Flow-blurring atomization is an innovative twin-fluid atomization approach that has demonstrated superior effectiveness in producing fine sprays compared to traditional airblast atomization methods. In flow-blurring atomizers, the high-speed gas flow is directed perpendicular to the liquid jet. Under specific geometric and physical conditions, the gas penetrates back into the liquid nozzle, resulting in a highly unsteady bubbly two-phase mixing zone. Despite the remarkable atomization performance of flow-blurring atomizers, the underlying dynamics of the two-phase flows and breakup mechanisms within the liquid nozzle remain poorly understood, primarily due to the challenges in experimental measurements of flow details. In this study, detail...
The present study investigates the influence of system pressure, gas velocity, and annular gas gap w...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76467/1/AIAA-1988-237-802.pd
The spatial distribution of spray plays a key role in liquid fuel combustion, which dictates the loc...
Twin fluid atomizers allow for two different spray forming modes, flow focusing and flow blurring, d...
The twin-fluid atomizer employing the cross-stream mixing arrangement for air and liquid prior to th...
Present study investigates the effect of geometric configuration of flow blurring atomizer on workin...
The present work comparably examines four different twin-fluid atomizers operated under the same op-...
dissertationAtomization is chaos. The breakup of liquid structures by a gas encompasses such a wide ...
Highly-resolved numerical simulations have been performed for a coaxial, twin-fluid nozzle, which is...
Present study investigates the effect of geometric configuration of flow blurring atomizer on workin...
A comprehensive study on Flow-Focusing/Flow-Blurring (FF/FB) atomizers is presented in this study. A...
Airblast atomizers are especially useful and commonplace in liquid fuel combustion applications. How...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76338/1/AIAA-10198-831.pd
The spatial distribution of spray plays a key role in liquid fuel combustion, which dictates the loc...
AbstractA twin-fluid atomizer was designed and developed for fuel atomization. The droplet character...
The present study investigates the influence of system pressure, gas velocity, and annular gas gap w...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76467/1/AIAA-1988-237-802.pd
The spatial distribution of spray plays a key role in liquid fuel combustion, which dictates the loc...
Twin fluid atomizers allow for two different spray forming modes, flow focusing and flow blurring, d...
The twin-fluid atomizer employing the cross-stream mixing arrangement for air and liquid prior to th...
Present study investigates the effect of geometric configuration of flow blurring atomizer on workin...
The present work comparably examines four different twin-fluid atomizers operated under the same op-...
dissertationAtomization is chaos. The breakup of liquid structures by a gas encompasses such a wide ...
Highly-resolved numerical simulations have been performed for a coaxial, twin-fluid nozzle, which is...
Present study investigates the effect of geometric configuration of flow blurring atomizer on workin...
A comprehensive study on Flow-Focusing/Flow-Blurring (FF/FB) atomizers is presented in this study. A...
Airblast atomizers are especially useful and commonplace in liquid fuel combustion applications. How...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76338/1/AIAA-10198-831.pd
The spatial distribution of spray plays a key role in liquid fuel combustion, which dictates the loc...
AbstractA twin-fluid atomizer was designed and developed for fuel atomization. The droplet character...
The present study investigates the influence of system pressure, gas velocity, and annular gas gap w...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76467/1/AIAA-1988-237-802.pd
The spatial distribution of spray plays a key role in liquid fuel combustion, which dictates the loc...