TY - JOUR
T1 - The mechanism analysis of the oscillatory flow of Oldroyd-B fluid in a tube with a right triangular cross-section
AU - Liu, Lin
AU - Zhang, Sen
AU - Liu, Lang
AU - Xie, Chiyu
AU - Wang, Lixiu
AU - Liu, Yijia
AU - Zhu, Jing
AU - Feng, Libo
N1 - Publisher Copyright:
© 2024 Elsevier Ltd
PY - 2025/1/15
Y1 - 2025/1/15
N2 - This paper considers the oscillatory flow of the Oldroyd-B fluid in a tube with a right triangular cross-section. The partial differential equation for describing the unidirectional flow of Oldroyd-B fluid is derived. For treating the triangular region, the unstructured mesh finite element method is applied. For verifying the accuracy of the finite element method, the source term is introduced and the exact solution is constructed. We obtain an analytical solution for the isosceles triangular cross-section tube and analyze the effects of different parameters on the velocity amplitude and phase difference of the Oldroyd-B fluid flow. In addition, the dynamic characteristics for the unsteady-state Oldroyd-B fluid flow are discussed and the influence of the involved parameters, such as the pressure gradient, the relaxation and retardation time parameters on the velocity distribution are also investigated and the flow mechanism is analyzed graphically. At the same condition, we find that only the tube with an isosceles right triangle cross-section can produce the oscillatory flow. Finally, the fluid mechanism between the Newtonian fluid and the Oldroyd-B fluid for special cases is analyzed and discussed in detail.
AB - This paper considers the oscillatory flow of the Oldroyd-B fluid in a tube with a right triangular cross-section. The partial differential equation for describing the unidirectional flow of Oldroyd-B fluid is derived. For treating the triangular region, the unstructured mesh finite element method is applied. For verifying the accuracy of the finite element method, the source term is introduced and the exact solution is constructed. We obtain an analytical solution for the isosceles triangular cross-section tube and analyze the effects of different parameters on the velocity amplitude and phase difference of the Oldroyd-B fluid flow. In addition, the dynamic characteristics for the unsteady-state Oldroyd-B fluid flow are discussed and the influence of the involved parameters, such as the pressure gradient, the relaxation and retardation time parameters on the velocity distribution are also investigated and the flow mechanism is analyzed graphically. At the same condition, we find that only the tube with an isosceles right triangle cross-section can produce the oscillatory flow. Finally, the fluid mechanism between the Newtonian fluid and the Oldroyd-B fluid for special cases is analyzed and discussed in detail.
KW - Constitutive relation
KW - Finite element method
KW - Oldroyd-B fluid
KW - Oscillatory flow
KW - Right triangular tube
UR - https://www.scopus.com/pages/publications/85211014210
U2 - 10.1016/j.camwa.2024.12.001
DO - 10.1016/j.camwa.2024.12.001
M3 - 文章
AN - SCOPUS:85211014210
SN - 0898-1221
VL - 178
SP - 179
EP - 196
JO - Computers and Mathematics with Applications
JF - Computers and Mathematics with Applications
ER -