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Enhanced imaging with high-resolution full-waveform inversion and reverse time migration: A North Sea OBC case study

机译:具有高分辨率全波形反演和逆时偏移的增强成像:北海OBC案例研究

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摘要

In a case study from the Tommeliten Alpha area of the Norwegian North Sea, imaging problems were caused by the presence of gas in the overburden. In particular, a large part of the reservoir is in a seismically obscured area (SOA) caused by the gas. Full-waveform inversion (FWI) and reverse time migration (RTM) dramatically improve the imaging from ocean-bottom cable (OBC) acquisition over the region. The FWI algorithm is pushed to 22 Hz to generate an extremely high-resolution velocity model, and RTM then becomes required to honor the complexity in the resultant velocity model. Consequently, migration is done with the FWI model to generate a high-frequency RTM image to 80 Hz. This image is approximately double the maximum frequency commonly used for RTM in the North Sea and matches that of equivalent Kirchhoff products, but with all the benefits in imaging that RTM brings, providing a subsequent impact on interpretation of the area.
机译:在来自挪威北海的Tommeliten Alpha地区的一个案例研究中,成像问题是由上覆岩层中的天然气引起的。特别地,储层的很大一部分处于由气体引起的地震隐蔽区域(SOA)中。全波形反演(FWI)和反向时间偏移(RTM)极大地改善了该区域海底电缆(OBC)采集的成像效果。 FWI算法被推至22 Hz,以生成极高分辨率的速度模型,然后需要RTM来满足所得速度模型的复杂性。因此,使用FWI模型进行移植,以生成80 Hz的高频RTM图像。该图像大约是北海RTM通常使用的最大频率的两倍,并且与同类Kirchhoff产品的频率相匹配,但是具有RTM带来的成像的所有好处,从而对该区域的解释产生了后续影响。

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