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Effects of Fluid Properties on Fluid Entry of Free-Falling Disk

  • 2025
  • OriginalPaper
  • Chapter
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Abstract

This chapter delves into the intricate world of fluid entry phenomena, specifically focusing on the water entry of solid disks. The study meticulously examines how fluid properties such as viscosity and shear stress, along with disk characteristics like aspect ratio and density, influence key parameters like crown formation, pinch-off depth, pinch-off time, and sinking velocity. Through a series of carefully designed experiments, the researchers prepared fluid mixtures with varying viscosities and tested them with disks of different densities and aspect ratios. The findings reveal that increasing fluid viscosity initially reduces these parameters but then leads to an intense augmentation as the polymer concentration reaches a critical point. Beyond this point, the parameters stabilize, highlighting the complex interplay between fluid properties and solid object dynamics. The study also underscores the significant impact of disk density and aspect ratio on these phenomena, providing a comprehensive understanding of the underlying physics. This research offers valuable insights for professionals in fluid dynamics, mechanical engineering, and related fields, shedding light on the behavior of solid objects entering fluid mixtures and the factors that govern these interactions.

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Title
Effects of Fluid Properties on Fluid Entry of Free-Falling Disk
Authors
Mohammad Amin Ebrahimi
Amir Hossein Azimi
Copyright Year
2025
DOI
https://doi.org/10.1007/978-3-031-95107-7_5
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