中文版 | English
Title

Improved smoothed particle dynamics simulation of eXtended Pom-Pom viscoelastic fluid

Author
Corresponding AuthorXu, Xiao-Yang; Yu, Peng
Publication Years
2023-02-05
DOI
Source Title
ISSN
1000-3290
Volume72
Abstract
Viscoelastic fluids widely exist in nature and industrial production, and the study of their complex rheological properties has important academic value and application significance. In this work, an improved smoothed particle hydrodynamics (SPH) method is proposed to numerically simulate the viscoelastic flow based on the eXtended Pom-Pom (XPP) model. In order to improve the accuracy of the calculation, a kernel gradient correction discrete format without kernel derivative calculation is adopted. In order to prevent fluid particles from penetrating the solid wall, an enhanced boundary processing technology is proposed. To eliminate the tensile instability, an artificial stress is coupled into the momentum equation of conservation. Based on the XPP model, the viscoelastic Poiseuille flow and the viscoelastic droplet impacting solid wall problem are simulated by using the improved SPH method. The effectiveness and advantages of the improved SPH method are verified by comparing the SPH solutions with the solutions from the analytical method or finite difference method. The convergence of the improved SPH method is further evaluated by using several different particle sizes. On this basis, the influences of rheological parameters such as Reyonlds number Re, Weissenberg number Wi, solvent viscosity ratio b, anisotropy parameter a, relaxation time ratio g and molecular chain arm number Q on the flow process are analyzed in depth. For the viscoelastic Poiseuille flow, the bigger the value of Re, Wi, and a, the larger the steady-state velocity is; the larger the value of g and Q, the smaller the steady-state velocity is; the larger the value of b, the weaker the velocity overshoot is, but it does not affect the steady-state velocity. For the viscoelastic droplet problem, the larger the value of Re and Wi, the faster the droplet spreads; the larger the value of b, the weaker the droplet shrinkage behavior is, but it does not affect the final spreading width of droplet; the larger the value of a, the larger the droplet’s spreading width is; the larger the value of g is, the stronger the droplet shrinkage behavior is; the larger the value of Q, the weaker its influence on the droplet’ s spread width is. The improved SPH method in this paper can effectively describe the complex rheological properties and the free surface variation characteristics of viscoelastic fluid based on XPP model.
© 2023 Chinese Physical Society.
Indexed By
Language
Chinese
SUSTech Authorship
Corresponding
Funding Project
* Project supported by the National Natural Science Foundation of China (Grant Nos. 12071367, 12172163) and the Shaanxi Youth Top-notch Talent Program of China (Grant No. 289890259). † Corresponding author. E-mail: xiaoyang.xu@xust.edu.cn ‡ Corresponding author. E-mail: yup6@sustech.edu.cn
Publisher
EI Accession Number
20230713597395
EI Keywords
Drops ; Hydrodynamics ; Rheology ; Shrinkage ; Viscoelasticity
ESI Classification Code
Numerical Methods:921.6 ; Mechanics:931.1 ; Physical Properties of Gases, Liquids and Solids:931.2 ; Materials Science:951
ESI Research Field
PHYSICS
Data Source
EV Compendex
Citation statistics
Cited Times [WOS]:0
Document TypeJournal Article
Identifierhttp://kc.sustech.edu.cn/handle/2SGJ60CL/519803
DepartmentDepartment of Mechanics and Aerospace Engineering
Affiliation
1.School of Computer Science and Technology, Xi’an University of Science and Technology, Xi’an; 710054, China
2.Department of Mechanics and Aerospace Engineering, Southern University of Science and Technology, Shenzhen; 518055, China
Corresponding Author AffilicationDepartment of Mechanics and Aerospace Engineering
Recommended Citation
GB/T 7714
Xu, Xiao-Yang,Zhou, Ya-Li,Yu, Peng. Improved smoothed particle dynamics simulation of eXtended Pom-Pom viscoelastic fluid[J]. ACTA PHYSICA SINICA,2023,72.
APA
Xu, Xiao-Yang,Zhou, Ya-Li,&Yu, Peng.(2023).Improved smoothed particle dynamics simulation of eXtended Pom-Pom viscoelastic fluid.ACTA PHYSICA SINICA,72.
MLA
Xu, Xiao-Yang,et al."Improved smoothed particle dynamics simulation of eXtended Pom-Pom viscoelastic fluid".ACTA PHYSICA SINICA 72(2023).
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