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Two-Phase Flow Choke Performance in High Rate Gas Condensate Wells

机译:高速率气体冷凝水井两相流动扼流圈性能

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Multiphase flow occurs in almost all producing oil and gas/condensate wells .Wellhead chokes are special equipment that widely used in the petroleum industry to control flow rate, to maintain well allowable, to protect surface equipments, to prevent water and gas coning and to provide the necessary backpressure to reservoir to avoid formation damage from excessive drawdown. Accurate modeling of choke performance and selection of optimum choke size is vitally important for a petroleum engineer in production from reservoirs due to high sensitivity of oil and gas production to choke size. Two main approaches have been proposed for prediction of multiphase flow through chokes can be classified as either analytical or empirical and majority of correlations were developed for critical flow conditions. Although most of the correlations available to petroleum engineers are for critical flow but in lots of high rate gas/condensate wells subcritical flow occurs in large choke sizes.There is no empirical correlation for wellhead choke performance under subcritical condition for high rate gas condensate wells, especially in large choke sizes. The first aim of this paper is to develop a new simple empirical Gilbert type correlation for high rate gas condensate wells under subcritical flow in large choke sizes (40/64 in. to 192/64 in.) using non-linear regression analysis based on 61 field data points of 15 wells from ten different fields. The second is to extend the work of Al-Attar for high rate gas condensate wells flowing through large choke size under subcritical flow conditions and check the applicability and advantages.Finally, statistical comparison between these two approaches is done with different error parameters.
机译:多相流动发生在几乎所有生产的油气/冷凝水井中。威尔士窒息是广泛用于石油工业的特殊设备,以控制流速,保持允许良好的,保护表面设备,防止水和天然气刺刀和提供储层的必要背压,以避免过度缩减的形成损坏。由于石油和天然气生产的高敏感性,精确的扼流圈性能和最佳扼流尺寸的选择对石油工程师来说至关重要。已经提出了两种主要方法以通过扼流圈预测多相流动可以被归类为分析或经验,并且为临界流动条件开发了大多数相关性。尽管石油工程师可用的大多数相关性用于临界流量,但大量的高速速率气/冷凝水井亚临界流量发生在大扼流尺寸下。在亚临界条件下对井口扼流圈性能无实证相关性,用于高速储气气体冷凝水井,特别是大扼流尺寸。本文的第一个目的是开发一种新的简单经验吉尔伯特型相关性,用于大临界流量的大扼流尺寸(40/64英寸)的亚临界流量下使用非线性回归分析从十个不同的领域的61个字段数据点15个井。第二代是在亚临界流动条件下延长血液凝聚井的高速气体冷凝水井的工作,并检查适用性和优势。最后,这两种方法之间的统计比较是用不同的误差参数进行。

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