Innovative Seismic Depth Imaging Workflow for Better Reservoir Understanding: TZ Offshore Abu Dhabi Case Study

Saif Ali Al Messabi, M. Mahgoub, F. Damianus, Babar Hasan, O. Khakimov, B. Tertrais
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Abstract

High fidelity seismic amplitude reconstruction through pre-stack migration is crucial for accurate elastic inversion. Despite a relatively flat geology of the Abu Dhabi region, accurate imaging is required for a stable elastic inversion. This can be challenging because the main reservoir Arab lies underneath the strongly anisotropic overburden of the Nahr Umr formation. In this case study, we show how we effectively addressed this challenge through PSDM. With PSDM imaging, we have overcome the challenges of complex ray paths passing through the strongly anisotropic Nahr Umr layer and the rapid lateral velocity variation in the Mishrif formation. Evidently, the success of PSDM relies strongly on the accuracy of the depth velocity model used. To achieve this we adopt different forms of tomographic inversion, for example, using 3D non-linear slope tomographic inversion, where velocity and anisotropy (Epsilon) models are jointly inverted. Additionally, short wavelength velocity variations caused by the Mishrif interval are resolved through structurally-constrained tomography (SCT). The superiority of PSDM imaging over PSTM in reconstructing AVA compliant seismic amplitudes is demonstrated on an ocean bottom survey from the transition zone offshore Abu Dhabi. Fast-track AVA elastic inversion is used to assess the benefit of PSDM imaging over PSTM. With a more stable Vp/Vs ratio and smaller inversion residual, PSDM imaging demonstrates a greater accuracy in reconstructing the pre-stack seismic amplitude and thus are more appropriate for estimating elastic reservoir properties. The value of PSDM imaging for better understanding of reservoir characteristic has been well demonstrated in this case study from the Abu Dhabi transition zone, thus optimizing the value of the acquired seismic data for asset development.
创新地震深度成像工作流程,更好地了解储层:TZ Offshore Abu Dhabi案例研究
叠前偏移的高保真地震振幅重建是实现精确弹性反演的关键。尽管阿布扎比地区的地质相对平坦,但要进行稳定的弹性反演,需要精确的成像。这可能具有挑战性,因为主要的阿拉伯储层位于Nahr Umr地层的强各向异性覆盖层下方。在本案例研究中,我们展示了如何通过PSDM有效地应对这一挑战。利用PSDM成像技术,我们克服了复杂射线路径穿过强各向异性Nahr Umr层和Mishrif地层快速横向速度变化的挑战。显然,PSDM的成功很大程度上取决于所使用的深度速度模型的准确性。为了实现这一点,我们采用了不同形式的层析反演,例如,使用三维非线性斜率层析反演,其中速度和各向异性(Epsilon)模型被联合反演。此外,通过结构约束层析成像(SCT)解决了Mishrif区间引起的短波速度变化。在阿布扎比海上过渡带的海底调查中,PSDM成像在重建AVA顺从地震振幅方面优于PSTM成像。使用快速通道AVA弹性反演来评估PSDM成像相对于PSTM成像的优势。PSDM成像具有更稳定的Vp/Vs比和更小的反演残差,可以更准确地重建叠前地震振幅,从而更适合于估计弹性储层的性质。在阿布扎比过渡带的案例研究中,PSDM成像对于更好地了解储层特征的价值得到了很好的证明,从而优化了所获得的地震数据对资产开发的价值。
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