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New Methodology to Quantify Productivity of Vertical Wells in Naturally Fractured Solution Gas Drive Reservoirs with Dual Porosity and Dual Permeability

机译:用双孔隙率和双渗透率量化天然裂缝溶液气体驱动贮存器中垂直井生产率的新方法

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Forecasting the performance of individual wells is of great importance to oil companies for continuous field production optimization and cost per barrel reduction. Well Performance is measured by evaluating the Inflow Performance & Outflow Performance Relationships (IPR & OPR). For that the need to use the correct IPR for subjected reservoir is very essential. Since many decades, Vogel IPR equation has been used comprehensively for evaluating the productivity of vertical wells in saturated gas drive reservoirs. Vogel’s model successfully evaluates IPR for single porosity solution gas drive in homogenous reservoirs. However, the applicability of Vogel’s IPR for naturally fractured dual porosity-dual permeability reservoirs is questionable; hence this challenge is addressed by the industry only numerically. Due to composite fluid flow behavior between fracture and matrix system in a dual porosity-dual permeability reservoir, there is a pressing need for a new, practical and simple IPR model that takes into account the consideration of fracture parameters. This study investigates the effects of reservoir complex fluid flow behavior on IPR curves for vertical wells drilled in naturally fractured oil saturated reservoirs resulting in the development of an IPR curve for such conditions. A base case simulation model is developed with typical reservoir, fluid and rock properties using black oil model. Using a set of points relating oil production rates to flowing bottom-hole pressures, the dimensionless IPR curves are generated. Fluid and reservoir properties were varied between two porous and permeable media such as Inter-porosity flow co-efficient, storativity ratio, oil gravity, reservoir thickness and bubble point pressure. Inter-porosity flow coefficient and fracture storativity ratio were found to have a significant impact on dimensionless IPR curves. Finally, an attempt is made to converge the results into one simple model using non-linear regression technique in order to get a new empirical IPR correlation for vertical well producing from naturally fractured oil reservoirs. A small and acceptable average absolute error of less than 2% was found with the new proposed empirical IPR model, while comparing the existing published correlations on the same data gives more than 15% error. The developed IPR correlation is accurate enough and can serve as a handy tool for the production engineers to forecast the productivity of wells drilled in a naturally fractured dual porosity- dual permeability saturated oil reservoirs.
机译:预测单井性能的重视石油公司每桶减少连续田生产优化和成本。良好的性能通过评估流入动态&流出性能的关系(IPR&OPR)测量。对于使用正确的知识产权,对经受水库的需求是十分必要的。由于几十年来,沃格尔IPR方程已经被全面用于评估在饱和气驱油藏直井的产量。沃格尔的模型成功地评估知识产权的均质储层孔隙度单溶气驱。然而,Vogel的IPR为自然的适用性断裂双孔隙度 - 双渗透性储层被怀疑;因此,这个挑战是由行业唯一数字解决。由于在双孔隙度 - 双渗透储层裂缝和基质系统之间的复合的流体流动特性,迫切需要一种新的,实用的和简单的模型IPR,考虑到考虑的断裂参数。本研究探讨的储层流体复杂流动行为上IPR曲线垂直井的影响,导致在IPR曲线这样的条件下的发展天然裂缝油饱和储层钻孔。甲碱的情况下的仿真模型与使用黑油模型典型油藏,流体和岩石性质的发展。使用一组与石油生产速率流动井底压力的点,产生的无量纲IPR曲线。流体和储层性质的两个多孔的和可渗透的介质之间变化如间孔隙率流合作效率,储水比,油重力,储层厚度和泡点压力等。间孔隙率流量系数和断裂储水比率被发现有对无量纲IPR曲线的显著影响。最后,试图收敛结果存入使用非线性回归技术,以获得用于垂直井从天然裂缝油藏产生新的经验相关性IPR一个简单的模型。小于2%A小的和可接受的平均绝对误差,用提出的经验模型IPR的新发现,同时,对相同的数据进行比较的现有的已发布的相关性给出了超过15%的误差。所开发的相关知识产权是足够准确的,可以作为一个方便的工具生产工程师预测在天然裂缝双porosity-双渗透率饱和油藏钻井的生产率。

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