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Numerical simulations of drop deformation in a cylindrical tube using moving and fixed grid methods

Authors
Kim, See JoHwang, Wook RyolLim, Kyung HunShin, Hyung-Seop
Issue Date
30-Apr-2008
Publisher
WORLD SCIENTIFIC PUBL CO PTE LTD
Keywords
two-phase flow; moving boundary problem; finite element method; level set method; auto-remeshing technique
Citation
INTERNATIONAL JOURNAL OF MODERN PHYSICS B, v.22, no.9-11, pp 1552 - 1557
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
INTERNATIONAL JOURNAL OF MODERN PHYSICS B
Volume
22
Number
9-11
Start Page
1552
End Page
1557
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/27427
DOI
10.1142/S0217979208047067
ISSN
0217-9792
1793-6578
Abstract
It is quite meaningful in an engineering aspect to investigate liquid drop behaviors in two-phase flow, on which dispersive mixing or overall rheological characteristics heavily depend. There are two approaches numerically to deal with two-phase flow problems, which are the moving- and the fixed-grid methods: that is, interface tracking and interface capturing methods. In this study, we developed multiphase flow codes in both Lagrangian and Eulerian frameworks and compared each solution for the single drop problem in an axisymmetric channel flow. Deformation patterns of drops were observed by these two methods and we have discussed the characteristic features of two methods from the deformation of drop for the moving boundary problems.
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Hwang, Wook Ryol
대학원 (기계항공우주공학부)
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