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20242026
most citedFast integration method for averaging polydisperse bubble population dynamics

2 citations · 2 across the 8 of their papers we have counts for

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Showing 2025Show all

9 papers · 1 filter

physics.flu-dyn2025

Energy dissipation mechanisms in an acoustically-driven slit

Haocheng Yu, Tianyi Chu, Spencer H. Bryngelson

We quantify how incident acoustic energy is converted into vortical motion and viscous dissipation for a two-dimensional plane-wave passing through a slit geometry. We perform dire…

physics.flu-dyn2025

Hardware-Accelerated Phase-Averaging for Cavitating Bubbly Flows

Diego Vaca-Revelo, Benjamin Wilfong, Spencer H. Bryngelson +1

We present a comprehensive validation, performance characterization, and scalability analysis of a hardware-accelerated phase-averaged multiscale solver designed to simulate acoust…

physics.comp-ph2025

Simulating many-engine spacecraft: Exceeding 1 quadrillion degrees of freedom via information geometric regularization

Benjamin Wilfong, Anand Radhakrishnan, Henry Le Berre +9

We present an optimized implementation of the recently proposed information geometric regularization (IGR) for unprecedented scale simulation of compressible fluid flows applied to…

physics.comp-ph20252 cited

Fast integration method for averaging polydisperse bubble population dynamics

Spencer H. Bryngelson

Ensemble-averaged polydisperse bubbly flow models require statistical moments of the evolving bubble size distribution. Under step forcing, these moments reach statistical equilibr…

cs.SD2025

Transmission of High-Amplitude Sound through Leakages of Ill-fitting Earplugs

Haocheng Yu, Krishan K. Ahuja, Lakshmi N. Sankar +1

High sound pressure levels (SPL) pose notable risks in loud environments, particularly due to noise-induced hearing loss. Ill-fitting earplugs often lead to sound leakage, a phenom…

quant-ph2025

Quantum lattice Boltzmann algorithm for heat transfer with phase change

Christopher L. Jawetz, Zhixin Song, Spencer H. Bryngelson +1

Heat transfer involving phase change is computationally intensive due to moving phase boundaries, nonlinear computations, and time step restrictions. This paper presents a quantum…