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FULL WAVEFORM INVERSION OF MARINE REFLECTION DATA IN THE PLANE-WAVE DOMAIN

机译:平面波域中海洋反射数据的全波形反演

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Full waveform inversion of a p-tau marine data set from the Gulf of Mexico provides estimates of the long-wavelength P-wave background velocity, anisotropic seismic source, and three high-frequency elastic parameter reflectivities that explain 70% of the total seismic data and 90% of the data in an interval around the gas sand target. The forward simulator is based on a planewave viscoelastic model for P-wave propagation and primary reflections in a layered earth. Differential semblance optimization, a variant of output least-squares inversion, successfully estimates the nonlinear P-wave background velocity and linear reflectivities. Once an accurate velocity is estimated, output least-squares inversion reestimates the reflectivities and an anisotropic seismic source simultaneously. The viscoelastic model predicts the amplitude-versus-angle trend in the data more accurately than does an elastic model. Simultaneous inversion for reflectivities and source explains substantially more of the actual data than does inversion for reflectivities with fixed source from an air-gun modeler. The best reflectivity estimates conform to widely accepted lithologic relationships and closely match the filtered well logs. [References: 34]
机译:来自墨西哥湾的p-tau海洋数据集的全波形反演提供了长波P波本底速度,各向异性地震源和三个高频弹性参数反射率的估计值,这些反射率解释了总地震数据的70% 90%的数据在气砂目标周围的时间间隔内。前向模拟器基于平面波粘弹性模型,用于层状地球中的P波传播和主反射。差分相似性优化是输出最小二乘反演的一种变体,可以成功地估计非线性P波本底速度和线性反射率。一旦估算出准确的速度,输出的最小二乘反演会同时重新估算反射率和各向异性地震源。与弹性模型相比,粘弹性模型可以更准确地预测数据中的振幅与角度趋势。反射率和源的同时反演比使用气枪建模器固定源的反射率的反演解释的要多得多。最佳反射率估计值符合广泛接受的岩性关系,并且与过滤后的测井曲线非常匹配。 [参考:34]

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