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On the Accuracy of Dimensionless Inflow Performance Relationships for Gas Wells

机译:关于气井无量纲流入性能关系的准确性

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Usually four-point backpressure test, an isochronal test or a modified isochronal test is conducted to predict gas well deliverability. During past decades several simple dimensionless inflow performance relationships (IPRs) have been developed to eliminate the need for conducting multi-point test by using only data from a single drawdown or build-up test. The capability and accuracy of these models should be evaluated with measured field data using wide range of fluid and rock properties. This paper addresses the limitations, accuracy and optimal use of proposed dimensionless inflow performance correlations (Mishra and Caudle, 1984, Al-Attar and Al-Zuhair, 2009) based on back-pressure field test data of 53 wells that cover a broad range of AOF, reservoir pressure, well stabilized rate and pressure. The results show that both methods lose their accuracy at high rate and low drawdown conditions with unacceptable overprediction of AOFs. None of the studied models are recommended to use when dimensionless pressure (ratio of the well pressure to the reservoir pressure) is above 0.9. Advantages and ranges of optimal use of different models are discussed through error analysis.
机译:通常进行四点背压试验,进行同胞影测试或改性的同步测试以预测气体良好的可递送性。在过去的几十年中,已经开发出几种简单的无量纲流入性能关系(IPRS),以消除通过使用单个缩减或积聚测试的数据进行多点测试的需求。应使用宽范围的流体和岩石性能进行这些模型的能力和准确性。本文根据53个井的后压场测试数据,解决了提出的无量纲流入性能相关性(Mishra和Caudle,1984,Al-Attar和Al-Zuhair,2009)的局限性,准确性和最佳利用。 AOF,储层压​​力,稳定率和压力良好。结果表明,两种方法都以高速速率和低拔线条件失去了精度,并且对AOF的不可接受的估计。建议在无量纲压力(井压力与储层压力的比率)高于0.9时使用研究的模型。通过误差分析讨论了不同模型的优点和范围。

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