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Quantitative characterization of interlayer interference and productivity prediction of directional wells in the multilayer commingled production of ordinary offshore heavy oil reservoirs

机译:普通海上稠油油藏多层混合生产中层间干扰定量表征及定向井产能预测

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摘要

Based on the physical experiment of visible multi-tube water flooding, in combination with field production data, the interlayer interference in multilayer commingled production of ordinary offshore heavy oil reservoirs is quantitatively characterized and an appropriate productivity prediction method of directional wells is established for multilayer commingled production of ordinary heavy oil reservoirs. The dynamic relationship of interference coefficients between fluid and oil production indexes is obtained for the multilayer commingled production of ordinary heavy oil reservoirs. The Vandervlis directional well productivity equation is revised by introducing interference coefficient with consideration of starting pressure gradient and a dynamic productivity prediction equation is finally established suitable for multilayer commingled production of ordinary heavy oil reservoirs. Interlayer interference is mainly controlled by vertical reservoir permeability difference, which can be comprehensively characterized by reservoir reference permeability, permeability contrast and permeability deviation. The productivity of wells with different water-cut stages is variously affected by interlayer interference. This influence will be intensified in high water-cut situation, which needs appropriate adjustment measures. The productivity can be more accurately predicted by considering interlayer interference, and the revised directional well deliverability equation can be well applied to field production.
机译:在可见多管注水物理实验的基础上,结合现场生产资料,定量分析了普通海上稠油油层混合采油中的层间干扰,建立了适合于多层混合油的定向井产能预测方法生产普通的稠油油藏。对于普通稠油油藏的多层混合生产,获得了流体和采油指标之间干扰系数的动态关系。通过引入干扰系数并考虑起始压力梯度,修正了范德弗利斯定向井产能方程,最终建立了适用于普通稠油油藏多层混合生产的动态产能预测方程。层间干扰主要由垂直储层渗透率差异控制,可以通过储层参考渗透率,渗透率对比和渗透率偏差来综合表征。不同含水期的油井的生产率受到层间干扰的不同影响。在高含水情况下,这种影响会加剧,需要采取适当的调整措施。通过考虑层间干扰,可以更准确地预测生产率,并且可以将修正后的定向井产能方程很好地应用于现场生产。

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