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A Novel Methodology for Estimation of In-Situ Relative Permeabilities from Wireline Formation Tester Data in an Abu Dhabi Carbonate Reservoir

机译:一种新型方法,用于估计ABU Dhabi碳酸盐储层中有线形成测试仪数据的原位相对渗透性

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A multilayer carbonate reservoir,having medium to low permeabilities with distinctive oil-water contacts, is in an appraisal stage.Large data gathering including rigorous coring is underway in the field.It is identified that the slowest part of the data evaluation is generally SCAL analyses due to its laborious workflow.A new approach is proposed by introducing a wireline formation tester(WFT)multiphase flow analysis to obtain relative permeabilities.The WFT tool is commonly used in this field to measure pressures and collect samples.In this paper we present a novel methodology for estimating in-situ relative permeability curves with the help of available WFT multiphase flow data and its numerical optimization. During drilling of a well the formation is exposed to mud filtrate invasion.The invasion displaces oil in the vicinity of the wellbore,much like a small water flooding experiment in the case of immiscible mud filtrate and formation fluid.A WFT sampling operation in a multiphase flow environment provides an opportunity for determining related properties by utilizing bottom-hole pressure and water-cut data.A numerical model replicates the mud filtrate invasion and sampling with reservoir properties and WFT tool geometry.The numerical simulation model consists of a proper definition of reservoir properties as well as WFT tool geometry,including size and shape of flow inlets,along with tool storage and fluid segregation effects.The model is embedded in an optimization workflow and relative permeability curves, damage skin and depth of mud filtrate invasion are then estimated by minimizing a misfit function between measured and modeled pressures and water-cuts.The relative permeability curves are parame- terized using industry accepted models.The optimization workflow uses a distribution function of response parameters where the entire parameter range is included in the numerical runs,thus ensuring that a global optimum is found.Initial parameter estimates are determined from open hole logs,such as resistivity,dielectric,magnetic nuclear resonance and from pressure transient analysis. The methodology developed in this paper is validated by application to a synthetic dataset with a known solution,and it is subsequently demonstrated on actual field data from a WFT sampling operation. The results of this paper demonstrate that it is possible to reliably estimate multiphase flow properties from WFT sampling data.The key contributions of this study are to show the capability of estimating a variety of multiphase flow properties from routine WFT cleanup data and to establish an automated approach,including a novel inversion methodology,to reduce the turnaround time.
机译:具有中等碳酸盐储层的多层碳酸盐储层在具有独特的油水触点的渗透率下,是在评估阶段。在该领域正在进行包括严格冠的数据收集。确定数据评估最慢的部分是累积分析由于其费力的工作流程。通过引入有线形成测试仪(WFT)多相流动分析来提出新方法以获得相对渗透率。WFT工具通常用于该字段以测量压力并收集样品。在本文中,我们展示了借助可用的WFT多相流量数据及其数值优化来估计原位相对渗透曲线的新方法。在钻井期间,形成形成泥浆滤液侵袭。侵袭在井筒附近取代油,在泥浆滤液和形成液中的情况下,较多的水泛洪水实验。多相中的WFT采样操作。流量环境提供了通过利用底孔压力和水切割数据来确定相关性能的机会。数值模型复制储层性能和WFT刀具几何的泥浆滤液侵入和取样。数值模拟模型包括水库的适当定义属性以及WFT工具几何形状,包括流入口的尺寸和形状,以及刀具存储和流体隔离效果。模型嵌入优化工作流程和相对渗透性曲线,然后估计损伤皮肤和泥浆滤液侵袭的损伤皮肤和深度在测量和建模的压力和水切口之间最小化不足功能。相对渗透性曲率使用行业已接受的模型进行次数。优化工作流使用响应参数的分布函数,其中整个参数范围包含在数值运行中,从而确保找到全局最佳.Inialial参数估计从开孔日志确定。 ,例如电阻率,电介质,磁性核共振和压力瞬态分析。本文开发的方法通过应用于具有已知解决方案的合成数据集来验证,随后在来自WFT采样操作的实际现场数据上进行说明。本文的结果表明,可以从WFT采样数据中可靠地估计多相流动性质。本研究的主要贡献是展示从常规WFT清理数据估计各种多相流动性能并建立自动化的能力方法,包括一种新型反转方法,以减少周转时间。

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