Liquid droplet morphology on the fiber of a fog harvester mesh and the droplet detachment conditions under gravity

Fuente: arXiv
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Auteurs principaux: Mukhopadhyay, Arani, Dutta, Partha Sarathi, Datta, Amitava, Ganguly, Ranjan
Format: Preprint
Publié: 2024
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author Mukhopadhyay, Arani
Dutta, Partha Sarathi
Datta, Amitava
Ganguly, Ranjan
author_facet Mukhopadhyay, Arani
Dutta, Partha Sarathi
Datta, Amitava
Ganguly, Ranjan
contents Liquid droplets on fiber are often observed both in nature and in different engineering applications, like a fog harvesting mesh. Knowledge about drop-on-fiber morphology and its shedding under the influence of gravity can allow for the design of better separation technology. Mutual interaction of surface tension forces arising out of the surface energies of the liquid and the fiber solid, and the weight of the liquid droplet gives rise to different morphologies of the droplet, which may occur in a stable or meta-stable configuration. Predicting the droplet shape on a fiber of specified dimension and surface wettability accurately for a given volume of liquid is challenging since the curvature of both the droplet and the cylinder influence the phenomenon. We have numerically investigated the droplet shape and transition criterion for various volumes at different contact angles under the effect of varying Bond numbers using an open-source surface evolver code. It is observed that depending upon the relative dimensions of the liquid droplet, the fiber diameter, wettability, and gravity, the liquid exists on the fiber either in 'barrel' or in 'clamshell' shape. A relation between shedding volume and the Bond number is deduced, and the detachment volumes are calculated.
format Preprint
id arxiv_https___arxiv_org_abs_2408_13118
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Liquid droplet morphology on the fiber of a fog harvester mesh and the droplet detachment conditions under gravity
Mukhopadhyay, Arani
Dutta, Partha Sarathi
Datta, Amitava
Ganguly, Ranjan
Soft Condensed Matter
Fluid Dynamics
Liquid droplets on fiber are often observed both in nature and in different engineering applications, like a fog harvesting mesh. Knowledge about drop-on-fiber morphology and its shedding under the influence of gravity can allow for the design of better separation technology. Mutual interaction of surface tension forces arising out of the surface energies of the liquid and the fiber solid, and the weight of the liquid droplet gives rise to different morphologies of the droplet, which may occur in a stable or meta-stable configuration. Predicting the droplet shape on a fiber of specified dimension and surface wettability accurately for a given volume of liquid is challenging since the curvature of both the droplet and the cylinder influence the phenomenon. We have numerically investigated the droplet shape and transition criterion for various volumes at different contact angles under the effect of varying Bond numbers using an open-source surface evolver code. It is observed that depending upon the relative dimensions of the liquid droplet, the fiber diameter, wettability, and gravity, the liquid exists on the fiber either in 'barrel' or in 'clamshell' shape. A relation between shedding volume and the Bond number is deduced, and the detachment volumes are calculated.
title Liquid droplet morphology on the fiber of a fog harvester mesh and the droplet detachment conditions under gravity
topic Soft Condensed Matter
Fluid Dynamics
url https://arxiv.org/abs/2408.13118