首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Seismic data conditioning and orthotropic rock-physics-based inversion of wide-azimuth P-wave seismic data for fracture and total organic carbon characterization in a north Kuwait unconventional reservoir
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Seismic data conditioning and orthotropic rock-physics-based inversion of wide-azimuth P-wave seismic data for fracture and total organic carbon characterization in a north Kuwait unconventional reservoir

机译:基于地震数据调节和基于正交岩石物理的宽四倍波波地震数据的反演,用于北方科威特非传蓄水库的骨折和总有机碳表征

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摘要

Optimization of production from unconventional reservoirs requires estimates of reservoir properties such as porosity, total organic carbon (TOC) content, clay content, fluid saturation, and fracture intensity. The porosity and TOC content help to determine reservoir quality, and the natural fracture intensity provides information important for the completion strategy. Because shale reservoirs display intrinsic anisotropy due to layering and the partial alignment of clay minerals and kerogen with the bedding plane, the minimum acceptable representation of the anisotropy of naturally fractured shale-gas reservoirs is orthotropy, in which a set of vertical compliant fractures is embedded in a vertical transverse isotropic (VTI) background medium. Full-azimuth seismic data are required to characterize such reservoirs and to invert for the anisotropic elastic properties. Orthotropic inversion uses azimuthally sectored seismic data stacked according to the incident angle. Even for high-fold acquisition, this azimuth/angle grouping can result in low-fold angle stacks. Orthotropic amplitude-variation-with-offset-and-azimuth (AVOAz) inversion requires seismic preconditioning techniques that ensure proper primary amplitude preservation, noise attenuation, and data alignment, and a workflow implemented for the construction of an orthotropic rockphysics model. This model integrates well and core data to estimate reservoir properties using the results of the AVOAz inversion. The seismic inversion results include the P-and S-impedance and parameters quantifying the azimuthal anisotropy. The rock model assumes a VTI kerogen-rich layer, containing aligned vertical fractures, and it uses prestack orthotropic AVOAz inversion results to predict porosity, TOC, and fracture intensity.
机译:从非传统储层的生产优化需要储层性质,例如孔隙率,总有机碳(TOC)含量,粘土含量,流体饱和度和断裂强度。孔隙率和TOC内容有助于确定储层质量,自然骨折强度为完成策略提供重要信息。由于页岩储存器由于层状和粘土矿物质和角膜原因的部分对准而显示内在各向异性,并且通过床上用品平面,因此天然骨折的页岩气储层各向异性的最小可接受表示是正交性的,其中嵌入了一组垂直柔顺骨折在垂直横向各向同性(VTI)背景介质中。需要全方面的地震数据来表征这种储存器并反转各向异性弹性特性。正交反转使用根据入射角堆叠的方位角扇形地震数据。即使对于高折叠采集,这种方位角/角度分组也会导致低倍角堆叠。正交性幅度变化 - 带偏移和方位角(AVOAZ)反演需要地震预处理技术,其确保适当的初级幅度保存,噪声衰减和数据对准,以及用于构建正交岩石模型的工作流程。此模型将良好和核心数据集成使用AvoAZ反转的结果来估算储层属性。地震反演结果包括量化方位调各向异性的P&S阻抗和参数。岩体模型假设富含VTI Kerogen的层,含有对齐的垂直骨折,并且它使用预先刺激的AvoAZ反演结果来预测孔隙率,TOC和断裂强度。

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