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A New Method For Calculating Individual Layer Permeability and Skin in a Multilayered Reservoir Using Production Logging Data: The Delta Transient Method

机译:一种使用生产测井数据计算多层储层中各个层渗透性和皮肤的新方法:Delta瞬态方法

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In this work an analytical solution for the inverse problem of a heterogeneous reservoir, composed by several infinite acting homogenous layers, is presented. The solution comprises a small set of ordinary algebraic equations, providing an explicit solution for the inverse problem. The layers may differ in thickness, porosity, fluid viscosity, total compressibility and initial pressure, which are input data. The proposed Method calculates the radial permeability and the wellbore skin factor for each individual layer and requires Production Logging data. The Method's outcomes are important for both mature fields and new discoveries, providing valuable information for enhanced oil recovery techniques and accurate data for geological modeling. In addition, the method is a useful tool for assessing acid job diversion performance, especially on carbonate reservoirs, where acidizing procedures are largely employed. The proposed Delta Transient Method focuses on providing simple calculations and delivering robust results. Operational feasibility of data acquisition has also been taken into account for the development of the Method. The main features of the present work are: 1. The Method calculates the permeability and skin for each individual layer, for an unlimited number of layers; 2. The Method has been designed to be applied to a relatively short single rate flow period (only few hours of drawdown/injection); 3. There is no need for rate changes. Nonetheless, the Method works with rate changes, as long as the principle of superposition is considered; 4. Only two PLT (production-logging tool) flow profiles at distinct times are required for full application of the Method. No stationary data are needed; 5. The calculations for each layer are performed with a small set of algebraic equations, which can be easily modeled in any ordinary spreadsheet software. No graph analyses are required. The Method has a strong operational-practical drive, which consists of demanding only few hours of rig time for data acquisition. Moreover, once permeability and skin for each layer are obtained, a reasonableness check is provided as a final step to the Method. The purpose of this check is to guarantee reliability on the resulting outcomes. Issues concerning formation crossflow, wellbore storage and high transmissibility systems are also addressed. A successful case study is presented, where it took only 10 hours to acquire all necessary data.
机译:在这项工作中,提出了由几种无限作用均匀层组成的异质储层的逆问题的分析解决方案。该解决方案包括一小组普通代数方程,为逆问题提供明确的解决方案。这些层可以不同于厚度,孔隙率,流体粘度,总压缩性和初始压力,这是输入数据。该方法计算每个单层的径向渗透率和井筒皮肤因子,需要生产测井数据。该方法的结果对于成熟领域和新发现都很重要,为增强的石油恢复技术和地质建模准确数据提供了有价值的信息。此外,该方法是用于评估酸性作业转移性能的有用工具,尤其是在碳酸盐储层上,其中酸化程序在很大程度上被使用。所提出的Δtryient方法侧重于提供简单的计算和提供稳健的结果。还考虑了数据采集的操作可行性,以便开发该方法。本作工作的主要特点是:1。该方法计算每个单层的渗透性和皮肤,用于无限数量的层; 2.该方法被设计为应用于相对短的单速率流量(仅限几小时的绘制/注射); 3.不需要率变化。尽管如此,该方法适用于速率变化,只要考虑叠加的原则; 4.完全应用该方法,仅需要两个PLT(生产测井工具)流程轮廓。不需要静止数据; 5.用一小组代数方程执行每层的计算,该等式可以在任何普通的电子表格软件中容易地建模。不需要图形分析。该方法具有强大的操作实用驱动器,该驱动器仅包括几小时的钻机时间进行数据采集。此外,一旦获得了每层的渗透性和皮肤,就可以提供合理性检查作为该方法的最终步骤。此检查的目的是保证结果结果的可靠性。还解决了关于形成跨流,井筒存储和高传输系统的问题。提出了一个成功的案例研究,只需10个小时即可获得所有必要的数据。

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