Effect of rough wall on drag, lift, and torque on an ellipsoidal particle in a linear shear flow

Fuente: arXiv
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Autori principali: Bhagat, Atul Manikrao, Goswami, Partha Sarathi
Natura: Preprint
Pubblicazione: 2022
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author Bhagat, Atul Manikrao
Goswami, Partha Sarathi
author_facet Bhagat, Atul Manikrao
Goswami, Partha Sarathi
contents The present study provides a detailed description of the forces on an ellipsoidal particle in the vicinity of the rough wall. Three-dimensional numerical simulations are performed using body-fitted mesh to estimate the drag, lift, and torque coefficients. A large number of simulations are conducted %(approximately 2400) over a range of parameters such as shear Reynolds number ($10 \le Re_s \le 100$), orientation angle ($0\leθ\le 180$), and wall-particle separation distance ($0.1\leδ\le2.0$) to get a comprehensive description of variation of the above coefficients. Using the simulation results, we develop the correlations for the drag and lift coefficients to describe the effect of rough wall, inclination angles, and particle Reynolds numbers on the hydrodynamic coefficients. The proposed correlations can be used for two phase flow simulation using Eulerian-Lagrangian framework.
format Preprint
id arxiv_https___arxiv_org_abs_2201_08991
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Effect of rough wall on drag, lift, and torque on an ellipsoidal particle in a linear shear flow
Bhagat, Atul Manikrao
Goswami, Partha Sarathi
Fluid Dynamics
The present study provides a detailed description of the forces on an ellipsoidal particle in the vicinity of the rough wall. Three-dimensional numerical simulations are performed using body-fitted mesh to estimate the drag, lift, and torque coefficients. A large number of simulations are conducted %(approximately 2400) over a range of parameters such as shear Reynolds number ($10 \le Re_s \le 100$), orientation angle ($0\leθ\le 180$), and wall-particle separation distance ($0.1\leδ\le2.0$) to get a comprehensive description of variation of the above coefficients. Using the simulation results, we develop the correlations for the drag and lift coefficients to describe the effect of rough wall, inclination angles, and particle Reynolds numbers on the hydrodynamic coefficients. The proposed correlations can be used for two phase flow simulation using Eulerian-Lagrangian framework.
title Effect of rough wall on drag, lift, and torque on an ellipsoidal particle in a linear shear flow
topic Fluid Dynamics
url https://arxiv.org/abs/2201.08991