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Application of 3D Full Waveform Inversion to a synchronized, multi-level source dataset

机译:将3D完全波形反转应用于同步的多级源数据集

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The development of a broadband acquisition system that records the low frequencies necessary for Full Waveform Inversion (FWI), without compromising the high frequencies desired in imaging, is a significant step forward. It is based on a multi-level synchronized source with the free-surface acting as part of that system in order to attenuate the source ghost. This proves to be a challenge for the FWI modeling engine which must generate an identical wavefield containing the receiver ghost and water-layer multiples but without modeling a shot ghost which is absent in the acquired data. The seismic signature of any airgun array can be considered as the sum of independent point source signals corresponding to each gun called notional sources. We propose a methodology based on the decomposition of the multi-level source into notional sources, where each notional source is derived from the near field hydrophone records, to reproduce the recorded wavefield. For the first time the application of 3D FWI to a multi-level synchronized source data set, acquired over the Utsira High area in the North Sea, is presented with this novel approach. The FWI output reveals various meaningful geological structures such as shallow channels in the near surface and a shale diapir.
机译:宽带采集系统的开发,记录完全波形反转(FWI)所需的低频,而不会影响成像中所需的高频,是正常的重要步骤。它基于多级同步源,其具有作为该系统的一部分的自由表面,以便衰减源极鬼。这证明是FWI建模引擎的挑战,该发动机必须生成包含接收器重影和水层的相同波场,但是在不建模所获取的数据中不存在的镜头重影。任何AirGun阵列的地震签名都可以被认为是与每个名为义源的每个枪对应的独立点源信号的总和。我们提出了一种基于多级源的分解成名义源的方法,其中每个名义源来自近场亲水记录,以再现记录的波场。首次在北海的UTSIRA高区域获取3D FWI将3D FWI应用于多级同步源数据集的应用。 FWI输出揭示了各种有意义的地质结构,如近近表面和页岩酸尾的浅通道。

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