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首页> 外文期刊>NRIAG Journal of Astronomy and Geophysics >Identification of channel geometries applying seismic attributes and spectral decomposition techniques, Temsah Field, Offshore East Nile Delta, Egypt
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Identification of channel geometries applying seismic attributes and spectral decomposition techniques, Temsah Field, Offshore East Nile Delta, Egypt

机译:利用地震属性和频谱分解技术识别通道几何形状,埃及东尼罗河三角洲Temsah油田

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摘要

The Temsah field is located in eastern part of the Nile delta to seaward. The main reservoirs of the area are Middle Pliocene mainly consist from siliciclastic which associated with a close deep marine environment. The Distribution pattern of the reservoir facies is limited scale indicating fast lateral and vertical changes which are not easy to resolve by applying of conventional seismic attribute. The target of the present study is to create geophysical workflows to a better image of the channel sand distribution in the study area. We apply both Average Absolute Amplitude and Energy attribute which are indicated on the distribution of the sand bodies in the study area but filled to fully described the channel geometry. So another tool, which offers more detailed geometry description is needed. The spectral decomposition analysis method is an alternative technique focused on processing Discrete Fourier Transform which can provide better results. Spectral decomposition have been done over the upper channel shows that the frequency in the eastern part of the channel is the same frequency in places where the wells are drilled, which confirm the connection of both the eastern and western parts of the upper channel. Results suggest that application of the spectral decomposition method leads to reliable inferences. Hence, using the spectral decomposition method alone or along with other attributes has a positive impact on reserves growth and increased production where the reserve in the study area increases to 75bcf.
机译:Temsah油田位于尼罗河三角洲东部至海面。该地区的主要储层是中上新世,主要由硅质碎屑岩构成,与深海环境紧密相关。储层相的分布模式是有限的,指示了快速的横向和垂直变化,而这很难通过应用常规地震属性来解决。本研究的目标是创建地球物理工作流程,以更好地了解研究区域内河道沙的分布情况。我们应用“平均绝对振幅”和“能量”属性,这些属性在研究区域中的砂体分布上显示,但填充后可以完全描述通道的几何形状。因此,需要另一个提供更详细的几何描述的工具。频谱分解分析方法是另一种专注于处理离散傅立叶变换的技术,可以提供更好的结果。上部通道的频谱分解表明,该通道东部的频率与钻井位置的频率相同,这证实了上部通道的东部和西部的连接。结果表明,频谱分解方法的应用导致可靠的推断。因此,单独使用光谱分解方法或与其他属性一起使用,会对研究区的储量增加到75bcf的储量增长和产量增加产生积极影响。

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