The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation
When a vertical liquid jet impinges on a horizontal flat plate, at a certain distance from the location of impingement, the depth and velocity of the liquid change and a circular hydraulic jump is formed. The importance of this phenomenon in certain industries has motivated continued quest for more...
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Isfahan University of Technology
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doaj-15cbd4d852fd4bada7df7b22b65999a32020-11-25T02:45:50ZengIsfahan University of Technology Journal of Applied Fluid Mechanics1735-35722018-01-0111616911701.The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental InvestigationE. Soukhtanlou0A. R. Teymourtash1M. R. Mahpeykar2Department of Mechanical Engineering, Ferdowsi University of Mashhad, Mashhad, IranDepartment of Mechanical Engineering, Ferdowsi University of Mashhad, Mashhad, IranDepartment of Mechanical Engineering, Ferdowsi University of Mashhad, Mashhad, IranWhen a vertical liquid jet impinges on a horizontal flat plate, at a certain distance from the location of impingement, the depth and velocity of the liquid change and a circular hydraulic jump is formed. The importance of this phenomenon in certain industries has motivated continued quest for more thorough knowledge of the parameters affecting it. Previous research has shown that physical parameters, such as flow rate, jet diameter and geometry of target plate, significantly affect the size and shape of hydraulic jumps. In this study, the effect of target plate roughness on the parameters of circular hydraulic jumps is experimentally investigated. The results show that adding roughness to the target plate leads to an increase in hydraulic jump radius. Furthermore, utilizing the results obtained from the experiments, an empirical law is proposed which determines the hydraulic jump radius and fluid height downstream of the jump position for a given surface roughness of target plate. One of the best-known models for the characterization of the behavior of circular hydraulic jumps is the Bush and Aristoff’s model, which is presented as a curve for smooth surfaces. Since the effect of roughness of target plate surface is ignored in the Bush and Arisstof’s model, the results obtained in this investigation are further used, for the first time, to improve this model for different degrees of surface roughness.http://jafmonline.net/JournalArchive/download?file_ID=47581&issue_ID=252Circular hydraulic jump; Surface roughness; Bush and Aristoff model; Taguchi method. |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
E. Soukhtanlou A. R. Teymourtash M. R. Mahpeykar |
spellingShingle |
E. Soukhtanlou A. R. Teymourtash M. R. Mahpeykar The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation Journal of Applied Fluid Mechanics Circular hydraulic jump; Surface roughness; Bush and Aristoff model; Taguchi method. |
author_facet |
E. Soukhtanlou A. R. Teymourtash M. R. Mahpeykar |
author_sort |
E. Soukhtanlou |
title |
The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation |
title_short |
The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation |
title_full |
The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation |
title_fullStr |
The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation |
title_full_unstemmed |
The Effects of Target Plate Roughness on the Parameters of Circular Hydraulic Jumps: An Experimental Investigation |
title_sort |
effects of target plate roughness on the parameters of circular hydraulic jumps: an experimental investigation |
publisher |
Isfahan University of Technology |
series |
Journal of Applied Fluid Mechanics |
issn |
1735-3572 |
publishDate |
2018-01-01 |
description |
When a vertical liquid jet impinges on a horizontal flat plate, at a certain distance from the location of impingement, the depth and velocity of the liquid change and a circular hydraulic jump is formed. The importance of this phenomenon in certain industries has motivated continued quest for more thorough knowledge of the parameters affecting it. Previous research has shown that physical parameters, such as flow rate, jet diameter and geometry of target plate, significantly affect the size and shape of hydraulic jumps. In this study, the effect of target plate roughness on the parameters of circular hydraulic jumps is experimentally investigated. The results show that adding roughness to the target plate leads to an increase in hydraulic jump radius. Furthermore, utilizing the results obtained from the experiments, an empirical law is proposed which determines the hydraulic jump radius and fluid height downstream of the jump position for a given surface roughness of target plate. One of the best-known models for the characterization of the behavior of circular hydraulic jumps is the Bush and Aristoff’s model, which is presented as a curve for smooth surfaces. Since the effect of roughness of target plate surface is ignored in the Bush and Arisstof’s model, the results obtained in this investigation are further used, for the first time, to improve this model for different degrees of surface roughness. |
topic |
Circular hydraulic jump; Surface roughness; Bush and Aristoff model; Taguchi method. |
url |
http://jafmonline.net/JournalArchive/download?file_ID=47581&issue_ID=252 |
work_keys_str_mv |
AT esoukhtanlou theeffectsoftargetplateroughnessontheparametersofcircularhydraulicjumpsanexperimentalinvestigation AT arteymourtash theeffectsoftargetplateroughnessontheparametersofcircularhydraulicjumpsanexperimentalinvestigation AT mrmahpeykar theeffectsoftargetplateroughnessontheparametersofcircularhydraulicjumpsanexperimentalinvestigation AT esoukhtanlou effectsoftargetplateroughnessontheparametersofcircularhydraulicjumpsanexperimentalinvestigation AT arteymourtash effectsoftargetplateroughnessontheparametersofcircularhydraulicjumpsanexperimentalinvestigation AT mrmahpeykar effectsoftargetplateroughnessontheparametersofcircularhydraulicjumpsanexperimentalinvestigation |
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