On the Drag Coefficient Universality of a Rough Grain in Creeping Flow

Fuente: arXiv
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Autores principales: Suo, Si, Wei, Deheng, Zhao, Budi, Zhai, Chongpu, Gan, Yixiang
Formato: Preprint
Publicado: 2024
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author Suo, Si
Wei, Deheng
Zhao, Budi
Zhai, Chongpu
Gan, Yixiang
author_facet Suo, Si
Wei, Deheng
Zhao, Budi
Zhai, Chongpu
Gan, Yixiang
contents Controversy exists regarding whether grain morphology reduces or enhances the drag of a single grain in creeping flows; further complication occurs when orientation dependence for aspherical grains comes into play. To quantify influences of shape irregularity and orientation, this study numerically investigates the drag in creeping flows for fractally rough grains depicted by Spherical Harmonics. As the grain surface becomes more angular with increasing relative roughness and fractal dimension, a stronger drag reduction is observed; this observed morphology-dependent reduction indicates Stokes formula is insufficient. The rotational dependence helps to explain the paradox wherein drag enhancement is always encountered insettling-grain experiments popular in geophysics. For the drag of a given rough grain at various orientations, extracted distributions of the overall drag, and its two components, i.e., skin friction and pressure drag, universally adhere to the Weibull patterns. Moreover, we identify a universal power law between drag coefficients and a newly proposed area-related number, sufficiently taking into consideration both grain roughness by surface area and orientational dependence by projected area perpendicular to the flow direction. This law is primarily controlled by relative roughness, with less sensitivity to fractal dimension. The determined expression enables precise estimation of fluid-particle interactions in upscaling simulations.
format Preprint
id arxiv_https___arxiv_org_abs_2411_08225
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle On the Drag Coefficient Universality of a Rough Grain in Creeping Flow
Suo, Si
Wei, Deheng
Zhao, Budi
Zhai, Chongpu
Gan, Yixiang
Fluid Dynamics
Geophysics
Controversy exists regarding whether grain morphology reduces or enhances the drag of a single grain in creeping flows; further complication occurs when orientation dependence for aspherical grains comes into play. To quantify influences of shape irregularity and orientation, this study numerically investigates the drag in creeping flows for fractally rough grains depicted by Spherical Harmonics. As the grain surface becomes more angular with increasing relative roughness and fractal dimension, a stronger drag reduction is observed; this observed morphology-dependent reduction indicates Stokes formula is insufficient. The rotational dependence helps to explain the paradox wherein drag enhancement is always encountered insettling-grain experiments popular in geophysics. For the drag of a given rough grain at various orientations, extracted distributions of the overall drag, and its two components, i.e., skin friction and pressure drag, universally adhere to the Weibull patterns. Moreover, we identify a universal power law between drag coefficients and a newly proposed area-related number, sufficiently taking into consideration both grain roughness by surface area and orientational dependence by projected area perpendicular to the flow direction. This law is primarily controlled by relative roughness, with less sensitivity to fractal dimension. The determined expression enables precise estimation of fluid-particle interactions in upscaling simulations.
title On the Drag Coefficient Universality of a Rough Grain in Creeping Flow
topic Fluid Dynamics
Geophysics
url https://arxiv.org/abs/2411.08225