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基于高斯混合模型的碳酸盐岩储层物性与孔隙参数地震岩石物理同步反演
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作者 郭强 巴晶 +1 位作者 雒聪 陈嘉玮 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2024年第10期3989-4004,共16页
碳酸盐岩储层是我国油气资源增储上产的重要领域,然而此类储层通常发育复杂的孔隙结构,极易影响物性参数地震预测结果的精度.本文提出一种基于高斯混合模型的物性与孔隙参数地震岩石物理同步反演方法.基于微分有效介质模型和Gassmann方... 碳酸盐岩储层是我国油气资源增储上产的重要领域,然而此类储层通常发育复杂的孔隙结构,极易影响物性参数地震预测结果的精度.本文提出一种基于高斯混合模型的物性与孔隙参数地震岩石物理同步反演方法.基于微分有效介质模型和Gassmann方程,推导定量关联孔隙度、流体饱和度及孔隙纵横比与弹性参数的线性正演算子.引入了高斯混合模型表征物性与孔隙参数的联合先验概率分布,进而表征岩相统计差异特征.基于贝叶斯线性反演理论及线性正演算子,构建目标参数后验概率的解析表达式,然后根据测井数据反演井旁孔隙纵横比,以提供可靠的孔隙参数先验约束,并利用迭代贝叶斯反演算法,提高线性正演算子的模拟精度.本方法将孔隙纵横比作为反演目标参数,表征碳酸盐岩孔隙结构的空间变化特征,结合贝叶斯线性反演方法,以提高物性参数地震反演结果的精度与运算效率.数据测试表明,所提出的方法物性参数反演结果对比常规方法精度有明显改善,且在一定程度上,新方法受初始模型和弹性参数的影响较小.三维地震数据的应用验证了本方法的有效性,其孔隙度反演结果能够有效的指示有利储层的空间分布. 展开更多
关键词 地震岩石物理反演 孔隙纵横比 碳酸盐岩储层 贝叶斯线性反演 高斯混合模型
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Gas sand distribution prediction by prestack elastic inversion based on rock physics modeling and analysis 被引量:5
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作者 贺芙邦 游俊 陈开远 《Applied Geophysics》 SCIE CSCD 2011年第3期197-205,240,共10页
Seismic inversion is one of the most widely used technologies for reservoir prediction. Many good results have been obtained but sometimes it fails to differentiate the lithologies and identify the fluids. However, se... Seismic inversion is one of the most widely used technologies for reservoir prediction. Many good results have been obtained but sometimes it fails to differentiate the lithologies and identify the fluids. However, seismic prestack elastic inversion based on rock physics modeling and analysis introduced in this paper is a significant method that can help seismic inversion and interpretation reach a new quantitative (or semi-quantitative) level from traditional qualitative interpretation. By doing rock physics modeling and forward perturbation analysis, we can quantitatively analyze the essential relationships between rock properties and seismic responses and try to find the sensitive elastic properties to the lithology, porosity, fluid type, and reservoir saturation. Finally, standard rock physics templates (RPT) can be built for specific reservoirs to guide seismic inversion interpretation results for reservoir characterization and fluids identification purpose. The gas sand distribution results of the case study in this paper proves that this method has unparalleled advantages over traditional post-stack methods, by which we can perform reservoir characterization and seismic data interpretation more quantitatively and efficiently. 展开更多
关键词 Rock physics seismic response elastic parameters elastic inversion reservoir characterization MODELING
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