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首页> 外文期刊>Journal of Engineering Research >New universal two-phase choke correlations developed using non-linear multivariable optimization technique
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New universal two-phase choke correlations developed using non-linear multivariable optimization technique

机译:使用非线性多变量优化技术开发的新通用两相扼流圈相关性

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Production of hydrocarbons from the reservoir must go through surface chokes. The choke is installed to control the surface flow rate of the hydrocarbons and produce it at the optimum flow rate. Thus, the production rate follows the recommendation of the production engineers to prevent problems such as water coning. Accurate prediction of the surface flow rate is crucial as it will lead to fulfil the development plan’s goals of the reservoir and optimize the production. Many correlations were developed to predict the flow rate through surface choke and most of them used one set of data from a single reservoir to develop the correlation. Using these correlations, which are based on limited data, might give results with high error. A new optimization technique is used to develop two universal choke correlations for better prediction of the two-phase flow rate for the oil wells. These correlations predict the liquid flow rate as a function of gas-liquid ratio, choke diameter, wellhead pressure, and oil API gravity. A total of 835 field tests from five different reservoirs were used in developing these correlations, thus, covering a wide range of data set. The new choke correlations proved to predict the flow rate with higher accuracy than the existing correlations by approximately 9%. The?results?from?this?study?will greatly assist petroleum engineers to have particular estimations of liquid flow rates from wellhead chocks.
机译:从水库生产的碳氢化合物必须穿过表面窒息。安装扼流圈以控制烃的表面流速并以最佳流速产生。因此,生产率遵循生产工程师的建议,以防止诸如水绑定等问题。精确的表面流量预测是至关重要的,因为它将实现储层的发展目标并优化生产。开发了许多相关性以通过表面扼流圈预测流速,并且它们中的大多数使用来自单个储库的一组数据来发展相关性。使用基于有限数据的这些相关性可能会产生高误差的结果。一种新的优化技术用于开发两个通用扼流圈相关性,以便更好地预测油井的两相流量。这些相关性预测了作为气液比,扼流直径,井口压力和油API重力的函数的液体流速。从而使用来自五种不同的储层的835个现场测试在开发这些相关性,因此涵盖了各种数据集。事实证明,新的扼流相关性以预测比现有相关性更高的流量大约9%。 ?结果?来自?这个研究?将大致帮助石油工程师从井口芯片上特别估计液体流速。

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