Phase Transitions of Oscillating Droplets on Horizontally Vibrating Substrates

Fuente: arXiv
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Hauptverfasser: Ng, King L., Carnevale, Luís H., Klamka, Michał, Deuar, Piotr, Bobinski, Tomasz, Theodorakis, Panagiotis E.
Format: Preprint
Veröffentlicht: 2025
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author Ng, King L.
Carnevale, Luís H.
Klamka, Michał
Deuar, Piotr
Bobinski, Tomasz
Theodorakis, Panagiotis E.
author_facet Ng, King L.
Carnevale, Luís H.
Klamka, Michał
Deuar, Piotr
Bobinski, Tomasz
Theodorakis, Panagiotis E.
contents Droplet deformations caused by substrate vibrations are ubiquitous in nature and highly relevant for applications such as microreactors and single-cell sorting. The vibrations can induce droplet oscillations, a fundamental process that requires an in-depth understanding. Here, we report on extensive many-body dissipative particle dynamics simulations carried out to study the oscillations of droplets of different liquids on horizontally vibrating substrates, covering a wide range of vibration frequencies and amplitudes as well as substrate wettability. We categorize the phases observed for different parameter sets based on the capillary number and identify the transitions between the observed oscillation phases, which are characterized by means of suitable parameters, such as the angular momentum and vorticity of the droplet. The instability growth rate for oscillation phase II, which leads to highly asymmetric oscillations and eventual droplet breakup, is also determined. Finally, we characterize the state of the droplet for the various scenarios by means of the particle-particle and particle-substrate contacts. We find a steady-state scenario for phase I, metastable breathing modes for phase II, and an out-of-equilibrium state for phase III. Thus, we anticipate that this study provides much needed insights into a fundamental phenomenon in nature with significant relevance for applications.
format Preprint
id arxiv_https___arxiv_org_abs_2510_27538
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Phase Transitions of Oscillating Droplets on Horizontally Vibrating Substrates
Ng, King L.
Carnevale, Luís H.
Klamka, Michał
Deuar, Piotr
Bobinski, Tomasz
Theodorakis, Panagiotis E.
Soft Condensed Matter
Fluid Dynamics
Droplet deformations caused by substrate vibrations are ubiquitous in nature and highly relevant for applications such as microreactors and single-cell sorting. The vibrations can induce droplet oscillations, a fundamental process that requires an in-depth understanding. Here, we report on extensive many-body dissipative particle dynamics simulations carried out to study the oscillations of droplets of different liquids on horizontally vibrating substrates, covering a wide range of vibration frequencies and amplitudes as well as substrate wettability. We categorize the phases observed for different parameter sets based on the capillary number and identify the transitions between the observed oscillation phases, which are characterized by means of suitable parameters, such as the angular momentum and vorticity of the droplet. The instability growth rate for oscillation phase II, which leads to highly asymmetric oscillations and eventual droplet breakup, is also determined. Finally, we characterize the state of the droplet for the various scenarios by means of the particle-particle and particle-substrate contacts. We find a steady-state scenario for phase I, metastable breathing modes for phase II, and an out-of-equilibrium state for phase III. Thus, we anticipate that this study provides much needed insights into a fundamental phenomenon in nature with significant relevance for applications.
title Phase Transitions of Oscillating Droplets on Horizontally Vibrating Substrates
topic Soft Condensed Matter
Fluid Dynamics
url https://arxiv.org/abs/2510.27538