Techniques and methods of seismic data processing in active volcanic areas: some applications to multichannel seismic profiles (Gulf of Naples, Southern Tyrrhenian sea, Italy)

A. Gemma
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引用次数: 1

Abstract

The techniques of seismic surveying, especially reflection seismic, considerably varied during last year’s. The contribution to this variation mainly came from the oil industry, which has developed the geophysical methods for oil searching. The basic techniques of seismic exploration consist of the generation of seismic waves artificially in the ground (source) and of the measurement of the requested times to cover the source-receiver path. Seismic data processing of three multichannel seismic profiles located in the Gulf of Naples for an overall length of 150 kilometers is herein presented. The techniques of seismic processing used for the elaboration of the seismic data are up-to-date. Some of them are based on complex mathematical models, allowing obtaining good velocity analysis for the production of stacked sections, ready to be interpreted. In this paper the procedures of processing of multichannel seismic data starting from the field data are shown. Sketch diagrams of the elaboration processes applied during several phases of the whole processing have been constructed. The used software are the Promax2D (Landmark Ltd.) and the Seismic Unix (Colorado School of Mines). The steps of the seismic data processes included the pre-processing, the sorting, the velocity analysis, the normal move-out (NMO), the stacking, the band-pass filtering, the multiple removals, the predictive de-convolution and the spiking de-convolution.
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活火山地区地震资料处理技术与方法:在多道地震剖面上的应用(意大利南第勒尼安海那不勒斯湾)
在过去的一年中,地震勘探技术,特别是反射地震勘探技术发生了很大的变化。对这种变化的贡献主要来自石油工业,石油工业发展了石油勘探的地球物理方法。地震勘探的基本技术包括在地面(震源)人工产生地震波和测量覆盖震源-接收路径所需的时间。本文介绍了位于那不勒斯湾总长度为150公里的三个多道地震剖面的地震资料处理。用于详细分析地震资料的地震处理技术是最新的。其中一些是基于复杂的数学模型,可以获得良好的速度分析,用于生产堆叠截面,准备进行解释。本文从现场资料出发,介绍了多道地震资料的处理方法。在整个加工过程的几个阶段中应用的精化过程的示意图已经构建。使用的软件是Promax2D (Landmark Ltd.)和Seismic Unix (Colorado School of Mines)。地震数据处理的步骤包括预处理、排序、速度分析、正常移出(NMO)、叠加、带通滤波、多重去除、预测反卷积和尖峰反卷积。
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