首页> 外文期刊>Journal of Seismic Exploration >SEISMIC ATTRIBUTES IN IMAGING CHALLENGING RESERVOIRS: A CASE STUDY OF BOONSVILLE FIELD, NORTH CENTRAL TEXAS
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SEISMIC ATTRIBUTES IN IMAGING CHALLENGING RESERVOIRS: A CASE STUDY OF BOONSVILLE FIELD, NORTH CENTRAL TEXAS

机译:成像挑战性储层的地震属性:以德克萨斯州中北部布恩斯维尔油田为例

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摘要

In this study, we investigate the Caddo sequence from the Boonsville gas field in the Fort Worth Basin of North Central Texas. Two Middle Pennsylvanian thin reservoirs are closely separated by a thin Caddo limestone unit. Seismic attributes, namely, instantaneous frequency and amplitude attributes did predict the distribution of reservoir facies in some productive wells. Also, the attribute maps implied that the Caddo facies would exist at well locations where the reservoir was not encountered and were absent where their presence was confirmed from well control. To remove this ambiguity, more advanced techniques of filtering, tracking and information extraction have been invoked and integrated. The data were firstly subject to dip-steered filtering and dense tracking processes. Next, the cleaned data set was spectrally decomposed using a Time Frequency Continuous Wavelet Transform. This decomposition successfully resolved both reservoirs. However, some non-reservoir areas were characterized by frequency responses similar to those shown in reservoir areas. Spectral examination of individual traces from producing and non-producing areas inferred that producing zones are characterized by frequency features different than those of the nonproducing zones. Next, poststack seismic inversion was performed to incorporate well data with seismic data and to produce an acoustic impedance cube. Interestingly, the acoustic impedance sections also suggested that the productive sandstones are characterized by different and higher impedance character relative to limestone formations and their surroundings.
机译:在这项研究中,我们调查了得克萨斯州中北部北部沃思堡盆地Boonsville气田的Caddo层序。宾夕法尼亚州中部的两个薄水库由一个薄的Caddo石灰石单元紧密分隔。地震属性,即瞬时频率和振幅属性,确实可以预测某些生产井中储层相的分布。而且,属性图暗示,Caddo相将存在于未遇到储层的井位置,而在通过井控确认其存在的位置将不存在。为了消除这种歧义,已调用并集成了更高级的过滤,跟踪和信息提取技术。首先对数据进行浸入导向滤波和密集跟踪过程。接下来,使用时频连续小波变换对清洗后的数据集进行频谱分解。这种分解成功地解决了两个储层。但是,一些非水库区域的特征是频率响应类似于水库区域所示的频率响应。对来自生产区和非生产区的单个迹线进行频谱检查,可以推断出生产区具有与非生产区不同的频率特征。接下来,进行叠后地震反演,以将井数据与地震数据合并,并产生声阻抗立方体。有趣的是,声阻抗部分还表明,相对于石灰岩地层及其周围环境,生产性砂岩的特征在于具有不同且更高的阻抗特性。

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