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The Use of Combined Static- and Dynamic-Material-Balance Methods With Real-Time Surveillance Data in Volumetric Gas Reservoirs

机译:静态和动态物质平衡组合方法与实时监视数据在容积式气藏中的结合使用

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Estimating in-place volume associated with each well, leading to estimation of total reservoir in-place volume, is the cornerstone to any reservoir-management practice. Yet, conventional methods do not always lend themselves to routine applications, particularly when used in singular fashion. However, combining these methods on the same plot has considerable merit in that they converge to the same solution when material-balance (MB) -derived average-reservoir pressure is used in a volumetric system. This study presents a systematic procedure for estimating the gas-initially-in-place (GUP) volume when real-time surveillance data of pressure, rate, and temperature are available at the wellhead. Specifically, we show that log-log diagnosis, followed by combined static- and dynamic-MB analysis and transient-productivity-index (PI) analysis, leads to consistent solutions. Thermo-dynamic behavior of fluids is also explored to ensure that converted pressures at the bottomhole and measured rates have consistency and accuracy for reservoir-engineering calculations. Layered systems were selected for this study because they represent most situations. Two synthetic cases probed issues pertaining to average-reservoir-pressure computation with the pseudosteady-state (PSS) approach, and two field examples validated the approach presented here.
机译:估计与每口井相关的就地体积,从而导致对总储层就地体积的估算,是任何储层管理实践的基石。然而,常规方法并不总是适合于常规应用,特别是当以单数形式使用时。但是,将这些方法组合在同一图中具有很大的优点,因为当在体积系统中使用基于物料平衡(MB)的平均储层压力时,它们可以收敛到相同的解决方案。当井口有压力,速率和温度的实时监测数据时,这项研究提出了一种系统的程序来估算原位天然气(GUP)量。具体而言,我们显示对数-对数诊断,再结合进行静态和动态MB分析以及瞬时生产率指数(PI)分析,可得出一致的解决方案。还研究了流体的热力学行为,以确保井底转换压力和测得的速率在油藏工程计算中具有一致性和准确性。选择分层系统进行此研究是因为它们代表大多数情况。两个综合案例探讨了与使用伪稳态(PSS)方法进行的平均储层压力计算有关的问题,两个现场实例验证了此处介绍的方法。

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