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The Effect of Different Geometrical Configurations of the Performances of Gas-Liquid Cylindrical Cyclone separators (GLCC)

机译:不同几何配置对气液圆柱旋风分离器分离器(GLCC)的性能的影响

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Gas-Liquid Cylindrical Cyclone (GLCC) separator is widely used in the petroleum industry with potential fields of applications. Its performance is strongly influenced by the inlet configuration thus the importance of the behavior of flow in the GLCC and the effects of different geometrical configurations for enhancing its separation are interested in this paper. The main goal of this paper is the deep studying of the effect of different inlet configurations of the performances of GLCC by method 3D CFD simulation. Four different inlets configurations with the inclined angle of 27° and the same cross-sectional nozzle area of about 25% of the area of the cylinder have constructed, namely: (1) one circular inlet, (2) two circular inlets, (3) one taper square reduced nozzle inlet and (4) two taper square reduced nozzle inlets. Axial and tangential velocity of flow across the GLCC diameter are measured at 3 different axial locations (x=-200mm above the inlet; x=200mm and 300mm below the inlet). Two of flow rates are selected to investigate the effect of flow rate (Reynolds number) on the flow behavior. As a result, we propose the use of two taper square reduced nozzle inlets to enhance the separation efficiency because of their effects.
机译:气液圆柱旋风器(GLCC)分离器广泛用于石油工业,具有潜在的应用领域。其性能受到入口配置的强烈影响,因此对GLCC流动的行为和不同几何配置对增强其分离的影响的重要性对本文感兴趣。本文的主要目的是通过方法3D CFD仿真对Glcc的性能的不同入口配置的影响深度研究。四个不同的入口配置具有27°的倾斜角度,并且相同的横截面喷嘴面积约为圆柱面积的约25%的区域,即:(1)一个圆形入口,(2)两个圆形入口(3 )一个锥形方形减小喷嘴入口和(4)两个锥形正方形减小的喷嘴入口。在3个不同的轴向位置(入口上方x = -200mm; x = 200mm和入口下方300mm)测量轴向和切向速度。选择两个流速以研究流速(雷诺数)对流动行为的影响。结果,我们提出了使用两个锥形方形减小的喷嘴入口,以提高分离效率,因为它们的效果。

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