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首页> 外文期刊>International Journal of Advanced Geosciences >Application of model-based inversion technique in a field in the coastal swamp depobelt, Niger delta
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Application of model-based inversion technique in a field in the coastal swamp depobelt, Niger delta

机译:基于模型的反演技术在尼日尔三角洲沼泽沼泽地带中的应用

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Considering the heterogeneity of the reservoir sands in the Niger Delta basin which are primary causes of low hydrocarbon recovery efficiency, poor sweep, early breakthrough and pockets of bypassed oil there arises a need for in-depth quantitative interpretation and more analysis to be done on seismic data to achieve a reliable reservoir characterization to improve recovery, plan future development wells within field and achieve deeper prospecting for depths not penetrated by the wells and areas far away from well locations. An effective tool towards de-risking prospects is seismic inversion which transforms a seismic reflection data to a quantitative rock-property description of a reservoir. The choice of model-based inversion in this study was due to well control, again considering the heterogeneity of the sands in the field. X-26, X-30, and X-32 were used to generate an initial impedance log which is used to update the estimated reflectivity from which we would obtain our inverted volumes. Acoustic impedance volumes were generated and observations made were consistent with depth trends established for the Niger Delta basin, inverted slices of Poisson impedances validated the expected responses considering the effect of compaction. This justifies the use of inversion method in further characterizing the plays identified in the region.
机译:考虑到尼日尔三角洲盆地储层砂的非均质性是造成低烃采收率,扫掠性差,早期突破和旁路油层的主要原因,因此有必要进行深入的定量解释和更多的地震分析。数据以实现可靠的储层特征,以提高采收率,计划未来在田间开发井,并对未被井穿透的深度和远离井位置的区域进行更深的勘探。降低前景风险的有效工具是地震反演,它将地震反射数据转换为储层的定量岩性描述。在这项研究中,基于模型的反演的选择是由于井控技术,再次考虑了田间砂土的非均质性。 X-26,X-30和X-32用于生成初始阻抗对数,用于更新估计的反射率,从中我们可以得到倒置体积。产生了声阻抗体积,并且观测结果与为尼日尔三角洲盆地建立的深度趋势一致,考虑到压实效果,倒置的泊松阻抗切片验证了预期的响应。这证明使用反演方法进一步表征在该区域中识别出的岩层是合理的。

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