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Featured researches published by Fujia Wu.


Physical Review E | 2013

Scaling of turbulent flame speed for expanding flames with Markstein diffusion considerations

Swetaprovo Chaudhuri; Fujia Wu; Chung K. Law

In this paper we clarify the role of Markstein diffusivity, which is the product of the planar laminar flame speed and the Markstein length, on the turbulent flame speed and its scaling, based on experimental measurements on constant-pressure expanding turbulent flames. Turbulent flame propagation data are presented for premixed flames of mixtures of hydrogen, methane, ethylene, n-butane, and dimethyl ether with air, in near-isotropic turbulence in a dual-chamber, fan-stirred vessel. For each individual fuel-air mixture presented in this work and the recently published iso-octane data from Leeds, normalized turbulent flame speed data of individual fuel-air mixtures approximately follow a Re_{T,f}^{0.5} scaling, for which the average radius is the length scale and thermal diffusivity is the transport property of the turbulence Reynolds number. At a given Re_{T,f}^{}, it is experimentally observed that the normalized turbulent flame speed decreases with increasing Markstein number, which could be explained by considering Markstein diffusivity as the leading dissipation mechanism for the large wave number flame surface fluctuations. Consequently, by replacing thermal diffusivity with the Markstein diffusivity in the turbulence Reynolds number definition above, it is found that normalized turbulent flame speeds could be scaled by Re_{T,M}^{0.5} irrespective of the fuel, equivalence ratio, pressure, and turbulence intensity for positive Markstein number flames.


Combustion and Flame | 2013

An experimental and mechanistic study on the laminar flame speed, Markstein length and flame chemistry of the butanol isomers

Fujia Wu; Chung K. Law


Combustion and Flame | 2012

Laminar flame speeds of cyclohexane and mono-alkylated cyclohexanes at elevated pressures

Fujia Wu; Andrew P. Kelley; Chung K. Law


Physical Review Letters | 2012

Flame speed and self-similar propagation of expanding turbulent premixed flames.

Swetaprovo Chaudhuri; Fujia Wu; Delin Zhu; Chung K. Law


International Journal of Hydrogen Energy | 2011

Measurement and correlation of laminar flame speeds of CO and C2 hydrocarbons with hydrogen addition at atmospheric and elevated pressures

Fujia Wu; Andrew P. Kelley; Chenglong Tang; Delin Zhu; Chung K. Law


Combustion and Flame | 2016

Morphology and self-acceleration of expanding laminar flames with flame-front cellular instabilities

Sheng Yang; Abhishek Saha; Fujia Wu; Chung K. Law


Proceedings of the Combustion Institute | 2015

Propagation speeds of expanding turbulent flames of C4 to C8 n-alkanes at elevated pressures: Experimental determination, fuel similarity, and stretch-affected local extinction

Fujia Wu; Abhishek Saha; Swetaprovo Chaudhuri; Chung K. Law


Physical Review Letters | 2014

Facilitated ignition in turbulence through differential diffusion.

Fujia Wu; Abhishek Saha; Swetaprovo Chaudhuri; Chung K. Law


Proceedings of the Combustion Institute | 2017

Laminar flame speeds and kinetic modeling of H 2 /O 2 /diluent mixtures at sub-atmospheric and elevated pressures

Sheng Yang; Xueliang Yang; Fujia Wu; Yiguang Ju; Chung K. Law


Combustion and Flame | 2018

Extreme role of preferential diffusion in turbulent flame propagation

Sheng Yang; Abhishek Saha; Wenkai Liang; Fujia Wu; Chung K. Law

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