Adaptive mesh axi-symmetric simulation of droplet impact with a spherical particle in mid-air

  • Yoon, I.
  • Chergui, J.
  • Juric, D.
  • Shin, S.
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초록

In this study, droplet-particle collisions in mid-air are numerically investigated for a wide range of collision parameters: Weber number, contact angle and droplet/particle diameter ratio (4 ≤ We ≤ 150, 20° ≤ θeqi ≤ 160°, and Ω = 1/2 and 1). To perform these simulations in an efficient manner, a simple dual grid based adaptive mesh refinement (SDG AMR) strategy is proposed and implemented in our existing multiphase flow solver. A total of 90 collision cases are systematically analyzed and are compared with results for the case of impact on a stationary particle to understand how mid-air collision characteristics are changed relative to those on a stationary target. The simulation results show that mid-air droplet-particle collision behavior is significantly different from that of droplet collision on a stationary particle, thus the impact phenomena cannot be interpreted by extrapolating collision results for a stationary target. © 2022 Elsevier Ltd

키워드

Droplet impactMid-air collisionMultiphase flowNumerical simulationSpherical particleFRONT-TRACKING METHODCATALYTIC CRACKING REACTORMULTIPHASE FLOWSINJECTION ZONELIQUID-DROPFLUIDSURFACECOLLISIONSDYNAMICSMODEL
제목
Adaptive mesh axi-symmetric simulation of droplet impact with a spherical particle in mid-air
저자
Yoon, I.Chergui, J.Juric, D.Shin, S.
DOI
10.1016/j.ijmultiphaseflow.2022.104193
발행일
2022-10-01
유형
Article
저널명
International Journal of Multiphase Flow
155