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Numerical Investigation of Liquid Carryover in T-Junction with Different Diameter Ratios

机译:不同直径比率液体携带液体携带的数值研究

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In offshore Malaysia, T-junction is installed at the production header as a compact separator to tap produced gas from reservoir as fuel gas for power generation. However, excessive liquid carryover.in T-junction presents a serious operational issue because it trips the whole production platform. The primary objective of present study is to numerically investigate the liquid carryover due to formation of slug, subsequently its liquid carryover at different diameter ratio. The analyses were carried out on a model with 0.0254 m (1 inch) diameter horizontal main arm and a vertically upward side arm using Volume of Fluid Method. Three different sides to main arm diameter ratio of 1.0, 0.5 and 0.3 were investigated with different gas and liquid superficial velocities. The results showed that, while the general trend is true that smaller diameter ratio T-junction has lesser liquid take off capacity, it has a very high frequency of low liquid carryover threshold. In other words, under slug flow, smaller diameter ratio T-junction is constantly transporting liquid even though at a lesser volume in comparison to regular T-junction.
机译:在海上马来西亚,T-Anction安装在生产头部作为紧凑型分离器,以将产生的气体从水库中作为燃气发电。然而,过度的液体携带。T-Junction提出了一个严重的操作问题,因为它追溯到整个生产平台。本研究的主要目的是在数值上研究由于槽的形成而导致液体携带,随后其液体携带以不同的直径比。使用流体方法的体积在0.0254m(1英寸)直径的水平主臂和垂直向上侧臂的模型上进行分析。采用不同的气体和液体浅表速度研究了三个不同臂直径比为1.0,0.5和0.3的不同侧面。结果表明,虽然一般趋势是真实的,但较小的直径比T-结具有较小的液体消耗容量,而且具有非常高的液体携带阈值频率。换句话说,在块流下,与常规T接合相比,在较小的体积中,较小的直径比T-结恒定地输送液体。

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