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Optimization of fractured well performance of horizontal gas wells

机译:水平气井压裂井性能优化

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摘要

In low-permeability gas reservoirs, horizontal wells have been used to increase the reservoir contact area, and hydraulic fracturing has been further extending the contact between wellbores and reservoirs. This thesis presents an approach to evaluate horizontal well performance for fractured or unfractured gas wells and a sensitivity study of gas well performance in a low permeability formation. A newly developed Distributed Volumetric Sources (DVS) method was used to calculate dimensionless productivity index for a defined source in a box-shaped domain. The unique features of the DVS method are that it can be applied to transient flow and pseudo-steady state flow with a smooth transition between the boundary conditions. In this study, I conducted well performance studies by applying the DVS method to typical tight sandstone gas wells in the US basins. The objective is to determine the best practice to produce horizontal gas wells. For fractured wells, well performance of a single fracture and multiple fractures are compared, and the effect of the number of fractures on productivity of the well is presented based on the well productivity. The results from this study show that every basin has a unique ideal set of fracture number and fracture length. Permeability plays an important role on dictating the location and the dimension of the fractures. This study indicated that in order to achieve optimum production, the lower the permeability of the formation, the higher the number of fractures.
机译:在低渗透气藏中,水平井已被用于增加储层的接触面积,而水力压裂已进一步扩大了井筒与储层之间的接触。本文提出了一种评价裂缝或未裂缝气井水平井性能的方法,以及对低渗透率地层气井性能的敏感性研究。新开发的分布式体积源(DVS)方法用于为盒形域中定义的源计算无量纲生产率指标。 DVS方法的独特之处在于它可以在边界条件之间平滑过渡的情况下应用于瞬态流和拟稳态流。在这项研究中,我通过将DVS方法应用于美国盆地典型的致密砂岩气井进行了油井性能研究。目的是确定生产水平气井的最佳实践。对于压裂井,比较了单条裂缝和多条裂缝的井性能,并基于该井的生产率提出了裂缝数量对井生产率的影响。这项研究的结果表明,每个盆地都有一套独特的理想裂缝数和裂缝长度。渗透率在决定裂缝的位置和尺寸方面起着重要作用。这项研究表明,为了达到最佳产量,地层的渗透率越低,裂缝的数量就越多。

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  • 作者

    Magalhaes, Fellipe Vieira;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en_US
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