Integrated seismic and well gamma-ray analysis for delineation Sienna channel depositional architecture, offshore West Nile Delta, Egypt

R. Eid, M. El-Anbaawy, A. Abdelhalim
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引用次数: 2

Abstract

ABSTRACT The Nile Delta gas reservoirs are dominated by Plio-Pleistocene and Miocene channel deposits which became nowadays the key player for gas production in Egypt. These channelized features are spectacularly imaged on high-quality seismic data, this paper deals with channel geomorphology imaging using different geophysical and geological tools for better under-standing its architecture and fairway delineation in Sienna field also delineating some reasons for reservoir compartmentalization in the studied area which acts as an analogue for the marine slope channels in Pliocene reservoirs within West Delta deep marine concession (WDDM).Seismic attributes were used like Root Mean Square (RMS) amplitude extraction, Ant tracking and Spectral decomposition and finally pre-stack seismic inversion products. By correlating seismic signature with wells log data, four depositional cycles in the Sienna channel were identified which are stacked upon each other in Sienna canyon. The reason for Sienna system compartmentalization maybe not only effect by faults density but also facies quality which is changes from well to another as a result of distal deposits of turbidity slope channels. The location of new wells could be more precisely delineated for further reservoir development in Sienna channels.
埃及西尼罗河三角洲Sienna水道沉积构造圈定的地震和井伽马射线综合分析
尼罗河三角洲气藏以上新世-更新世和中新世河道矿床为主,已成为埃及天然气生产的关键。本文利用不同的地球物理和地质工具对河道地貌进行了成像,以更好地了解Sienna油田的构造和航道圈定,并圈定了研究区储层分区的一些原因,作为对西三角洲深水租界(WDDM)上新世储层海相斜坡河道的模拟。利用均方根(RMS)振幅提取、蚂蚁跟踪和频谱分解等地震属性,最终得到叠前地震反演结果。通过地震特征与测井资料的对比,确定了Sienna水道的4个沉积旋回,这些旋回在Sienna峡谷内相互叠加。Sienna体系分区化的原因除了受断层密度的影响外,还与浊积斜坡河道远端沉积导致的相质变化有关。新井的位置可以更精确地圈定,以进一步开发Sienna水道的储层。
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