潘诺尼亚盆地检波器阵列与单传感器野外数据案例研究

M. Vanic, A. Saprygin, S. Milojevic, I. Bogatyrev, A. Polivakho
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引用次数: 0

摘要

研究的目的是考察单传感器间距和单传感器与检波器阵列的应用对二维地震数据质量的影响。采用不同的传感器配置,在两条二维线上获取地震数据。line1采用单传感器采集,传感器之间间隔25m,检波器线性阵列。线2是用单个传感器在12,5m间隔处获得的,我们从中获得了两个数据集:单个传感器间隔12,5m和单个传感器间隔25m。所有数据集都以相同的方式处理,每个数据集都有最佳参数。检波器阵列使我们在叠层剖面上反射的相干性更好,从而可以解释更多的地质细节。检波器阵列的地滚被抑制在以后的时间,给我们更好的分辨率和更高的主导频率在更深的部分。12.5 m的有效信号得到了更好的保存,并且没有空间混叠。在12.5 m的间距上消除地滚比在25 m的间距上更有效。建议今后使用单传感器进行测量时,进一步减少传感器之间的间隔。这也将导致更好地消除地滚,并为结构和定量解释保留更多的地质信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geophone array vs single sensor field data case study in Pannonian Basin
Summary Aim of the research was to examine influence of single sensor interval and application of single sensor vs geophone array on 2D seismic data quality. Seismic data were acquired at two 2D lines with different sensor configuration. Line 1 was acquired with single sensor on 25m separation between sensors and with geophone linear array. Line 2 was acquired with single sensor at 12,5m spacing from which we obtained two data sets: with 12,5m single sensor spacing and with 25m single sensor spacing. All data sets were processed in a same way, with optimal parameters for each data set. Geophone array is giving us better coherency of reflections on stack section, leading to more geological details we can interpret. With geophone array ground roll is suppressed on later times, giving us better resolution and higher dominant frequencies in deeper parts. With 12,5 m useful signal is better preserved and it’s not spatial aliased. Ground roll is more efficiently removed on 12,5 m interval then on 25 m. Recommendation for future surveys with single sensor is to further decrease interval between sensors. This will also lead to better removal of ground roll and preserve more geological information for structural and quantitative interpretation.
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