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Complex Reservoirs Characterisation Technique Based on Geological Seismic Conditioning and its Application in a Oilfield, Middle East

机译:基于地质地震调节的复杂储层特征技术及其在油田,中东地区的应用

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In order to improve the accuracy of reservoir prediction results, the conventional method usually include seismic inversion, and wei. Due to the limitation of the vertical resolution of seismic data, it is hard to identify the thin reservoir by seismic attributes directly. In order to improve the prediction accuracy of reservoir, this paper show a new reservoir characterization technique based on geological seismic conditioning. The new method mainly includes five steps. The first step is sedimentary facies classification based on the geological seismic analysis, such as core data, thin section analysis, FMI logging, NMR logging and conventional logging. The second step is modern sedimentary model optimization and forward modelling. In order to establish a reasonable sedimentary facies model, a similar barrier island modern sedimentary model was chose. To understand the geological significance of seismic data, two different dominant frequency were designed for forward modelling based on the sedimentary facies model and petrophysical analysis. The third step is seismic conditioning under the guide of sedimentary facies model forward modelling. The next step is seismic constraint stochastic inversion, and the last step is reservoir characterization and new well confirm. The application of this method in A oilfield shows that the techniques not only improved the identification ability of the reprocessing seismic data, but also improved the prediction accuracy of the reservoir characterization results. This new reservoir characterization technique can integrated multidisplinary information, such as modern sedimentary model, well data and seismic data, to establish a reasonable sedimentary model, to enhance the resolution of seismic data by conditioning, and get an reasonable reservoir characterization results based on the seismic inversion.
机译:为了提高储层预测结果的准确性,传统方法通常包括地震反转和魏。由于垂直分辨率的地震数据的局限性,很难直接通过地震属性识别薄储库。为了提高水库的预测精度,本文介绍了基于地质地震调理的新型储层特征技术。新方法主要包括五个步骤。第一步是基于地质地震分析的沉积相分类,如核心数据,薄截面分析,FMI记录,NMR日志记录和传统日志记录。第二步是现代沉积模型优化和前进建模。为了建立合理的沉积相模型,选择了类似的障碍岛现代沉积模型。要了解地震数据的地质意义,基于沉积相模型和岩石物理分析设计了两种不同的主频率。第三步是在沉积相模型前向建模的指南下进行地震调节。下一步是地震约束随机反转,最后一步是水库表征和新的确认。该方法在油田中的应用表明,该技术不仅改善了再处理地震数据的识别能力,而且还改善了储层表征结果的预测准确性。这种新的储层特征技术可以集成多相论信息,如现代沉积模型,井数据和地震数据,建立合理的沉积模型,通过调节增强地震数据的分辨率,并基于地震获得合理的储层表征结果反转。

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