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Investigation of hydraulic fracturing operation and fracture propagation simulation in reservoir rock

机译:油藏水力压裂作业及裂缝扩展模拟研究

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For many decades most oil wells in Iran have produced using their natural flow potential and haven't needed to be fractured. As time goes by, the reservoir pressure depletes and the need for hydraulic fracturing as a stimulation practice arises. Nonetheless there is no record of successful hydraulic fracturing in Iran. The Bangestan reservoir with a suitable amount of oil in place and good rock reservoirs, has been selected for the present research work. In this work, the in situ stress profile was calculated by using the available petrophysical data. This is achieved by using poroelastic theory for the stresses, and the Mohr-Coulomb criterion to predict failure. The model leads to easily computed expressions for calculating the pressure required to maintain hydraulic fracturing. Then the appropriate depth for treatment was determined. The results indicate that Ilam and Sarvak formations could be good candidates for hydraulic fracturing. Then, for two layers, a hydraulic fracture was designed and the production was predicted and the Net Present Value (NPV) resulting from the fracture of both layers was investigated.
机译:几十年来,伊朗的大多数油井都是利用其自然流量潜力生产的,不需要压裂。随着时间的流逝,储层压力耗尽,并且随着增产实践,需要进行水力压裂。尽管如此,在伊朗没有成功进行水力压裂的记录。本研究工作已选择具有适当数量的石油的Bangestan油藏和良好的岩石油藏。在这项工作中,通过使用可用的岩石物理数据来计算原位应力分布。这是通过使用多孔弹性理论来确定应力,并使用Mohr-Coulomb准则来预测破坏来实现的。该模型得出易于计算的表达式,用于计算维持水力压裂所需的压力。然后确定适当的治疗深度。结果表明,Ilam和Sarvak地层可能是水力压裂的良好候选者。然后,对于两层,设计了水力裂缝,并预测了产量,并研究了由两层裂缝产生的净现值(NPV)。

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