collaborators

5 papers

physics.flu-dyn2023

Numerical study of natural oscillations of supported drops with free and pinned contact lines

Jordan Sakakeeny, Yue Ling

In the present study, the axisymmetric natural oscillations of a liquid drop supported by a flat surface is investigated by direct numerical simulation. The liquid-gas interface is…

physics.flu-dyn2023

Impact of inlet gas turbulence on the formation, development and breakup of interfacial waves in a two-phase mixing layer

Delin Jiang, Yue Ling

Understanding the development and breakup of interfacial waves in a two-phase mixing layer between the gas and liquid streams is paramount to atomization. Due to the velocity diffe…

physics.flu-dyn2023

A model to predict the oscillation frequency for drops pinned on a vertical planar surface

Jordan Sakakeeny, C. Deshpande, S. Deb +2

Accurate prediction of the natural frequency for the lateral oscillation of a liquid drop pinned on a vertical planar surface is important to many drop applications. The natural os…

physics.flu-dyn2023

Direct numerical simulation of compressible interfacial multiphase flows using a mass-momentum-energy consistent volume-of-fluid method

Bo Zhang, Bradley Boyd, Yue Ling

Compressible interfacial multiphase flows (CIMF) are essential to different applications, such as liquid fuel injection in supersonic propulsion systems. Since high-level details i…

physics.flu-dyn2023

A detailed numerical investigation of two-phase flows inside a planar flow-blurring atomizer

Yue Ling, Lulin Jiang

Flow-blurring atomization is an innovative twin-fluid atomization approach that has demonstrated superior effectiveness in producing fine sprays compared to traditional airblast at…