首页> 外文会议>ASME Fluids Engineering Division summer meeting >PARTICLE IMAGE VELOCIMETRY MEASUREMENTS OF FLOW INSIDE A HYDROCYCLONE WITH AN AIR CORE
【24h】

PARTICLE IMAGE VELOCIMETRY MEASUREMENTS OF FLOW INSIDE A HYDROCYCLONE WITH AN AIR CORE

机译:带气孔的液力旋流器内颗粒流动的颗粒图像测速

获取原文

摘要

Hydrocyclone separators are widely used in the oil and mining industries to sort, classify and separate solid particles or liquid droplets within liquid suspensions. In this study, the liquid-air flow inside a mining hydrocyclone is investigated using particle image velocimetry (PIV). Previous work completed by Ke (2016), using the same technique and experimental setup as the current study, mainly focused on the flow velocities in the radial-tangential plane within a hydrocyclone running with an air core. Due to optical limitations, the velocity measurements in the radial-tangential plane were limited to the inlet head. Previous work by Chinmay et al (FEDSM 2017) was also performed which concentrated mainly on the dimensions of the air core. The study revealed several physical phenomena and flow patterns of the multi-phase flow in a hydrocyclone. An air core is generated along the central axis of the hydrocyclone, as the underflow is open to atmosphere. In this study, the flow field in the radial-axial (r-z) plane has been investigated, and measurements have been obtained in the conical regions outside of the inlet head including the center (axially) of the cyclone. Particle Imaging Velocimetry (PIV) method was used with a laser as the light source in order to obtain experimental data for the purpose of developing and validating computational models of hydrocyclone flows. Refractive index matching technique was used, with the hydrocyclone model being made of clear acrylic material. The test liquid used in the experiments was sodium iodide aqueous solution (63.3% Nal by weight), in order to achieve a refractive index match between the curved inner cyclone walls and test fluid. The seed particles used in the experiments were 10 μm silver coated hollow glass spheres which were introduced into the flow by global seeding. Three fields of view (FOV) were investigated in the r-z plane of the hydrocyclone. Two dimensional velocity vector maps were obtained in each of the fields of view. Additionally, a SONARtrac unit was installed in the overflow piping in order to measure the % air content of the cyclone overflow. The PIV and % air content measurements will be presented and discussed.
机译:旋液分离器广泛用于石油和采矿行业,以对液体悬浮液中的固体颗粒或液滴进行分类,分类和分离。在这项研究中,使用粒子图像测速仪(PIV)研究了采矿水力旋流器内部的液-气流动。 Ke(2016)使用与当前研究相同的技术和实验装置完成了之前的工作,主要研究了带有空芯的水力旋流器内径向切向平面内的流速。由于光学限制,径向切向平面中的速度测量仅限于进口头。还执行了Chinmay等人的先前工作(FEDSM 2017),主要集中在空芯的尺寸上。该研究揭示了旋液分离器中多相流的几种物理现象和流型。当底流向大气开放时,会沿着水力旋流器的中心轴产生一个空芯。在这项研究中,已经研究了径向轴(r-z)平面中的流场,并且在进口头外部的锥形区域(包括旋风分离器的中心(轴向))中获得了测量值。为了获得实验数据,以发展和验证水力旋流器的计算模型,使用了以激光为光源的粒子成像测速(PIV)方法。使用了折射率匹配技术,水力旋流器模型由透明的丙烯酸材料制成。实验中使用的测试液体是碘化钠水溶液(Nal重量比为63.3%),以便在弯曲的旋风分离器内壁和测试流体之间实现折射率匹配。实验中使用的种子颗粒是10μm镀银的空心玻璃球,通过整体播种将其引入流中。在水力旋流器的r-z平面上研究了三个视场(FOV)。在每个视场中都获得了二维速度矢量图。此外,在溢流管道中安装了SONARtrac单元,以测量旋风分离器溢流的空气含量。将介绍和讨论PIV和空气含量百分比测量。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号