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High-resolution crosswell imaging of a west Texas carbonate reservoir: Part 5—Core analysis

机译:德克萨斯州西部碳酸盐岩储层的高分辨率井间成像:第5部分—岩心分析

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We conducted a core analysis program to provide supporting data to a series of crosswell field experiments being carried out in McElroy Field by Stanford University's Seismic Tomography Project. The objective of these experiments is to demonstrate the use of crosswell seismic profiling for reservoir characterization and for monitoring CO_2 flooding. For these west Texas carbonates, we estimate that CO_2 saturation causes P-wave velocity to change by -1.9% (pooled average, range = -6.3 to +0.1%), S-wave velocity by +0.6% (range = 0 to 2.7%), and the P-to-S velocity ratio by -2.4% (range = -6.4 to -0.3%). When we compare these results to the precisions we can expect from traveltime tomography (about ±1% for P- and S-wave velocity and about ?2% for the P-to-S velocity ratio), we conclude that time-lapse traveltime tomography is sensitive enough to resolve changes in the P-wave velocity, S-wave velocity, and P-to-S velocity ratio that result from CO_2 saturation. We concentrated here on the potential for CO_2 saturation to affect seismic velocities. The potential for CO_2 saturation to affect other seismic properties, not discussed here, may prove to be more significant (e.g., P-wave and S-wave impedance).
机译:我们进行了一项核心分析程序,以为斯坦福大学地震层析成像项目在McElroy油田进行的一系列井间油田实验提供支持数据。这些实验的目的是证明将井间地震剖面图用于储层表征和监测CO_2驱替。对于这些西得克萨斯州的碳酸盐岩,我们估计CO_2饱和度会导致P波速度变化-1.9%(合并平均值,范围= -6.3至+0.1%),S波速度变化+ 0.6%(范围= 0至2.7) %),P / S速度比降低-2.4%(范围= -6.4至-0.3%)。当我们将这些结果与行进时间层析成像所能达到的精度进行比较时(P波和S波速度的±1%左右,P波与S速度的比率约为2%),我们得出结论:行进时间层析成像技术足够灵敏,可以解决由CO_2饱和导致的P波速度,S波速度和P对S速度比的变化。在这里,我们集中讨论了CO_2饱和度影响地震速度的可能性。此处未讨论的CO_2饱和度可能会影响其他地震特性的潜力可能更大(例如,P波和S波阻抗)。

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