Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps

The maintenance of the performance of sump pumps is important to mitigate flood damage in urban areas and lowlands. However, the air-entraining vortex in the sump leads to undesirable performance degradation. Thus, in this study, the newly designed floating anti-vortex device (F-AVD) was employed in...

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Main Authors: Inhwan Park, Hyung-Jun Kim, Hoje Seong, Dong Sop Rhee
Format: Article
Language:English
Published: MDPI AG 2018-04-01
Series:Water
Subjects:
Online Access:http://www.mdpi.com/2073-4441/10/4/441
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spelling doaj-8860f5ef2a3943dc8c2dafde4c4dbfde2020-11-24T23:42:24ZengMDPI AGWater2073-44412018-04-0110444110.3390/w10040441w10040441Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump PumpsInhwan Park0Hyung-Jun Kim1Hoje Seong2Dong Sop Rhee3Korea Institute of Civil Engineering and Building Technology, 283 Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si 10223, Gyeonggi-Do, KoreaKorea Institute of Civil Engineering and Building Technology, 283 Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si 10223, Gyeonggi-Do, KoreaKorea Institute of Civil Engineering and Building Technology, 283 Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si 10223, Gyeonggi-Do, KoreaKorea Institute of Civil Engineering and Building Technology, 283 Goyangdae-Ro, Ilsanseo-Gu, Goyang-Si 10223, Gyeonggi-Do, KoreaThe maintenance of the performance of sump pumps is important to mitigate flood damage in urban areas and lowlands. However, the air-entraining vortex in the sump leads to undesirable performance degradation. Thus, in this study, the newly designed floating anti-vortex device (F-AVD) was employed in the intake pipe to enhance the efficiency of water intake in the sump by decreasing the surface vortex. The performance of the F-AVD was evaluated from the model experiments, in which the sump model was designed to represent the pump station that operates in Korea. The flow in the sump was measured using the particle image velocimetry (PIV) technique, and the velocity and vorticity distributions were compared both with and without the adoption of the F-AVD. The experimental results indicated that the vortex structures behind the intake pipe were effectively mitigated by installing the F-AVD. The vorticity magnitude behind the intake pipe was reduced in range of 24.8–52.5% after the installation of the F-AVD. However, in the case of a flow rate increase, the efficiency of the F-AVD decreased because of the strong vortex. Thus, an additional anti-vortex device (AVD), which is attached to the backwall or the floor in the sump, is required to prevent the air entrainment in conditions with high flow rates.http://www.mdpi.com/2073-4441/10/4/441sump pumpair entrainmentsurface vortexfloating anti-vortex device (F-AVD)
collection DOAJ
language English
format Article
sources DOAJ
author Inhwan Park
Hyung-Jun Kim
Hoje Seong
Dong Sop Rhee
spellingShingle Inhwan Park
Hyung-Jun Kim
Hoje Seong
Dong Sop Rhee
Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps
Water
sump pump
air entrainment
surface vortex
floating anti-vortex device (F-AVD)
author_facet Inhwan Park
Hyung-Jun Kim
Hoje Seong
Dong Sop Rhee
author_sort Inhwan Park
title Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps
title_short Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps
title_full Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps
title_fullStr Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps
title_full_unstemmed Experimental Studies on Surface Vortex Mitigation Using the Floating Anti-Vortex Device in Sump Pumps
title_sort experimental studies on surface vortex mitigation using the floating anti-vortex device in sump pumps
publisher MDPI AG
series Water
issn 2073-4441
publishDate 2018-04-01
description The maintenance of the performance of sump pumps is important to mitigate flood damage in urban areas and lowlands. However, the air-entraining vortex in the sump leads to undesirable performance degradation. Thus, in this study, the newly designed floating anti-vortex device (F-AVD) was employed in the intake pipe to enhance the efficiency of water intake in the sump by decreasing the surface vortex. The performance of the F-AVD was evaluated from the model experiments, in which the sump model was designed to represent the pump station that operates in Korea. The flow in the sump was measured using the particle image velocimetry (PIV) technique, and the velocity and vorticity distributions were compared both with and without the adoption of the F-AVD. The experimental results indicated that the vortex structures behind the intake pipe were effectively mitigated by installing the F-AVD. The vorticity magnitude behind the intake pipe was reduced in range of 24.8–52.5% after the installation of the F-AVD. However, in the case of a flow rate increase, the efficiency of the F-AVD decreased because of the strong vortex. Thus, an additional anti-vortex device (AVD), which is attached to the backwall or the floor in the sump, is required to prevent the air entrainment in conditions with high flow rates.
topic sump pump
air entrainment
surface vortex
floating anti-vortex device (F-AVD)
url http://www.mdpi.com/2073-4441/10/4/441
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AT hojeseong experimentalstudiesonsurfacevortexmitigationusingthefloatingantivortexdeviceinsumppumps
AT dongsoprhee experimentalstudiesonsurfacevortexmitigationusingthefloatingantivortexdeviceinsumppumps
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