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Pre-Stack Seismic Inversion and Amplitude Versus Angle Modeling Reduces the Risk in Hydrocarbon Prospect Evaluation

机译:叠前地震反演和幅度对角建模降低了油气远景评价中的风险

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Pre-Stack seismic inversion and Amplitude versus Angle (AVA) techniques were used in for direct hydrocarbon identification (DHI) and to understand better the risk during hydrocarbon prospecting. In order to understand and predict the seismic response for different fluid type and lithologies pre-stack seismic inversion and AVA modeling based on existing well logs information were performed. An optimized seismic inversion workflow that includes conditioning of seismic data followed by seismic petrophysics and rock physics modeling in combination with fluid substituted logs was used to predict the seismic response for different fluid types. Inverted rock properties of a wedge model were then correlated with seismic response for DHL Another hydrocarbon prospect was studied based on AVA modeling response. AVA effects on angle gathers provide basic information on the lithology and pore fill contents of the rocks under investigation. To perform the AVA modeling, a series of forward models in association with rock physics-modeled fluid-substituted logs have been developed and associated seismic responses for different pore fluids and rock types studied. The results reveal that synthetic seismic responses together with the AVA analysis show changes for different lithologies. AVA attributes analysis show trends in generated synthetic seismic responses for different fluid-substituted and porosity logs. Reservoir modeling and fluid substitution increases understanding of the observed seismic response. It ultimately leads to a better reservoir prediction with delineation of sweet spots and improved volumetric prognosis. Assessing the effect of fluid-substituted logs for different lithologies and associated AVA seismic response can improve the prediction in reservoir characterization. Truly integrated studies of seismic, geology and well data will reduce the drilling and development risks even further.
机译:叠前地震反演和幅度对角度(AVA)技术被用于直接油气识别(DHI),并更好地了解油气勘探过程中的风险。为了理解和预测不同流体类型和岩性的地震响应,基于现有测井资料进行了叠前地震反演和AVA建模。一个优化的地震反演工作流程包括预测地震数据,然后进行地震岩石物理和岩石物理建模以及与流体替代测井的组合,以预测不同流体类型的地震响应。然后,将楔形模型的反演岩石特性与DHL的地震响应联系起来。基于AVA建模响应,研究了另一种油气前景。 AVA对角度聚集的影响为所研究岩石的岩性和孔隙填充含量提供了基本信息。为了进行AVA建模,已经开发了一系列与岩石物理模型代替流体的测井相关联的正演模型,并研究了不同孔隙流体和岩石类型的相关地震响应。结果表明,合成地震响应与AVA分析一起显示了不同岩性的变化。 AVA属性分析显示针对不同的流体替代和孔隙度测井的合成地震响应趋势。储层建模和流体替代增加了对观测地震响应的了解。最终,通过划分出最佳的储层和更好的体积预测,可以更好地预测储层。评估流体替代测井对不同岩性的影响以及相关的AVA地震响应可以改善储层表征的预测。对地震,地质和井眼数据进行真正的综合研究将进一步降低钻井和开发风险。

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