Micropolar fluid between two coaxial cylinders (numerical approach)
Апстракт
The paper describes the flow of a suspension which is a mixture of two phases: liquid and solid granules. The continuum model with microstructure is introduced, which involves two independent kinematic quantities: the velocity vector and the micro-rotation vector. The physical analogy is based on the movement of the suspension between two coaxial cylinders. The inner cylinder is stationary and the outer one rotates with constant angular velocity. This physical analogy enabled a mathematical model in a form of two coupled differential equations with variable coefficients. The aim of the paper is to present the numerical aspect of the solution for this complex mathematical model. It is assumed that the solid granules are identically oriented and that under the influence of the fluid they move translationally or rotate around the symmetry axis but the direction of their symmetry axes does not change. The solution was obtained by the ordinary finite difference method, and then the correspo...nding sets of points (nodes) were routed by interpolation graphics.
Кључне речи:
suspension flow / numerical solution / micropolar fluid / identifying solutionsИзвор:
Theoretical and Applied Mechanics, 2021, 48, 2Издавач:
- Srpsko društvo za mehaniku, Beograd
DOI: 10.2298/TAM210823012S
ISSN: 1450-5584
WoS: 000734176000001
Scopus: 2-s2.0-85124714307
Институција/група
Šumarski fakultetTY - JOUR AU - Salemović, Duško AU - Dedić, Aleksandar AU - Jovanović, Boško PY - 2021 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/1205 AB - The paper describes the flow of a suspension which is a mixture of two phases: liquid and solid granules. The continuum model with microstructure is introduced, which involves two independent kinematic quantities: the velocity vector and the micro-rotation vector. The physical analogy is based on the movement of the suspension between two coaxial cylinders. The inner cylinder is stationary and the outer one rotates with constant angular velocity. This physical analogy enabled a mathematical model in a form of two coupled differential equations with variable coefficients. The aim of the paper is to present the numerical aspect of the solution for this complex mathematical model. It is assumed that the solid granules are identically oriented and that under the influence of the fluid they move translationally or rotate around the symmetry axis but the direction of their symmetry axes does not change. The solution was obtained by the ordinary finite difference method, and then the corresponding sets of points (nodes) were routed by interpolation graphics. PB - Srpsko društvo za mehaniku, Beograd T2 - Theoretical and Applied Mechanics T1 - Micropolar fluid between two coaxial cylinders (numerical approach) IS - 2 VL - 48 DO - 10.2298/TAM210823012S UR - conv_1603 ER -
@article{ author = "Salemović, Duško and Dedić, Aleksandar and Jovanović, Boško", year = "2021", abstract = "The paper describes the flow of a suspension which is a mixture of two phases: liquid and solid granules. The continuum model with microstructure is introduced, which involves two independent kinematic quantities: the velocity vector and the micro-rotation vector. The physical analogy is based on the movement of the suspension between two coaxial cylinders. The inner cylinder is stationary and the outer one rotates with constant angular velocity. This physical analogy enabled a mathematical model in a form of two coupled differential equations with variable coefficients. The aim of the paper is to present the numerical aspect of the solution for this complex mathematical model. It is assumed that the solid granules are identically oriented and that under the influence of the fluid they move translationally or rotate around the symmetry axis but the direction of their symmetry axes does not change. The solution was obtained by the ordinary finite difference method, and then the corresponding sets of points (nodes) were routed by interpolation graphics.", publisher = "Srpsko društvo za mehaniku, Beograd", journal = "Theoretical and Applied Mechanics", title = "Micropolar fluid between two coaxial cylinders (numerical approach)", number = "2", volume = "48", doi = "10.2298/TAM210823012S", url = "conv_1603" }
Salemović, D., Dedić, A.,& Jovanović, B.. (2021). Micropolar fluid between two coaxial cylinders (numerical approach). in Theoretical and Applied Mechanics Srpsko društvo za mehaniku, Beograd., 48(2). https://doi.org/10.2298/TAM210823012S conv_1603
Salemović D, Dedić A, Jovanović B. Micropolar fluid between two coaxial cylinders (numerical approach). in Theoretical and Applied Mechanics. 2021;48(2). doi:10.2298/TAM210823012S conv_1603 .
Salemović, Duško, Dedić, Aleksandar, Jovanović, Boško, "Micropolar fluid between two coaxial cylinders (numerical approach)" in Theoretical and Applied Mechanics, 48, no. 2 (2021), https://doi.org/10.2298/TAM210823012S ., conv_1603 .