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Sensitivity Analysis of Multiphase Flow in a Well Using PROSPER

机译:利用繁荣井多相流的敏感性分析

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摘要

Pressure drop in a vertical or deviated borehole has been found to be due to hydrostatic changes and friction as a result of the produced fluids flowing to the surface. When oil flows upwards, the flowing pressure along the tubing string drops, and this makes gas to start liberating. Thus, multiphase flow forms in the tubing string. Hence, adequate modelling of vertical lift performance is required to predict the pressure drop and subsequently the wellbore pressure because many factors are involved [1]. In this work, sensitivity analysis of multiphase flow in a well has been carried out with the aid of PROSPER in which the most accurate correlation was chosen from twelve selected built-in correlations present in the program to predict the pressure drop via gradient matching. A sensitivity analysis of the well was further performed to investigate the parameters such as tubing diameter, gas-oil ratio and wellhead pressure that were affecting the vertical lift performance of a high water cut well. The results obtained from the correlation matching showed that Dun and Ros [2] original correlation was the best fit correlation for the well. The results of the sensitivity analysis revealed that reduction of wellhead pressure from 600 psi to 400 psi could increase liquid rate by 41%. An adjustment of wellhead pressure was found to give the most significant impact on the production rate of the well as compared to other two parameters studied.
机译:已经发现垂直或偏离钻孔中的压降是由于流动到表面的产生的流体的静压变化和摩擦。当油向上流动时,沿管柱的流动压力滴落,这使得气体开始解放。因此,在管柱中的多相流动形成。因此,需要足够的垂直提升性能建模来预测压降,随后是井眼压力,因为许多因素涉及[1]。在这项工作中,借助于繁荣来执行井中多相流的敏感性分析,其中最准确的相关性从程序中存在的十二个选择,以预测通过梯度匹配的压力下降。进一步进行了对井的灵敏度分析,以研究影响高水位井的垂直提升性能的管道直径,气体油比和井口压力等参数。从相关匹配中获得的结果表明,DUN和ROS [2]原始相关性是对井的最佳拟合相关性。敏感性分析的结果显示,从600psi到400psi的井口压力的降低可以增加液体率为41%。与所研究的其他两个参数相比,发现对井口压力的调整给出了对良好的生产率的最显着影响。

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