Cold granular targets slow the bulk freezing of an impacting droplet

Fuente: arXiv
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Main Authors: Zhao, Song-Chuan, Zhang, Hao-Jie, Li, Yudong
Format: Preprint
Published: 2023
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author Zhao, Song-Chuan
Zhang, Hao-Jie
Li, Yudong
author_facet Zhao, Song-Chuan
Zhang, Hao-Jie
Li, Yudong
contents When making contact with an undercooled target, a drop freezes. The colder the target is, the more rapid the freezing is supposed to be. In this research, we explore the impact of droplets on cold granular material. As the undercooling degree increases, the bulk freezing of the droplet is delayed by at least an order of magnitude. The postponement of the overall solidification is accompanied by substantial changes in dynamics, including the spreading-retraction process, satellite drop generation, and cratering in the target. The solidification of the wetted pores in the granular target primarily causes these effects. Owing to the small size of pores, solidification there is sufficiently fast to match the characteristic timescales of the impact dynamics at moderate undercooling degrees. As a result, the hydrophilic impact appears `hydrophobic', and the dimension of the solidified droplet shrinks. A monolayer of cold grains on a surface can reproduce these consequences. Our research presents a potential approach to regulate solidified morphology for subfreezing drop impacts. It additionally sheds light on the impact scenario of strong coupling between the dynamics and solidification.
format Preprint
id arxiv_https___arxiv_org_abs_2306_11563
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Cold granular targets slow the bulk freezing of an impacting droplet
Zhao, Song-Chuan
Zhang, Hao-Jie
Li, Yudong
Fluid Dynamics
When making contact with an undercooled target, a drop freezes. The colder the target is, the more rapid the freezing is supposed to be. In this research, we explore the impact of droplets on cold granular material. As the undercooling degree increases, the bulk freezing of the droplet is delayed by at least an order of magnitude. The postponement of the overall solidification is accompanied by substantial changes in dynamics, including the spreading-retraction process, satellite drop generation, and cratering in the target. The solidification of the wetted pores in the granular target primarily causes these effects. Owing to the small size of pores, solidification there is sufficiently fast to match the characteristic timescales of the impact dynamics at moderate undercooling degrees. As a result, the hydrophilic impact appears `hydrophobic', and the dimension of the solidified droplet shrinks. A monolayer of cold grains on a surface can reproduce these consequences. Our research presents a potential approach to regulate solidified morphology for subfreezing drop impacts. It additionally sheds light on the impact scenario of strong coupling between the dynamics and solidification.
title Cold granular targets slow the bulk freezing of an impacting droplet
topic Fluid Dynamics
url https://arxiv.org/abs/2306.11563