activity
20242026
collaborators

6 papers

physics.flu-dyn2026

Premixed flames in a stagnation point flow under Darcy's law

Prabakaran Rajamanickam, Joel Daou

Premixed flames in stagnation point flows are traditionally described using Navier--Stokes equations where inertia and density variations play an important part in determining the…

physics.flu-dyn2026

Hydrodynamic theory of premixed flames under Darcy's law: Interfacial conditions and effects of nonunity Lewis number and heat loss

Prabakaran Rajamanickam, Joel Daou

Premixed flames propagating in porous media or Hele-Shaw channels are governed by Darcy's law, which accounts for the strong frictional forces imposed by the solid matrix or confin…

physics.flu-dyn2026

Flame dynamics and Markstein numbers in Hele-Shaw cells and porous media under Darcy's law

Prabakaran Rajamanickam, Joel Daou

The propagation of premixed flames in narrow Hele-Shaw cells and permeable porous media is governed by Darcy's law, leading to hydrodynamic behaviour distinct from conventional fla…

physics.flu-dyn2025

Premixed flame quenching distance between cold walls: effects of flow and Lewis number

Aiden Kelly, Rémi Daou, Joel Daou +2

This study investigates the critical conditions for flame propagation in channels with cold walls. We analyze the impact of the Lewis number and flow amplitude () on the minimum…

physics.flu-dyn2025

Hydrodynamic instabilities of propagating interfaces under Darcy's law

Joel Daou, Prabakaran Rajamanickam

The hydrodynamic instabilities of propagating interfaces in Hele-Shaw channels or porous media under the influence of an imposed flow and gravitational acceleration are investigate…

physics.flu-dyn2024

Hydrodynamic theory of premixed flames under Darcy's law

Prabakaran Rajamanickam, Joel Daou

This paper investigates the theoretical implications of applying Darcy's law to premixed flames, a topic of growing interest in research on flame propagation in porous media and co…