Experimental Study on Separation Characteristics During Water Entry of Cylinders with Various Surface Roughness

Tingting He, Wei Feng, Fei Xu, Xiaodou Wan

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Aiming at the problem of solid–liquid separation after the structure enters water, an experimental platform was set up to realize the vertical and oblique entry of the structure into water. The changes in the flow field during the process of the cylinder entering water were observed by a high-speed camera. Combined with the separation angle to quantitatively characterize the geometrical morphology of the solid–liquid interface, the effects of surface roughness, water entry velocity, and angle on the separation characteristics of the cylinder water entry were further studied. The results reveal that when the cylinder enters water vertically, surface roughness has a significant effect on the separation behavior. As the surface roughness of the cylinder decreases, the separation angle increases first, then decreases, and then increases, and there is a negative correlation with the rough surface hysteresis angle. Secondly, the separation angle of the rough surface cylinder decreases with the increase of the water entry velocity, which is independent of the surface roughness. In contrast, the smooth surface cylinder does not separate with the change of velocity. When the cylinder enters water horizontally and obliquely, the variation of the separation angle with surface roughness and velocity is the same as that of vertical entry.

Original languageEnglish
Title of host publicationProceedings of the 7th China Aeronautical Science and Technology Conference - Volume III
PublisherSpringer Science and Business Media Deutschland GmbH
Pages213-222
Number of pages10
ISBN (Print)9789819797707
DOIs
StatePublished - 2025
Event7th China Aeronautical Science and Technology Conference, CASTC 2024 - Chengdu, China
Duration: 19 Sep 202421 Sep 2024

Publication series

NameLecture Notes in Mechanical Engineering
ISSN (Print)2195-4356
ISSN (Electronic)2195-4364

Conference

Conference7th China Aeronautical Science and Technology Conference, CASTC 2024
Country/TerritoryChina
CityChengdu
Period19/09/2421/09/24

Keywords

  • Cylinder water entry
  • Hysteresis angle
  • Separation
  • Surface roughness

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