Numerical and Experimental Studies of Flow over Circular Cylinders Covered with Circumferential Riblets or Grooves
Access status:
Open Access
Type
ThesisThesis type
Doctor of PhilosophyAuthor/s
Xing, FengdaAbstract
In this study, the flow past a circular cylinder partly or fully covered with circumferential riblets or
grooves is investigated numerically and experimentally over the Reynolds number (Re D) range
of 490 ~ 3900. The purpose is to explore the potential of a passive flow control ...
See moreIn this study, the flow past a circular cylinder partly or fully covered with circumferential riblets or grooves is investigated numerically and experimentally over the Reynolds number (Re D) range of 490 ~ 3900. The purpose is to explore the potential of a passive flow control strategy by placing circumferential riblets or grooves of various arrangements on the cylinder surface. Although many passive techniques have been developed for controlling the flow past circular cylinders, there is a lack of research of flow past cylinders covered with circumferential riblets or grooves. Given the extensive engineering applications of cylindrical structures, it is useful to understand the influence of circumferential riblets or grooves on the flow structures around a circular cylinder and the consequent hydrodynamic behaviour of the cylinder. Further, confined flows over circular cylinders with and without circumferential riblets at a fixed blockage ratio of 2/5 are investigated experimentally and numerically. Existing studies of confined flows (i.e., with a non-zero blockage ratio) exclusively focus on bare cylinders, but cylinders covered with riblets under confinement have not been considered. The outcome of this study may be applied for enhancing mixing and heat transfer. Unveiling the flow process and mechanism underlying the effects of circumferential riblets on the flow structures, wake dynamics and hydrodynamic characteristics of a circular cylinder in both confined and unconfined flows is another highlight of this thesis.
See less
See moreIn this study, the flow past a circular cylinder partly or fully covered with circumferential riblets or grooves is investigated numerically and experimentally over the Reynolds number (Re D) range of 490 ~ 3900. The purpose is to explore the potential of a passive flow control strategy by placing circumferential riblets or grooves of various arrangements on the cylinder surface. Although many passive techniques have been developed for controlling the flow past circular cylinders, there is a lack of research of flow past cylinders covered with circumferential riblets or grooves. Given the extensive engineering applications of cylindrical structures, it is useful to understand the influence of circumferential riblets or grooves on the flow structures around a circular cylinder and the consequent hydrodynamic behaviour of the cylinder. Further, confined flows over circular cylinders with and without circumferential riblets at a fixed blockage ratio of 2/5 are investigated experimentally and numerically. Existing studies of confined flows (i.e., with a non-zero blockage ratio) exclusively focus on bare cylinders, but cylinders covered with riblets under confinement have not been considered. The outcome of this study may be applied for enhancing mixing and heat transfer. Unveiling the flow process and mechanism underlying the effects of circumferential riblets on the flow structures, wake dynamics and hydrodynamic characteristics of a circular cylinder in both confined and unconfined flows is another highlight of this thesis.
See less
Date
2023Licence
Copyright All Rights ReservedRights statement
The author retains copyright of this thesis. It may only be used for the purposes of research and study. It must not be used for any other purposes and may not be transmitted or shared with others without prior permission.Faculty/School
Faculty of Engineering, School of Civil EngineeringAwarding institution
The University of SydneyShare