Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers
Liquid penetration analysis in porous media is of great importance in a wide range of applications such as ink jet printing technology, painting and textile design. This article presents an investigation of droplet impingement onto metallic meshes, aiming to provide insights by identifying and quant...
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doaj-ad24dd077fe1403988fe688e0dd30b992020-11-25T03:21:58ZengMDPI AGFluids2311-55212020-05-015818110.3390/fluids5020081Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber NumbersKonstantinos Vontas0Cristina Boscariol1Manolia Andredaki2Anastasios Georgoulas3Cyril Crua4Jens Honoré Walther5Marco Marengo6Department of Mechanical Engineering, Technical University of Denmark, Nils Koppels Allé, DK-2800 Kgs. Lyngby, DenmarkAdvanced Engineering Centre, University of Brighton, Lewes Road, Brighton BN2 4GJ, UKAdvanced Engineering Centre, University of Brighton, Lewes Road, Brighton BN2 4GJ, UKAdvanced Engineering Centre, University of Brighton, Lewes Road, Brighton BN2 4GJ, UKAdvanced Engineering Centre, University of Brighton, Lewes Road, Brighton BN2 4GJ, UKDepartment of Mechanical Engineering, Technical University of Denmark, Nils Koppels Allé, DK-2800 Kgs. Lyngby, DenmarkAdvanced Engineering Centre, University of Brighton, Lewes Road, Brighton BN2 4GJ, UKLiquid penetration analysis in porous media is of great importance in a wide range of applications such as ink jet printing technology, painting and textile design. This article presents an investigation of droplet impingement onto metallic meshes, aiming to provide insights by identifying and quantifying impact characteristics that are difficult to measure experimentally. For this purpose, an enhanced Volume-Of-Fluid (VOF) numerical simulation framework is utilised, previously developed in the general context of the OpenFOAM CFD Toolbox. Droplet impacts on metallic meshes are performed both experimentally and numerically with satisfactory degree of agreement. From the experimental investigation three main outcomes are observed—deposition, partial imbibition, and penetration. The penetration into suspended meshes leads to spectacular multiple jetting below the mesh. A higher amount of liquid penetration is linked to higher impact velocity, lower viscosity and larger pore size dimension. An estimation of the liquid penetration is given in order to evaluate the impregnation properties of the meshes. From the parametric analysis it is shown that liquid viscosity affects the adhesion characteristics of the drops significantly, whereas droplet break-up after the impact is mostly controlled by surface tension. Additionally, wettability characteristics are found to play an important role in both liquid penetration and droplet break-up below the mesh.https://www.mdpi.com/2311-5521/5/2/81droplet impactporous surfacesVOF modellingOpenFOAM |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Konstantinos Vontas Cristina Boscariol Manolia Andredaki Anastasios Georgoulas Cyril Crua Jens Honoré Walther Marco Marengo |
spellingShingle |
Konstantinos Vontas Cristina Boscariol Manolia Andredaki Anastasios Georgoulas Cyril Crua Jens Honoré Walther Marco Marengo Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers Fluids droplet impact porous surfaces VOF modelling OpenFOAM |
author_facet |
Konstantinos Vontas Cristina Boscariol Manolia Andredaki Anastasios Georgoulas Cyril Crua Jens Honoré Walther Marco Marengo |
author_sort |
Konstantinos Vontas |
title |
Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers |
title_short |
Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers |
title_full |
Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers |
title_fullStr |
Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers |
title_full_unstemmed |
Droplet Impact on Suspended Metallic Meshes: Effects of Wettability, Reynolds and Weber Numbers |
title_sort |
droplet impact on suspended metallic meshes: effects of wettability, reynolds and weber numbers |
publisher |
MDPI AG |
series |
Fluids |
issn |
2311-5521 |
publishDate |
2020-05-01 |
description |
Liquid penetration analysis in porous media is of great importance in a wide range of applications such as ink jet printing technology, painting and textile design. This article presents an investigation of droplet impingement onto metallic meshes, aiming to provide insights by identifying and quantifying impact characteristics that are difficult to measure experimentally. For this purpose, an enhanced Volume-Of-Fluid (VOF) numerical simulation framework is utilised, previously developed in the general context of the OpenFOAM CFD Toolbox. Droplet impacts on metallic meshes are performed both experimentally and numerically with satisfactory degree of agreement. From the experimental investigation three main outcomes are observed—deposition, partial imbibition, and penetration. The penetration into suspended meshes leads to spectacular multiple jetting below the mesh. A higher amount of liquid penetration is linked to higher impact velocity, lower viscosity and larger pore size dimension. An estimation of the liquid penetration is given in order to evaluate the impregnation properties of the meshes. From the parametric analysis it is shown that liquid viscosity affects the adhesion characteristics of the drops significantly, whereas droplet break-up after the impact is mostly controlled by surface tension. Additionally, wettability characteristics are found to play an important role in both liquid penetration and droplet break-up below the mesh. |
topic |
droplet impact porous surfaces VOF modelling OpenFOAM |
url |
https://www.mdpi.com/2311-5521/5/2/81 |
work_keys_str_mv |
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