最佳传输全波形反演-应用

D. Carotti, O. Hermant, S. Masclet, M. Reinier, J. Messud, A. Sedova, G. Lambaré
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引用次数: 6

摘要

在这篇摘要中,我们提出并分析了一组陆地和海洋应用。首先,在Greater Castberg地区的海上应用中,采用了拖缆采集配置上的源。通过与传统LS-FWI的对比,可以看出多点OT-FWI对周期跳变的抑制作用。其次,在阿曼海岸复杂断层结构的陆地应用中,我们表明,即使在潜水波的最大穿透深度以下,多重OT-FWI也可以改善复杂速度结构的描绘。最后一个例子是来自阿曼的第二个土地申请,该地区被证明对成像特别具有挑战性,对FWI来说更是如此(Perez-Solano和Plessix, 2019)。它展示了多重OT-FWI如何与多波反演(MWI)联合使用,以更好地表征近地表。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Transport Full Waveform Inversion - Applications
In this abstract, we present and analyze a set of land and marine applications. Firstly, a marine application on the Greater Castberg area, with a source over the streamer acquisition configuration. The comparison to the conventional LS-FWI results shows the mitigation of cycle skipping brought by multiD OT-FWI. Secondly, a land application on complex fault structures on-shore Oman, where we show that multiD OT-FWI can improve the delineation of complex velocity structures even below the maximum penetration depth of diving waves. The last example is a second land application from Oman, in an area proven to be particularly challenging for imaging, and even more for FWI (Perez-Solano and Plessix, 2019). It shows how multiD OT-FWI can be used jointly with a Multi-Wave Inversion (MWI), to better characterize the near surface.
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