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physics.flu-dyn2026

Gappy Reconstruction of Bubbly Flows by Guided Diffusion Models

Hridey Narula, Tianyi Li, Michele Buzzicotti +2

Experiments in multiphase flows are often limited in their ability to simultaneously obtain velocity measurements in different phases. At the same time, flow reconstruction from ph…

physics.flu-dyn20261 cited

Scale-by-scale energy transfers in bubbly flows

Hridey Narula, Vikash Pandey, Dhrubaditya Mitra +1

Buoyancy-driven bubbly flows naturally have spatially-dependent density fields, which allow for multiple definitions of the scale-dependent (or filtered) energy. A priori, it is no…

physics.flu-dyn2026

Flocking and mesoscale turbulence in three-dimensional active fluids

Prasad Perlekar

We numerically study the three-dimensional turbulence in a minimal model of an active fluid--the Toner-Tu-Swift-Hohenburg equation. For small activity, we observe bacterial turbule…

physics.flu-dyn2026

Bridging Filtering and Point-Splitting Approaches for Variable-Density Flows

Hridey Narula, Prasad Perlekar

Energy transfer in turbulent flows is typically described either through correlation functions, via the Kármán-Howarth-Monin relation, or through a scale-by-scale budget of the f…

physics.flu-dyn2024

Intermittency in the not-so-smooth elastic turbulence

Rahul K. Singh, Prasad Perlekar, Dhrubaditya Mitra +1

Elastic turbulence is the chaotic fluid motion resulting from elastic instabilities due to the addition of polymers in small concentrations at very small Reynolds ($\mbox{Re}$) num…