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Effect of Stagger Angle on the Three-Dimensional Separation Around a NACA65 Blade in a Decelerating Flow

発表形態:
原著論文
主要業績:
主要業績
単著・共著:
共著
発表年月:
2021年01月
DOI:
会議属性:
指定なし
査読:
有り
リンク情報:

日本語フィールド

著者:
Yoichi Kinoue, Yuya Matsumoto, Masaki Sakaguchi, Norimasa Shiomi
題名:
Effect of Stagger Angle on the Three-Dimensional Separation Around a NACA65 Blade in a Decelerating Flow
発表情報:
International Journal of Fluid Machinery and Systems 巻: 14 号: 1 ページ: 34-41
キーワード:
Three-dimensional separation, NACA65 blade, decelerating flow, five-hole probe, PIV
概要:
抄録:
In order to examine the fundamental characteristics of a corner separation in a decelerating cascade flow, an experimental apparatus was made and the three-dimensional separation around a NACA65 blade in a decelerating channel flow was investigated experimentally. Effect of stagger angle of 14 deg. and 10 deg. on the channel flow was focused on. The experimental investigation by the five-hole probe showed that the accumulations of the low energy fluid was seen around the corner part and the overturning flow due to the secondary flow existed for 14 deg. of stagger angle, whereas the accumulations of the low energy fluid were seen at around midspan for 10 deg. of stagger angle. PIV measurement showed that various focus-type separations were seen in the flow for 10 deg. of stagger angle and three-dimensional vortex structure was considered by using a vortex filament.

英語フィールド

Author:
Yoichi Kinoue, Yuya Matsumoto, Masaki Sakaguchi, Norimasa Shiomi
Title:
Effect of Stagger Angle on the Three-Dimensional Separation Around a NACA65 Blade in a Decelerating Flow
Announcement information:
International Journal of Fluid Machinery and Systems Vol: 14 Issue: 1 Page: 34-41
Keyword:
Three-dimensional separation, NACA65 blade, decelerating flow, five-hole probe, PIV
An abstract:
In order to examine the fundamental characteristics of a corner separation in a decelerating cascade flow, an experimental apparatus was made and the three-dimensional separation around a NACA65 blade in a decelerating channel flow was investigated experimentally. Effect of stagger angle of 14 deg. and 10 deg. on the channel flow was focused on. The experimental investigation by the five-hole probe showed that the accumulations of the low energy fluid was seen around the corner part and the overturning flow due to the secondary flow existed for 14 deg. of stagger angle, whereas the accumulations of the low energy fluid were seen at around midspan for 10 deg. of stagger angle. PIV measurement showed that various focus-type separations were seen in the flow for 10 deg. of stagger angle and three-dimensional vortex structure was considered by using a vortex filament.


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