Near-surface Seismic Velocity Model Building from First Arrival Travel-times - A Case Study from an Onshore, Niger Delta Field

C. Opara, O. Adizua, J. Ebeniro
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引用次数: 2

Abstract

Seismic refraction was used to image the near-surface, using a3D seismic data acquired from an onshore Niger Delta field. The objective of the study was to build a near-surface model of the earth in terms of sub-weathering layer thicknesses and seismic wave velocities and highlight the near-surface seismic wave velocity variation in the region. A velocity-depth model consisting of the weathering layer and three consolidated (sub-weathering) layers was first estimated. The first-breaks were picked and used as input for this study. The models were generally consistent in terms of their large-scale features, demonstrating the robustness of refraction data inversion in general. Results support confidence in the reliability and robustness of the refraction inversion method. The method of analysis and resolution for 3-layer models adopted in this study may be used in resolving such cases observed during processing of seismic reflection data from the Niger-Delta Basin.
根据首次到达的行程时间建立近地表地震速度模型-以尼日尔三角洲陆上油田为例
利用从尼日尔三角洲陆上油田获得的三维地震数据,利用地震折射技术对近地表进行成像。研究的目的是建立基于亚风化层厚度和地震波速度的地球近地表模型,并突出该区域近地表地震波速度的变化。首先估计了一个由风化层和三个固结层(亚风化层)组成的速度-深度模型。第一次断裂被挑选出来作为本研究的输入。这些模型在大尺度特征上基本一致,表明了折射数据反演的总体稳健性。结果支持对折射反演方法的可靠性和鲁棒性的信心。本文所采用的三层模型分析与分辨方法,可用于解决尼日尔三角洲盆地地震反射资料处理过程中观测到的此类问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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