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The First Visualization of Acid Treatments on Carbonates With 3D Nuclear Magnetic Resonance Imaging (NMRI)

机译:3D核磁共振成像的碳酸盐酸处理的第一次可视化(NMRI)

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Carbonate reservoirs with their high hydrocarbon potential show often a great heterogeneity in their inner rock structure, wherefore stimulation treatments are often necessary to maintain or establish fluid production. Therefore, core flow tests are usually conducted to test and model stimulation treatments within a laboratory scale in order to predict their performance. The visualization of wormholes that were created within core flow tests requires novel technologies for evaluation and pathway prediction purposes. Unfortunately, past visualization techniques were always associated with the destruction of the core sample and in that way, an increased demand raised in non-destructive methods. Nuclear Magnetic Resonance Imaging (NMRI) is such a method that fulfills the approach of being non-destructive. The technology is widely known by medical applications, but has never been used before in correlation with 3D rock imaging. Hence, this study developed a procedure on how to use the NMRI technology to visualize wormholes with NMRI in 3D. Therefore, a comprehensive study was started by initially choosing and obtaining various core samples that have different contents of calcite and dolomite. These core samples were imaged with the NMRI and μCT technology in their unchanged state as well as basic petrophysical experiments were conducted for initial experiments. The μCT technology was utilized as reference visualization technique, since it provides a very high resolution with a corresponding high level of detail. Afterwards, core flow tests were conducted on the core samples with various acid systems and wormholes generated. Finally, the core samples with wormholes were imaged again with the NMRI and μCT technology, whereby the NMRI acquisition technique was improved towards imaging of rock samples and the results were compared to the μCT results. The NMRI results showed moderate imaging achievements for the unchanged rock samples and high quality imaging achievements for the extracted wormholes.
机译:具有高碳氢化合物潜力的碳酸盐储层通常在其内岩结构中显示出极大的异质性,因此刺激处理通常需要维持或建立流体生产。因此,通常进行核心流动测试以在实验室规模内测试和模拟刺激处理,以预测其性能。在核心流测试中产生的虫洞的可视化需要新的技术进行评估和途径预测目的。不幸的是,过去的可视化技术始终与核心样本的破坏相关联,以这种方式,以非破坏性方法提高了增加的需求。核磁共振成像(NMRI)是这样一种方法,其满足了不破坏性的方法。该技术广为人知,医疗应用广为人知,但在与3D岩石成像的相关之前从未使用过。因此,本研究开发了一种关于如何使用NMRI技术可视化与NMRI的蠕虫孔的程序。因此,首先选择和获得具有不同核心和白云石含量的各种核心样本来开始综合研究。将这些核心样本与NMRI和μCT技术成像,在它们不变的状态下,并对初始实验进行碱性岩石物理实验。 μCT技术用作参考可视化技术,因为它提供了具有相应高度细节的非常高的分辨率。然后,在具有各种酸系统和虫洞的核心样品上进行核心流动测试。最后,用NMRI和μCT技术再次成像具有虫洞的核心样本,从而改善了NMRI采集技术朝向岩石样品的成像,并将结果与​​μCT结果进行了比较。 NMRI结果表明,对于提取的虫洞的不变的岩石样本和高质量的成像成果显示了适度的成像成果。

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