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most citedThe multifractal nature of turbulent energy dissipation

874 citations · 874 across the 4 of their papers we have counts for

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physics.flu-dyn2026

Thermal convection in 1, 2, 3 and 4 dimensions

Ambrish Pandey, Harshit Tiwari, Katepalli R. Sreenivasan

The authors use direct numerical simulations to investigate how the dimensionality of thermal convection (from 1D to 4D) influences flow characteristics, focusing on the time neede…

physics.flu-dyn2026874 cited

The multifractal nature of turbulent energy dissipation

Charles Meneveau, K. R. Sreenivasan

The intermittency of the rate of turbulent energy dissipation is investigated experimentally, with special emphasis on its scale-similar facets. This is done using a general f…

physics.flu-dyn2026

The Asymptotic State of Decaying Turbulence

Akash Rodhiya, Katepalli R. Sreenivasan

The long-time evolution of decaying homogeneous turbulence is a fundamental building block of the subject. We investigate the problem by using a comprehensive suite of Direct Numer…

physics.flu-dyn2026

Superstatistical Approach to Turbulent Circulation Fluctuations

Henrique S. Lima, Rodrigo M. Pereira, Luca Moriconi +2

Recent investigations of turbulent circulation fluctuations have uncovered substantial insights into the statistical organization of flow structures and revealed unexpected geometr…

physics.flu-dyn2025

On how walls shape dissipation intermittency

Peng-Yu Duan, Xi Chen, Katepalli R. Sreenivasan

Intermittency of energy dissipation has long been studied via high-order moments in homogeneous and isotropic turbulence, but not much where the boundary effects are explicitly inc…

physics.flu-dyn2025

Transient and steady convection in two dimensions

Ambrish Pandey, Katepalli R. Sreenivasan

We simulate thermal convection in a two-dimensional square box using the no-slip condition on all boundaries, and isothermal bottom and top walls and adiabatic sidewalls. We choose…