首页> 外文会议>2002 Engineering Technology Conference on Energy, Feb 4-5, 2002, Houston, Texas >EFFECT OF INLET CONFIGURATION ON FLOW BEHAVIOR IN A CYLINDRICAL CYCLONE SEPARATOR
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EFFECT OF INLET CONFIGURATION ON FLOW BEHAVIOR IN A CYLINDRICAL CYCLONE SEPARATOR

机译:入口配置对圆柱形旋风分离器内流动特性的影响

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The use of Gas-Liquid Cylindrical Cyclone (GLCC) separators for gas-liquid separation is a new technology for oil and gas industry. Consequently, it is important to understand the flow behavior in the GLCC and effect of different geometrical configurations to enhance separation. The main objective of this study is to address the effect of different inlet configurations on flow behavior in the GLCC by measuring velocity components and turbulent kinetic energy inside the GLCC using a Laser Doppler Velocimeter (LDV). Three different inlet configurations are constructed, namely: one inclined inlet, two inclined inlets and a gradually reduced inlet nozzle. Axial and tangential velocities and turbulent intensities across the GLCC diameter were measured at 24 different axial locations (12.5" to 35.4" below the inlet) for each inlet configuration. Flow rates of 72 and 10 gpm are selected to investigate the effect of flowrate (Reynolds number) on the flow behavior. Measurements are used to create color contour plots of axial and tangential velocity and turbulent kinetic energy. Color contour maps revealed details of the flow behavior.
机译:气液圆柱旋流器(GLCC)分离器用于气液分离是石油和天然气工业的一项新技术。因此,重要的是要了解GLCC中的流动行为以及不同几何构型的影响,以增强分离效果。这项研究的主要目的是通过使用激光多普勒测速仪(LDV)测量GLCC内的速度分量和湍动能来解决GLCC内不同进气口配置对流动特性的影响。构造了三种不同的入口配置,即:一个倾斜的入口,两个倾斜的入口和一个逐渐减小的入口喷嘴。对于每种进口配置,在24个不同的轴向位置(进口下方12.5“至35.4”)测量了GLCC直径上的轴向和切向速度以及湍流强度。选择72 gpm和10 gpm的流速以研究流速(雷诺数)对流动行为的影响。测量用于创建轴向和切向速度以及湍动能的彩色轮廓图。彩色轮廓图揭示了流动行为的细节。

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