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旋风分离器内旋进涡核的PIV显示
引用本文:吴小林,时铭显.旋风分离器内旋进涡核的PIV显示[J].中国化学工程学报,2003,11(6):633-637.
作者姓名:吴小林  时铭显
作者单位:Department of Chemical engineering,University of Petroleum,Beijing 102249,China,Department of Chemical engineering,University of Petroleum,Beijing 102249,China
基金项目:Supported by the National Natural Science Foundation of China (No.20076028)
摘    要:The precessing vortex core (PVC) in a cyclone separator plays an important role in the separation performance and in further understanding of the general law of periodic unsteady flow therein. In this paper, the unsteady flow field is investigated with particle image velocimetry (PIV), and the instantaneous velocity, vorticity,tangential velocity, and radial velocity are acquired by analyzing the images of instantaneous flow. It is for the first time reported that there is a centrifugal flow region close to the dust discharge zone and its maximum value is higher than the mean radial velocity. This discovery is very important for understanding the principle of separation of particles in the area of dust discharge. Determination of the frequency and amplitude of PVC was conducted in the region where the phenomenon of PVC is remarkable. Results agree well with those obtained by hot wire anemometry. The observations of the center of “cortex core and the bimodal distribution of the amplitude of the PVC indicate the vortex core precesses around the geometric axis of the cvclone in its own way.

关 键 词:旋风分离器  旋进涡核  PVC  PIV显示  流场  瞬时速率
修稿时间: 

Visualization of the Precessing Vortex Core in a Cyclone Separator by PIV
Wu Xiaolin,SHI Mingxian.Visualization of the Precessing Vortex Core in a Cyclone Separator by PIV[J].Chinese Journal of Chemical Engineering,2003,11(6):633-637.
Authors:Wu Xiaolin  SHI Mingxian
Affiliation:Department of chemical engineering, University of Petroleum, Beijing,102249, China
Abstract:The precessing vortex core (PVC) in a cyclone separator plays an important role in the separation performance and in further understanding of the general law of periodic unsteady flow therein. In this paper, the unsteady flow field is investigated with particle image velocimetry (PIV), and the instantaneous velocity, vorticity, tangential velocity, and radial velocity are acquired by analyzing the images of instantaneous flow. It is for the first time reported that there is a centrifugal flow region close to the dust discharge zone and its maximum value is higher than the mean radial velocity. This discovery is very important for understanding the principle of separation of particles in the area of dust discharge. Determination of the frequency and amplitude of PVC was conducted in the region where the phenomenon of PVC is remarkable. Results agree well with those obtained by hot wire anemometry. The observations of the center of vortex core and the bimodal distribution of the amplitude of the PVC indicate the vortex core precesses around the geometric axis of the cyclone in its own way.
Keywords:cyclone separator  flow field  instantaneous velocity  precessing vortex core  particle image velocimetry
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