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中立浮遊粒子を含む乱れ場の乱流空間特性

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:
1999年02月
DOI:
会議属性:
国内会議
査読:
有り
リンク情報:

日本語フィールド

著者:
小松 利光,押川 英夫,竹内 美礼
題名:
中立浮遊粒子を含む乱れ場の乱流空間特性
発表情報:
水工学論文集 巻: 43 ページ: 395-400
キーワード:
概要:
Turbulence modulation in a flow with neutrally suspended particles has been experimentally investigated. The turbulent field generated by an oscillating grid was adopted as a basic turbulent field. Since there is no mean shear flow in it, the steady state can be easily attained. In the present study, the spatial characteristics, such as 1-dimensional wave number spectra and integral-length scales, in multiphase turbulent flows have been examined on the basis of measurements by traversing FLV. The main results are as follows:
When neutrally suspended particles exist in the flow, new eddies whose dimensionless wave number kd/2π is about 0.2 are generated. The eddies seem to be those of wake due to a relative velocity between a particle and ambient fluid because the value of kd/2π corresponds to the Strouhal number St found behind a rigid sphere in an uniform flow. Consequently, a wave number spectrum has a peak around kd/2π=0.2 if a comparably large number of spherical particles are contained in the flow.
抄録:

英語フィールド

Author:
KOMATSU Toshimitsu, OSHIKAWA Hideo, TAKEUCHI Mirei
Title:
SPATIAL CHARACTERISTICS OF TURBULENCE WITH NEUTRALLY SUSPENDED PARTICLES
Announcement information:
Annual Journal of Hydraulic Engineering, JSCE Vol: 43 Page: 395-400
An abstract:
Turbulence modulation in a flow with neutrally suspended particles has been experimentally investigated. The turbulent field generated by an oscillating grid was adopted as a basic turbulent field. Since there is no mean shear flow in it, the steady state can be easily attained. In the present study, the spatial characteristics, such as 1-dimensional wave number spectra and integral-length scales, in multiphase turbulent flows have been examined on the basis of measurements by traversing FLV. The main results are as follows:
When neutrally suspended particles exist in the flow, new eddies whose dimensionless wave number kd/2π is about 0.2 are generated. The eddies seem to be those of wake due to a relative velocity between a particle and ambient fluid because the value of kd/2π corresponds to the Strouhal number St found behind a rigid sphere in an uniform flow. Consequently, a wave number spectrum has a peak around kd/2π=0.2 if a comparably large number of spherical particles are contained in the flow.


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