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Application of Horizontal Wells to Improve Injectivity During Polymer Flood Processes

机译:在聚合物驱过程中水平井的应用以提高注入能力

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This numerical study was undertaken to investigate and compare the performances of polymer flood processes through horizontal or vertical wells. To achieve the objective, the author performed an extensive numerical simulation for 3 different well configurations under polymer flood followed by waterflood. The potential for a horizontal well application was assessed through different scenarios in combinations of injection and production wells and reservoir geometry. Other parameters included the length and spacing of horizontal injectors and horizontal or vertical producers. For different parameters of the system, performances were compared in terms of cumulative recovery and water-oil ratio at the production well and pressure drop or injectivity at the injection well. Results demonstrate that additional oil can be recovered and injectivity was significantly improved by utilizing a combination of horizontal wells when the same volume of fluid is injected into the reservoir. The improvement of injectivity through a horizontal injection well was higher when it was combined with a horizontal producer. Parameters such as reservoir thickness, well spacing, and well length are also shown to impact the predicted injectivity. Improvement in injectivity is obtained for thicker and larger reservoirs and longer horizontal wells.
机译:进行了该数值研究,以调查和比较通过水平或垂直井进行的聚合物驱过程的性能。为了实现这一目标,作者对聚合物驱随后注水的3种不同井配置进行了广泛的数值模拟。在注入和生产井以及储层几何形状的组合中,通过不同的方案评估了水平井应用的潜力。其他参数包括水平注入器和水平或垂直生产器的长度和间距。对于系统的不同参数,根据生产井的累计采收率和水油比以及注入井的压降或注入率对性能进行了比较。结果表明,当向储层中注入相同体积的流体时,通过利用水平井的组合,可以采收更多的油,并显着提高注入能力。当与水平生产井结合时,通过水平注入井的注入能力的改善更高。还显示了诸如储层厚度,井距和井长之类的参数,它们会影响预测的注入量。对于较厚和较大的油藏和较长的水平井,可以提高注入量。

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