A Discontinuous Galerkin Level Set Method for Compressible two Fluid Flow
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@Article{JICS-6-234,
author = {Eryun Chen, Gaiping Zhao, Ailing Yang and Qingyi Sai},
title = {A Discontinuous Galerkin Level Set Method for Compressible two Fluid Flow},
journal = {Journal of Information and Computing Science},
year = {2024},
volume = {6},
number = {3},
pages = {234--240},
abstract = { It is a crucial problem in the studies of the fluid on numerical simulations of the interfaces
movement in multi-component fluids. In the present paper, a discontinuous Galerkin method is developed to
simulate two-fluid flow. A level set method is used to capturing moving interfaces and a ghost fluid method
with isobaric fix is used to disposing the interfaces boundary. Several test problems of two fluid flowing is
solved and the comparisons between the numerical results and exact case are performed, which indicate the
effectiveness of the method.
},
issn = {1746-7659},
doi = {https://doi.org/},
url = {http://global-sci.org/intro/article_detail/jics/22680.html}
}
TY - JOUR
T1 - A Discontinuous Galerkin Level Set Method for Compressible two Fluid Flow
AU - Eryun Chen, Gaiping Zhao, Ailing Yang and Qingyi Sai
JO - Journal of Information and Computing Science
VL - 3
SP - 234
EP - 240
PY - 2024
DA - 2024/01
SN - 6
DO - http://doi.org/
UR - https://global-sci.org/intro/article_detail/jics/22680.html
KW -
AB - It is a crucial problem in the studies of the fluid on numerical simulations of the interfaces
movement in multi-component fluids. In the present paper, a discontinuous Galerkin method is developed to
simulate two-fluid flow. A level set method is used to capturing moving interfaces and a ghost fluid method
with isobaric fix is used to disposing the interfaces boundary. Several test problems of two fluid flowing is
solved and the comparisons between the numerical results and exact case are performed, which indicate the
effectiveness of the method.
Eryun Chen, Gaiping Zhao, Ailing Yang and Qingyi Sai. (2024). A Discontinuous Galerkin Level Set Method for Compressible two Fluid Flow.
Journal of Information and Computing Science. 6 (3).
234-240.
doi:
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