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Integration of Geology, Rock-Physics, Logs, and Pre-stack Seismic for Reservoir Porosity Estimation

机译:地质学,岩石物理学,测井和叠前地震的整合,用于储层孔隙度估算

摘要

The main objective of this paper is to obtain reservoir properties, such as porosity, both at the well locations and in the inter-well regions from seismic data and well logs. The seismic and well-log datasets are from an oil field in eastern Saudi Arabia, and the main target is a Jurassic carbonate reservoir. The geology of carbonate reservoirs in Saudi Arabia is well understood. However, reservoir porosity estimation is essential and needs to be determined for flow simulation and reservoir management. One of the main components of this project is establishing the relation between the Pimpedance and porosity using well log data. An amplitude-versus-angle (AVA) seismic inversion algorithm was employed to invert for the 3-D impedance volumes (i.e., Pimpedance and S-impedance) given partial angle stacks of seismic traces representing reflection amplitude variations with angle of incidence. These impedance volumes were used to estimate porosity between the well locations. The seismic and log data provided a priori information (i.e., the initial starting model and source wavelet estimate) to obtain geologically consistent results.
机译:本文的主要目的是从地震数据和测井资料获得井位置和井间区域的储层特性,例如孔隙度。地震和测井数据集来自沙特阿拉伯东部的一个油田,主要目标是侏罗纪碳酸盐岩储层。沙特阿拉伯碳酸盐岩储层的地质情况已广为人知。但是,储层孔隙度估算是必不可少的,需要为流量模拟和储层管理确定。该项目的主要组成部分之一是使用测井数据建立起阻抗与孔隙度之间的关系。给定地震道的部分角度叠层代表反射振幅随入射角的变化,采用幅度对角(AVA)地震反演算法对3D阻抗量(即Pimpedance和S阻抗)进行反演。这些阻抗体积用于估计孔位置之间的孔隙率。地震和测井数据提供了先验信息(即初始开始模型和源小波估计)以获得地质上一致的结果。

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