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Velocity/interface model building in a thrust belt by tomographic inversion of global offset seismic data

机译:整体偏移地震数据的层析反演建立推力带速度/界面模型

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摘要

Between September and November 1999, two test seismic lines were recorded in the southern Apennine region of southern Italy using the global offset technique, which involves the acquisition of a wide offset range using two simultaneously active seismic spreads. One consisted of a symmetrical spread moving along the line, with geophone arrays every 30m and a maximum offset of 3.6km. The other one consisted of fixed geophone arrays every 90m with a maximum offset of 18km. This experimental acquisition project was carried out as part of the enhanced seismic in thrust belt (ESIT) research project, funded by the European Union, Enterprise Oil and Eni-Agip. An iterative and interactive tomographic inversion of refraction/ reflection arrivals was carried out on the data from line ESIT700 to produce a velocity/interface model in depth, which used all the available offsets. The tomographic models allowed the reconstruction of layer interface geometries and interval velocities for the target carbonate platform (Apula) and the overburden sequence. The value of this technique is highlighted by the fact that the standard approach, based on near-vertical reflection seismic and a conventional processing flow, produced poor seismic images in both stack and migrated sections.
机译:在1999年9月至1999年11月之间,使用全球偏移技术在意大利南部的亚平宁地区记录了两条测试地震线,这涉及使用两个同时活动的地震波扩展来获取宽偏移范围。其中一个是沿线移动的对称扩展,每30m具有检波器阵列,最大偏移为3.6km。另一个由每90m固定的检波器阵列组成,最大偏移量为18km。该实验性购置项目是由欧盟,企业石油公司和Eni-Agip资助的推力带增强地震(ESIT)研究项目的一部分。对来自线ESIT700的数据进行了折射/反射到达的迭代交互交互式层析成像反演,以生成深度的速度/界面模型,该模型使用了所有可用的偏移量。层析成像模型允许重建目标碳酸盐平台(Apula)和覆盖序列的层界面几何形状和层速度。标准方法基于近垂直反射地震和常规处理流程,在叠层和运移剖面中均产生了较差的地震图像,这一事实凸显了该技术的价值。

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