地震资料的小波变换模极大线分析及储层流体圈定。第九届中东地球科学会议,2010。

S. Ouadfeul
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引用次数: 1

摘要

该思想的主要目的是利用小波变换模极大线(WTMM)方法来圈定储层流体。首先,利用Ricker小波与反射率函数的卷积生成地震记录,反射率函数由测量的声波和密度测井数据计算得到。利用WTMM对得到的地震记录进行分析,利用指数谱的直接勒让德变换计算奇异谱。实现了该技术在阿尔及利亚撒哈拉地区实际井眼数据中的应用。由此估计了气、油、水、气、油、油水等流体类型对应深度的奇异谱。因此,所获得的结果可以决定储层岩石孔隙中所含的流体性质。将该技术应用于另外两个井眼,结果表明,小波变换模极大线技术可以更好地了解油气性质,提高储层表征能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wavelet transform modulus maxima lines analysis of seismic data for delineating reservoir fluids. 9th Middle East Geosciences Conference, GEO 2010.
The main goal of the proposed idea is to use the wavelet transform modulus maxima lines (WTMM) method to delineate reservoir fluids. First a seismic seismogram is generated using the convolution of the Ricker wavelet with the reflectivity function calculated from the measured sonic and density well logs data. Obtained seismogram is analyzed by the WTMM in order to calculate the singularities spectrum based on the direct Legendre transform of the spectrum of exponents. Application of this technique at the real data of a borehole located in the Algerian Sahara is realized. Thus singularities spectrum is estimated at corresponding depth of the following fluid types: gas, oil, water, gas-oil and oil-water. Consequently, the obtained results allow taking a decision about the fluid nature contained in the reservoir rocks’ pores. We have applied the proposed technique at two other boreholes, obtained results demonstrate that the wavelet transform modulus maxima lines technique can give more idea about hydrocarbon nature and can enhance reservoir characterization.
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