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A New Method to Predict Performance of Horizontal and Multilateral Wells

机译:一种预测水平和多边井性能的新方法

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Production enhancement and ultimate recovery improvement have given horizontal wells the edge over vertical wells in many marginal reservoirs. However, it is more expensive to drill and complete a horizontal well than a vertical one. Therefore, to determine the economical feasibility of drilling a horizontal well, engineers need reliable methods to estimate its productivity. After a broad literature review, a simple semi-analytical model has been developed in this study for predicting the productivity of horizontal oil wells. This model couples flow from a box-shaped drainage volume to flow in the wellbore. Along with friction, acceleration and fluid inflow effect, change in flow regime from laminar to turbulent is also taken into account to describe flow in the wellbore. The reservoir inflow model used in this productivity model represents flow in the reservoir using a combination of one-dimensional and two-dimensional models and also considers varying skin along the wellbore to account for the heterogeneity of near wellbore region due to drilling fluid invasion into formation. In addition, reservoir permeability anisotropy and convergence of flow to the wellbore have been taken into account in this inflow model. Comparison of this model with three existing models using field data reveals that the proposed model is more accurate due to more realistic modeling of reservoir inflow and wellbore flow. Semi-analytical nature of this coupling model makes it comprehensive and applicable to reservoirs with varying conditions, especially heterogeneous reservoirs. Moreover, this productivity model can be easily extended to estimate the deliverability of multilateral wells by coupling the inflow performance of individual laterals with hydraulics in build-up sections and the main vertical section. A logical procedure for calculating the deliverability of multilateral wells by using this productivity model is described in this paper.
机译:生产增强和最终的恢复改进使水平井在许多边缘储层中的垂直井上的边缘。然而,钻井和完成比垂直的水平更昂贵。因此,为了确定钻井水平井的经济可行性,工程师需要可靠的方法来估计其生产率。在广泛的文献综述之后,本研究开发了一种简单的半分析模型,以预测水平油井的生产率。该模型耦合从箱形排水量流动流动在井筒中流动。随着摩擦,加速和流体流入效应,还考虑了从层流到湍流的流动制度的变化,以描述井筒的流动。在该生产率模型中使用的库流入模型代表了使用一维和二维模型的组合来储存器中的流动,并且还认为由于钻井液侵入形成,因此沿着井筒的不同皮肤考虑到井眼区域的异质性。此外,在该流入模型中,已经考虑了在该流入模型中考虑了储层渗透性各向异性和流量的流动收敛。使用现场数据的三种现有模型的该模型的比较显示,由于水库流入和井筒流动的更现实的建模,所提出的模型更准确。该耦合模型的半分析性质使其全面且适用于具有不同条件的储层,尤其是异构水库。此外,这种生产率模型可以很容易地扩展以估算多边井的可传递性,通过在积聚部分和主垂直部分中耦合具有液压的个体侧面的流入性能。本文描述了通过使用该生产率模型计算多边孔的可交换性的逻辑步骤。

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