The Optimum Production Management for Production Problems in Sadi Reservoir of Halfaya Oil Field

Ameer H. Hashim, Mohammed S. Al Jawad, Kassem A. Khlaty
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Abstract

Tight oil reservoirs suffer from a high decline in flow rates and instability of production rates, even after implementing the hydraulic fracturing technique to increase the production rate, but the problem still stands and needs to be overcome. This issue is found in the southeast of Iraq in the Halfaya oil field, especially in the Sadi formation. The goal of this study is to identify an optimum production rate for horizontal and vertical hydraulic fracturing wells using simulator software for prediction, in order to avoid highly depleted fracture storage capacity, which results from high production rates and depletion in flowing pressure. as well as to discuss the production behavior of the wells over their life cycles in the Sadi reservoir. In addition, we utilize a novel approach with production rates for horizontal hydraulic fracturing wells to reach a stable production rate. The results show that the production behavior of hydraulic fracturing wells is clear: producing at a high flow rate depletes the fluid potential of a fracture without providing a reservoir with an opportunity to compensate fluid into fracturing potential. In horizontal hydraulic fracturing wells, conducting an allowable flow rate that satisfied stability. We conclude a suitable flow rate has been identified to avoid high depletion rates and the plateau rate was different than that detected by the operator company, and we advise on future hydraulic fracture well development.
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哈法亚油田萨迪储层生产问题的最佳生产管理
致密油藏流量下降幅度大,生产率不稳定,即使采用水力压裂技术提高了生产率,但问题依然存在,需要加以克服。本研究的目标是利用模拟软件进行预测,确定水平和垂直水力压裂井的最佳生产率,以避免高生产率和流动压力耗竭导致的裂缝存储能力高度耗竭。结果表明,水力压裂井的生产行为非常明显:高流速生产会耗尽裂缝的流体潜能,而储层却没有机会将流体补偿为压裂潜能。在水平水力压裂井中,进行满足稳定性的允许流速。我们的结论是,已经确定了一个合适的流速,以避免高耗竭率,并且高原率与运营商公司检测到的高原率不同,我们对未来的水力压裂井开发提出了建议。
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