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静电分离器中电流体流场可视化研究
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作者 孔祥领 朱宏武 +2 位作者 mohamed alshehhi AFSHIN Goharzadeh 丁矿 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第6期135-139,共5页
采用粒子成像测速技术(PIV)对线一板式静电分离器中微米级别油滴(2肛m)的流动特征进行可视化研究,得到在充分发展的层流条件下(进口气流流速0.16m/s)电流体随施加电压变化的典型流型及速度分布。结果表明:电流体流型和速度的... 采用粒子成像测速技术(PIV)对线一板式静电分离器中微米级别油滴(2肛m)的流动特征进行可视化研究,得到在充分发展的层流条件下(进口气流流速0.16m/s)电流体随施加电压变化的典型流型及速度分布。结果表明:电流体流型和速度的分布随着施加电压的改变而变化;在外加电压低于起晕电压(小于8kV)时,流场没有明显变化;随着电压的升高(8—12kV),放电电极附近及分离器的下游油滴在静电力的作用下以喷嘴的形式向两个收集电极移动.径向运移速度和放电电极上游轴向速度随电压升高而升高;当施加电压大于12kv时,在放电电极上游电流体二次流以两个对称的反向旋转涡的形式出现,涡的大小随着电压的升高而增大,径向运移速度最高可达0.4m/s,同时在静电分离器下游出现回流,二次流和回流的出现阻碍了流体沿轴向运移;分离效率随着施加电压的增大而增加。 展开更多
关键词 静电分离器 粒子成像测速 电流体 流型 速度分布 二次流 回流
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Numerical Simulation of Turbulent Swirling Pipe Flow with an Internal Conical Bluff Body 被引量:2
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作者 Jinli Song Nabil Kharoua +1 位作者 Lyes Khezzar mohamed alshehhi 《Fluid Dynamics & Materials Processing》 EI 2021年第2期455-470,共16页
Turbulent swirling flow inside a short pipe interacting with a conical bluff body was simulated using the commercial CFD code Fluent.The geometry used is a simplified version of a novel liquid/gas separator used in mu... Turbulent swirling flow inside a short pipe interacting with a conical bluff body was simulated using the commercial CFD code Fluent.The geometry used is a simplified version of a novel liquid/gas separator used in multiphase flow metering.Three turbulence models,belonging to the Reynolds averaged Navier-Stokes(RANS)equations framework,are used.These are,RNG k-ε,SST k-ωand the full Reynolds stress model(RSM)in their steady and unsteady versions.Steady and unsteady RSM simulations show similar behavior.Compared to other turbulence models,they yield the best predictions of the mean velocity profiles though they exhibit some discrepancies in the core region.The influence of the Reynolds number on velocity profiles,swirl decay,and wall pressure on the bluff body are also presented.For Reynolds numbers generating a Rankine-like velocity profile,the width and magnitude of flow reversal zone decreases along the pipe axis disappearing downstream for lower Reynolds numbers.The tangential velocity peaks increase with increasing Reynolds number.The swirl decay rate follows an exponential form in accordance with the existing literature.These flow features would affect the performance of the real separator and,thus,the multiphase flow meter,noticeably. 展开更多
关键词 Swirling pipe flow conical bluff body CFD SEPARATOR
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