Detail publikace

The interaction between fluid flow and ultra-hydrophobic surface in mini channel

JAŠÍKOVÁ, D. GAŠIĆ, M. FIALOVÁ, S. KOTEK, M. KOPECKÝ,V.

Originální název

The interaction between fluid flow and ultra-hydrophobic surface in mini channel

Typ

článek ve sborníku ve WoS nebo Scopus

Jazyk

angličtina

Originální abstrakt

Interaction of liquid with ultra-hydrophobic surface is accompanied by creation of layer of air. The effect of the air film has a potential of use in industry in many applications. The quality of the surface is influenced by matrix roughness, the character of physical or chemical cover. There was developed a method for analysis of the liquid flow and the air film using the lighting in volume, visualization with CCD camera and long distance microscope, and optical filters. There were prepared four stainless steel samples of inner channel of dimensions (80 x 8 x 8) mm and initial surface roughness Ra 0.33, Ra 1.0, Ra 2.0, and Ra 2.2. The inner channel was treated with plasma and commercial hydrophobic coating Greblon (WEILBURGER Coatings GmbH). There was realized study focused on the liquid flow velocity profile close to the air film. There are present results for laminar, transient and turbulent flows. The study also estimated the air film thickness depending on the Re number. The knowledge of the air film behaviour helps applied suitable degree of processing and cover for the target application.

Klíčová slova

ultra-hydrophobic surface; mini channel; FSI; flow

Autoři

JAŠÍKOVÁ, D.; GAŠIĆ, M.; FIALOVÁ, S.; KOTEK, M.; KOPECKÝ,V.

Vydáno

19. 11. 2017

Nakladatel

E D P SCIENCES

Místo

CEDEX A

ISSN

2100-014X

Periodikum

EPJ Web of Conferences

Ročník

143

Číslo

00001

Stát

Francouzská republika

Strany od

02045

Strany do

02045

Strany počet

5

BibTex

@inproceedings{BUT177335,
  author="JAŠÍKOVÁ, D. and GAŠIĆ, M. and FIALOVÁ, S. and KOTEK, M. and KOPECKÝ,V.",
  title="The interaction between fluid flow and ultra-hydrophobic surface in mini channel",
  booktitle="EPJ Web Conf.
Volume 143, 2017
EFM16 – Experimental Fluid Mechanics 2016
https://doi.org/10.1051/epjconf/201714300001",
  year="2017",
  series="143",
  journal="EPJ Web of Conferences",
  volume="143",
  number="00001",
  pages="02045--02045",
  publisher="E D P SCIENCES",
  address="CEDEX A",
  doi="10.1051/epjconf/201714302045",
  issn="2100-014X"
}