Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force
An experimental investigation of active flow control on a three-dimensional (3D) curved surface bluff body was conducted by using a string-type plasma actuator. The 3D bluff body model tested in this study was composed of a quarter sphere and a half cylinder, and the Reynolds number based on the dia...
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doaj-5a1b9fedffba43e5a7fc6f8a58e5319b2020-11-25T02:36:04ZengMDPI AGEnergies1996-10732020-02-0113487210.3390/en13040872en13040872Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag ForceTakatoshi Matsubara0Yoshiki Shima1Hikaru Aono2Hitoshi Ishikawa3Takehiko Segawa4Graduate School of Engineering, Tokyo University of Science, Tokyo 125-8585, JapanGraduate School of Engineering, Tokyo University of Science, Tokyo 125-8585, JapanDepartment of Mechanical Engineering, Tokyo University of Science, Tokyo 125-8585, JapanDepartment of Mechanical Engineering, Tokyo University of Science, Tokyo 125-8585, JapanResearch Institute for Energy Conservation, National Institute of Advanced Industrial Science and Technology (AIST), Ibaraki 305-8564, JapanAn experimental investigation of active flow control on a three-dimensional (3D) curved surface bluff body was conducted by using a string-type plasma actuator. The 3D bluff body model tested in this study was composed of a quarter sphere and a half cylinder, and the Reynolds number based on the diameter of half cylinder was set at 1.3 × 10<sup>4</sup>. The modulation drive was adopted for flow control, and the control effects of variations in dimensionless burst frequency (<i>f<sub>m</sub></i><sup>+</sup>) normalized by the width of the model and freestream velocity were studied. Velocity distributions analyzed by particle image velocimetry showed that the recirculation region behind the model shrank due to the flow control. The static pressure distributions on the back surface of the model tended to decrease under any <i>f<sub>m</sub></i><sup>+</sup> set in this study, especially in the ranges of 0.40 ≤ <i>f<sub>m</sub></i><sup>+</sup> ≤ 0.64. The drag coefficient reached its maximum value under the similar ranges of <i>f<sub>m</sub></i><sup>+</sup>. Although the aerodynamic wake sharpening was observed due to the flow control, the entrainment of separated flow into the back surface of the model was enhanced. This scenario of wake manipulation was considered to be responsible for increasing drag acting on the model.https://www.mdpi.com/1996-1073/13/4/872flow controlbluff bodyplasma actuatorpivstatic pressure distributionsdrag coefficient |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Takatoshi Matsubara Yoshiki Shima Hikaru Aono Hitoshi Ishikawa Takehiko Segawa |
spellingShingle |
Takatoshi Matsubara Yoshiki Shima Hikaru Aono Hitoshi Ishikawa Takehiko Segawa Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force Energies flow control bluff body plasma actuator piv static pressure distributions drag coefficient |
author_facet |
Takatoshi Matsubara Yoshiki Shima Hikaru Aono Hitoshi Ishikawa Takehiko Segawa |
author_sort |
Takatoshi Matsubara |
title |
Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force |
title_short |
Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force |
title_full |
Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force |
title_fullStr |
Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force |
title_full_unstemmed |
Effects of Jet Induced by String-type Plasma Actuator on Flow Around Three-Dimensional Bluff Body and Drag Force |
title_sort |
effects of jet induced by string-type plasma actuator on flow around three-dimensional bluff body and drag force |
publisher |
MDPI AG |
series |
Energies |
issn |
1996-1073 |
publishDate |
2020-02-01 |
description |
An experimental investigation of active flow control on a three-dimensional (3D) curved surface bluff body was conducted by using a string-type plasma actuator. The 3D bluff body model tested in this study was composed of a quarter sphere and a half cylinder, and the Reynolds number based on the diameter of half cylinder was set at 1.3 × 10<sup>4</sup>. The modulation drive was adopted for flow control, and the control effects of variations in dimensionless burst frequency (<i>f<sub>m</sub></i><sup>+</sup>) normalized by the width of the model and freestream velocity were studied. Velocity distributions analyzed by particle image velocimetry showed that the recirculation region behind the model shrank due to the flow control. The static pressure distributions on the back surface of the model tended to decrease under any <i>f<sub>m</sub></i><sup>+</sup> set in this study, especially in the ranges of 0.40 ≤ <i>f<sub>m</sub></i><sup>+</sup> ≤ 0.64. The drag coefficient reached its maximum value under the similar ranges of <i>f<sub>m</sub></i><sup>+</sup>. Although the aerodynamic wake sharpening was observed due to the flow control, the entrainment of separated flow into the back surface of the model was enhanced. This scenario of wake manipulation was considered to be responsible for increasing drag acting on the model. |
topic |
flow control bluff body plasma actuator piv static pressure distributions drag coefficient |
url |
https://www.mdpi.com/1996-1073/13/4/872 |
work_keys_str_mv |
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