Data for: Modeling of co-axial bubbles coalescence under moderate Reynolds regimes - A Bi-phase SPH approach

Published: 17 February 2023| Version 1 | DOI: 10.17632/bmcnjt6p8m.1
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Description

Data and figures for "Bi-phase Smoothed Particle Hydrodynamics simulation of co-axial bubbles coalescence for the moderate Reynolds regimes" The files contain the main complementary results (e.g. data from graphs, images, and tables), organizer by sections, such as: 5. Numerical validation - 5.1. The merging process of two different rising bubbles size with D_2 = 1.5D_1 - 5.2. The merging process of two different rising bubbles size with D_2 = 1.25D_1 6. Numerical Examples - 6.1. The merging process of two rising bubbles with a high effect of the sidewalls - > 6.1.1. The ∆x effects between two merging bubbles and its streamlines shedding - > 6.1.2. The effects of the vertical distance between two merging bubbles (βD_1) - > 6.1.3. The influence of density rate (Φ) between two merging bubbles - > 6.1.4. The influence of two different surface tension values between two merging bubble - > 6.1.5. The influence of viscosity rate (λ) between two merging bubbles - 6.2. The merging process of two rising bubbles with a low effect of side-walls - > 6.2.1. The high surface tension regimes with Eo=5 and Eo=10 - > 6.2.2. The low surface tension regimes with Eo=100 and Eo=200

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Institutions

Universidade Estadual de Campinas, University of Portsmouth, Instituto de Pesquisas Tecnologicas

Categories

Surface Tension in Bubble, Bubble Coalescence, Bubble Formation, Bubble Dynamics, Smooth Particle Hydrodynamics, Meshfree Method

Funding

Fundação de Amparo à Pesquisa do Estado de São Paulo

21/05931-9

Fundação de Amparo à Pesquisa do Estado de São Paulo

17/50343-2

Fundação de Amparo à Pesquisa do Estado de São Paulo

13/08293-7

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