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physics.flu-dyn2026

Statistical orientation and distribution of columnar ice crystals in turbulent flows

A. Pumir, M. Z. Sheikh, K. Gustavsson +3

We study the motion of columnar ice crystals that form in clouds over a range of low temperature. Our focus here is on elongated ice crystals, which are smaller than the size of th…

physics.flu-dyn2026

Ultimate regimes in horizontal and internally heated convection

Olga Shishkina, Detlef Lohse

We derive asymptotic models for the ultimate regimes in horizontal convection (HC) and pure internally heated convection (IHC), in analogy with our recent (2024) extension of the u…

physics.flu-dyn20261 cited

Holes in Sheets: Double-Threshold Rupture of Draining Liquid Films

Ayush K. Dixit, Chunheng Zhao, Stéphane Zaleski +2

Classical rupture is attributed to molecular (van der Waals) forces acting at nanometric thicknesses. Nonetheless, micron-thick liquid sheets routinely perforate far above the scal…

physics.flu-dyn20261 cited

Transition to the ultimate regime of turbulent convection in stratified inclined duct flow

Rundong Zhou, Adrien Lefauve, Roberto Verzicco +1

The stratified inclined duct (SID) flow provides a canonical model for sustained, buoyancy-driven exchange between two reservoirs of different density, and emerges as a new paradig…

physics.flu-dyn2026

Effects of correlated collisions and intermittency on the growth of lucky droplets

Tobias Bätge, Johannes Zierenberg, Michael Wilczek

To trigger precipitation, water droplets in warm clouds need to attain a sufficient size. Theoretical estimates based on condensation and gravitational collisions alone fail to exp…

physics.flu-dyn20251 cited

Collective effects of neighbouring melting ice objects

Sofía Angriman, Detlef Lohse, Roberto Verzicco +1

We present a study on the melting dynamics of neighbouring ice bodies by means of idealised simulations, focusing on collective effects, with the goal of obtaining fundamental insi…