng Lu

H-Index: 41

Xinyu Zhao
Xinyu Zhao

H-Index: 3

Analysis of auto-ignition chemistry in aeroderivative premixers at engine conditions

Journal of Engineering for Gas Turbines and Power

2021/11/1

On the flame stabilization of turbulent lifted hydrogen jet flames in heated coflows near the autoignition limit: A comparative DNS study

Combustion and Flame

2021/11/1

Simulations of multi-mode combustion regimes realizable in a gasoline direct injection engine

Journal of Energy Resources Technology

2021/11/1

Numerical analysis of fuel effects on advanced compression ignition using a cooperative fuel research engine computational fluid dynamics model

Journal of Energy Resources Technology

2021/10/1

Code Structure for the Universal Reduced Kinetics Model

2021/8/13

Chemical Kinetics

2023/8/28

A spectral method for fast sensitivity analysis: Perfectly stirred reactors

Combustion and Flame

2021/7/1

Tianfeng Lu
Tianfeng Lu

H-Index: 41

A second-order dynamic adaptive hybrid scheme for time-integration of stiff chemistry

Combustion and Flame

2021/6/1

Effects of non-thermal termolecular chemistry on detonation development in hydrogen (H2)/methane (CH4)-air mixtures

2021/5/24

Three-dimensional direct numerical simulations of the stabilization of turbulent lifted hydrogen jet flames under various coflow air temperature

2019/6/9

Numerical investigation of fuel property effects on mixed-mode combustion in a spark-ignition engine

Journal of Energy Resources Technology

2021/4/1

See List of Professors in Tianfeng Lu University(University of Connecticut)

Co-Authors

academic-engine