基于声阻抗反演和多属性分析的北苏门答腊Nias水域储层特征

Fathkhurozak Yunanda Rifai, T. B. Nainggolan, H. Manik
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引用次数: 2

摘要

地震方法是油气勘探过程中应用最频繁的地球物理方法之一。这项研究是在北苏门答腊尼亚斯水域进行的,使用了一条二维叠后时间偏移地震剖面和两口井的数据。储层特征是为了获得受流体和岩石岩性影响的岩石物理参数。地震反演是一种以地震数据为输入,以井数据为控制,建立声阻抗分布的技术。作为最终产品,应用多属性分析将反演结果与地震数据相结合,以确定井数据中其他参数的横向分布。在本研究中,使用多属性分析来确定NPHI的分布,作为对烃源岩的验证。在该地区,1450ms左右的石灰岩岩性中存在天然气远景。根据敏感性分析结果,声阻抗和NPHI的交叉图在分离岩石岩性方面是敏感的,石灰石形式的目标岩石具有20000-49000((ft/s)*(g/cc))范围内的声阻抗值和5-35%范围内的NPHI值形式的物理特征。而声阻抗和电阻率之间的交会图的结果能够分离电阻率值在约18-30欧姆范围内的含流体岩石。使用基于模型的方法的声阻抗反演结果显示了FYR-1井中碳氢化合物的潜力,声阻抗在21469-22881((ft/s)*(gr/cc))范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reservoir Characterizarion Using Acoustic Impedance Inversion and Multi-Attribute Analysis in Nias Waters, North Sumatra
Seismic method is one of the most frequently applied geophysical methods in the process of oil and gas exploration. This research is conducted in Nias Waters, North Sumatra using one line 2D post-stack time migration seismic section and two wells data. Reservoir characterization is carried out to obtain physical parameters of rocks affected by fluid and rock lithology. Seismic inversion is used as a technique to create acoustic impedance distribution using seismic data as input and well data as control. As final product, multi-attribute analysis is applied to integrate of inversion results with seismic data to determine the lateral distribution of other parameters contained in well data. In this research, multi-attribute analysis is used to determine the distribution of NPHI as a validation of hydrocarbon source rocks. In that area, there is a gas hydrocarbon prospect in limestone lithology in depth around 1450 ms. Based on the results of sensitivity analysis, cross-plot between acoustic impedance and NPHI are sensitive in separating rock lithology, the target rock in the form of limestone has physical characteristics in the form of acoustic impedance values in the range of 20,000-49,000 ((ft/s)*(g/cc)) and NPHI values in the range of 5-35 %. While the results of the cross-plot between the acoustic impedance and resistivity are able to separate fluid-containing rocks with resistivity values in the range about 18-30 ohmm. The result of acoustic impedance inversion using the model based method shows the potential for hydrocarbons in the well FYR-1 with acoustic impedance in the range 21,469-22,881 ((ft/s)*(gr/cc)).
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