APS Logo

Full field measurement of turbulent bubbly jet by Lagrangian Particle Tracking Velocimetry

ORAL

Abstract

This study proposes a method for simultaneous measurements of time-resolved three-dimensional velocity fields of the dispersed and continuous phases of a turbulent bubbly jet at a low void fraction using Lagrangian particle tracking (LPT) velocimetry with the Shake-The-Box algorithm. Bubbles are firstly tracked using intensity differences between tracer particles and bubbles, then the bubble images are removed from the camera images and all tracer particles are tracked using the residual images. Subsequently, FlowFit interpolation is applied to the LPT results obtained by phase separation to investigate turbulent characteristics of a bubbly jet. The bubbly jet was divided into two regions along the vertical direction: jet-like and plume-like regions. Streamwise vortex structures of continuous phase were generated mainly by the rising bubbles. The measured slip velocity in the radial direction was not constant but linearly increased. The classical assumption of self-similarity with Gaussian profiles for fluid velocity and bubble concentration is experimentally verified. The entrainment coefficient is obtained as a function of bubbly flow physics parameters based on three-dimensional measurements. The integral theory agrees well with experiments in the plume region.

Publication: Preprint: [D. Kim, D. Schanz, M. Novara, H. Seo, Y. Kim, A. Schröder and K. C. Kim (2022). Experimental study of turbulent bubbly jet. Part 1. Simultaneous measurement of three-dimensional velocity fields of bubbles and water. Journal of Fluid Mechanics, 941.] <br><br>Planned paper: [D. Kim, D. Schanz, M. Novara, A. Schröder and K. C. Kim. Experimental study of turbulent bubbly jet. Part 2. Reynolds stress fields and turbulent kinetic energy budget. Target: Journal of Fluid Mechanics]

Presenters

  • DONG KIM

    University of Ulsan

Authors

  • DONG KIM

    University of Ulsan

  • Daniel Schanz

    German Aerospace Center, Institute of Aerodynamics and Flow Technology, Department of Experimental Methods, Göttingen, Germany, German Aerospace Center(DLR)

  • Matteo Novara

    German Aerospace Center(DLR)

  • Andreas Schröder

    German Aerospace Center(DLR)

  • Kyung Chun Kim

    Pusan National University, Pusan Natl Univ

  • Mirae Kim

    Pusan National University