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Application of an Inverse Simulator of Single-Phase Flow Analysis for Leakage Pathway Estimation in a Multiphase System for Geologic CO_2 Storage

机译:单相流分析逆模拟器在地质CO_2储存多相系统中泄漏路径估算中的应用

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摘要

When is injected in a brine reservoir, brine or can be discharged into a permeable formation saturated with brine above the storage reservoir along a leakage pathway, if present. In most situations, the overlying formation can act as a single-phase aquifer with only brine leakage before leaks. This study examines the applicability of a developed inverse code for single-phase fluids to detect leakage pathway locations in view of the overlying formation using pressure anomalies induced by leaks. Before applying inverse analysis, forward modeling is performed using the TOUGH2 model to determine brine and leakage in a homogeneous conceptual model, and the simulated pressure profiles at monitoring wells are used as measurements in the inverse model. In the inverse code, an important consideration is that the vertical hydraulic conductivity and cross-sectional area of a leakage pathway that are inherent to a leakage term in the mass balance equation are integrated as a single parameter to estimate the leakage pathway locations. This method eliminates the impact of the uncertainty of the leakage pathway size on the accuracy of leakage pathway estimation. The inverse model examines the effect of the number of monitoring wells, monitoring periods and leakage into the overlying formation on the accuracy of leakage pathway estimation according to eleven application examples. The comparison between the results of the single-phase inverse code and iTOUGH2 code illustrates that the single-phase inverse model can be applicable to the leakage pathway estimation in a multiphase flow system.
机译:当注入盐水储层时,盐水或可将其沿泄漏路径(如果存在)排放到储层上方的盐水饱和的可渗透地层中。在大多数情况下,上覆地层可以充当单相含水层,泄漏前仅盐水泄漏。这项研究检查了开发的单相流体反演代码是否适用于利用泄漏引起的压力异常来覆盖地层的情况,以检测泄漏路径位置。在应用反分析之前,先使用TOUGH2模型进行正向建模,以确定均匀概念模型中的盐水和泄漏量,然后将监控井处的模拟压力曲线用作反模型中的测量值。在反码中,重要的考虑因素是将质量平衡方程中泄漏项固有的垂直水力传导率和泄漏路径的横截面面积作为单个参数进行积分,以估计泄漏路径的位置。该方法消除了泄漏路径尺寸的不确定性对泄漏路径估计准确性的影响。逆模型根据11个应用实例,考察了监测井数量,监测周期以及上层地层的渗漏对渗漏通道估算准确性的影响。单相逆代码和iTOUGH2代码的结果比较表明,单相逆模型可适用于多相流系统中的泄漏路径估计。

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