一种改进的半解析方法预测水平井和分支井动态

A. Fadairo, G. Adeyemi, T. Ogunkunle, Ayotomiwa Evbogame, A. Adesina
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引用次数: 2

摘要

油田开发和油气需求经济评价需要一个准确的模型来预测水平井的性能,因为水平井和分支井在行业中比直井更加突出。文献中已经研究和报道了几种模拟水平井性能的方法。解析法在水平井动态预测中是最简单的方法,但由于无法应用于储层-井筒耦合方程,其预测精度较大。数值方法在现场应用中比解析方法更可靠。然而,它涉及迭代性质,需要更长的计算时间。如果精确地模拟了控制基本流方程,则半解析方法更简单,对现场应用也足够精确。该研究提出了一种新的半解析模型,用于预测水平井和分支井的动态,该模型将沿水平井长度的摩擦、加速度和积累引起的压降纳入控制基本流动方程。通过稳态条件下5660stb/d计压速率的现场数据验证了模型的正确性。新方法估计的稳定流量为5593.9 stb/天,误差为1.2%,比之前四种模型获得的稳定流量值更准确,与仪表读数相比,前四种模型显示出更高的误差百分比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Improved Semi-Analytical Approach for Predicting Horizontal and Multilateral Well Performance
Field development and economic evaluation of hydrocarbon demand for an accurate model for predicting horizontal well performance as horizontal and multilateral wells have become far more prominent in the industry than vertical wells. Several approaches for modelling horizontal well performance have been studied and reported in the literature. Analytical approach is the easiest with large inaccuracy in the prediction of the horizontal well performance because of inability to apply it in reservoir-wellbore coupling equation. Numerical approach is more reliable for field application than analytical approach. However, it involves iterative nature that requires longer computational times. Semi-analytical approach is simpler and sufficiently exact for field applications if the governing fundamental flow equation is accurately modelled. This study presents a new semi-analytical model for predicting horizontal and multilateral well performance, which includes friction, acceleration and accumulation induced pressure drop along horizontal well length into the governing fundamental flow equations. The outcomes of the proposed model have been validated by field data gotten from gauge rate of 5660stb/d at steady-state condition. The estimated steady flow rate of 5593.9 stb/day obtained from the new approach shows an error of 1.2% which is seen to be more accurate than steady flow rate values obtained by four previous models that exhibited higher percentage errors when compared to gauge reading.
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