In this thesis, I have worked on direct numerical simulations to elucidate the physics of vortex- surface interaction in turbulent multiphase jets for industrial mixing applications. The thesis topic focuses on understanding physics of interface breakup and coalescence, which exemplify situations wherein the interface undergoes topological transitions, e.g. filament breakup into drops, and merg- ing of drops/bubbles due to coalescence, accounting for surfactant-induced effects. These transitions involve the development of singularities where interfacial distances vanish and velocity fields diverge, requiring highly-specialised numerical techniques.Open Acces
In this thesis, the interactions between a deformable interface and turbu- lence have been investiga...
This paper is associated with a poster winner of a 2019 American Physical Society's Division of Flui...
We study the effect of insoluble surfactants on the spatio-temporal evolution of turbulent jets. We ...
Multi-fluid flows are omnipresent in our lives, from the fabrication of integrated circuit component...
The dynamics of surfactant-laden droplets are investigated in this thesis using Direct Numerical Sim...
A diffuse interface model for surfactants in multi-phase flow with three or more fluids is derived. ...
A numerical methodology is presented for simulating 3D multiphase flows through complex geometries o...
Drop formation in co-flowing fluids and drops rising in a tube are important in applications such as...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
The present thesis introduces a novel numerical methodology for multiscale flows with application to...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
International audienceEditorial The following issue of Computers and Fluids has been compiled to hig...
Fluid extraction is a typical chemical process where two types of fluids are mixed together. The hig...
Problems involving multiphase flows require a physical understanding of how the phenomenadevelop and...
In this thesis, the interactions between a deformable interface and turbu- lence have been investiga...
This paper is associated with a poster winner of a 2019 American Physical Society's Division of Flui...
We study the effect of insoluble surfactants on the spatio-temporal evolution of turbulent jets. We ...
Multi-fluid flows are omnipresent in our lives, from the fabrication of integrated circuit component...
The dynamics of surfactant-laden droplets are investigated in this thesis using Direct Numerical Sim...
A diffuse interface model for surfactants in multi-phase flow with three or more fluids is derived. ...
A numerical methodology is presented for simulating 3D multiphase flows through complex geometries o...
Drop formation in co-flowing fluids and drops rising in a tube are important in applications such as...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
The present thesis introduces a novel numerical methodology for multiscale flows with application to...
Fluid-fluid interfaces are incredibly complex physical structures. Imbued with an excess energy—or i...
International audienceEditorial The following issue of Computers and Fluids has been compiled to hig...
Fluid extraction is a typical chemical process where two types of fluids are mixed together. The hig...
Problems involving multiphase flows require a physical understanding of how the phenomenadevelop and...
In this thesis, the interactions between a deformable interface and turbu- lence have been investiga...
This paper is associated with a poster winner of a 2019 American Physical Society's Division of Flui...
We study the effect of insoluble surfactants on the spatio-temporal evolution of turbulent jets. We ...