Suspending droplets beyond the Rayleigh limit: The interplay of acoustic and gravity forces

Author:

Thirisangu Jeyapradhap1ORCID,Hemachandran E2ORCID,Subramani Karthick1ORCID

Affiliation:

1. Department of Mechanical Engineering, Indian Institute of Information Technology, Design and Manufacturing 1 , Kancheepuram, Chennai 600127, India

2. Department of Foundry and Forge Technology, National Institute of Advanced Manufacturing Technology 2 , Ranchi 834 003, Jharkhand, India

Abstract

In this work, we experimentally investigate the suspension behavior of droplets subjected to standing acoustic waves. We focus on the droplet sizes beyond the Rayleigh limit, i.e., when the droplet size is comparable to the wavelength of the acoustic wave. We show that an acoustic field can disrupt the uniform motion of aqueous droplets in oil and cause them to either suspend or settle, depending on the interplay between acoustic and gravity forces. Remarkably, in contrast to droplets within the Rayleigh limit, the critical acoustic power or minimum pressure amplitude required to suspend droplets beyond the Rayleigh limit is dependent on the droplet size. As the droplet size increases, the critical acoustic power increases significantly. Building upon this understanding, a novel sorting method is proposed based on critical acoustic power.

Funder

Science and Engineering Research Board

Fund for Improvement of Science and Technology

Publisher

AIP Publishing

Subject

Condensed Matter Physics,Fluid Flow and Transfer Processes,Mechanics of Materials,Computational Mechanics,Mechanical Engineering

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