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Determination of heterogeneity by high-resolution seismic reservoir characterization in the heavy oil Temblor reservoir of Coalinga Field, California.

机译:通过高分辨率地震油藏表征确定非均质性,该油藏位于加利福尼亚Coalinga油田的稠油Temblor油藏中。

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The research focuses on analysis and subsurface imaging of siliciclastics rocks on steam-affected 3D poststack seismic data, merged from different vintages, from the Temblor Formation in the Coalinga heavy oil reservoir in the San Joaquin basin, California. The objective was identification, delineation, and demarcation of reservoir heterogeneities by seismostratigraphic and seismogeomorphic analysis.; The proximity of the San Andreas Transforms greatly controlled basin evolution and caused substantial reservoir heterogeneity by changing the depositional environment from shallow marine to near-shore fluvial. Moreover, two unconformities dissect the reservoir interval.; The seismic dataset exhibits erratic, distorted reflection strengths and amplitudes caused by steam-injection-aided production. A petrophysical analysis based on Gassmann fluid substitution suggests a 27% P-wave velocity decrease in steam-saturated intervals. Seismic to well log ties were problematic and vexing due to the resulting statics, wavelet changes, and line mismatches. Mapping and flattening on a deeper horizon, however, allowed mapping of the internal unconformities and well ties which were crucial for seismostratigraphic sequence identification.; Visualization of seismic attributes brought out stratification patterns and two distinct, laterally and vertically extensive, porous, and interconnected facies tracts interpreted as incised valley fills and tidal-to-subtidal deposits as evidenced by bright, steam related amplitudes.; Seismic attribute analysis, Geobody Visualization and Interpretation, and structure and isochron maps brought out two prominent channel-systems, recut and restacked in the central part of the area. These deposits were identified on seismic data and correlated to high-gamma coarsening-upward sands on logs and cores. The deeper one, shifting towards SSE with depth, lies between the Base Temblor and Buttonbed unconformities both in the southwestern and northwestern parts of the study area and is scattered in the western-central portion. The shallower one originates in southwestern corner below the Top Temblor unconformity shifts towards ESE-SE with depth, and runs nearly parallel to the Top Temblor unconformity. It cuts across the Valv unconformity in central part creating a channel incision, and follows the Buttonbed unconformity towards the north.; The investigation segmented the reservoir into channels, non-channel bearing, and unconformity-bounded subunits which will allow the operator to improve steam injection and optimize placement of oil producing infill wells.
机译:这项研究的重点是对硅质碎屑岩进行分析和地下成像,这些数据来自蒸汽影响的3D叠后地震数据,这些数据来自不同年份,来自加利福尼亚州圣华金盆地Coalinga稠油油藏的Temblor组。目的是通过地震地层和地震地貌分析识别,划定和划分储层非均质性。 San Andreas变换的临近极大地控制了盆地的演化,并通过将沉积环境从浅海转变为近岸河流,从而引起了实质性的储层非均质性。此外,两个不整合面剖析了储层层段。地震数据集显示出由蒸汽注入辅助生产引起的不稳定,扭曲的反射强度和振幅。基于Gassmann流体替代的岩石物理分析表明,蒸汽饱和间隔中P波速度降低了27%。由于产生的静力,小波变化和管线不匹配,地震对测井的联系是有问题的并且令人烦恼。然而,在更深的视野上进行测绘和平坦化,可以测绘内部不整合面和井口,这对于地震地层层序识别至关重要。地震属性的可视化显示出分层模式和两个截然不同的,横向和垂直扩展,多孔且相互连接的相带,这些相带被解释为切开的河谷填充物和潮汐至潮间带沉积物,明亮的,与蒸汽有关的振幅证明了这一点。地震属性分析,地物可视化和解释,结构图和等时线图产生了两个突出的通道系统,在该区域的中部进行了重新切割和重新堆叠。这些沉积物是在地震数据上确定的,并与原木和岩心上的高伽马粗化向上的砂粒相关。较深的一个深度向SSE转变,位于研究区域的西南部和西北部的Base Temblor和Buttonbed不整合面之间,并且分散在中西部地区。较浅的一个发源于Top Temblor不整合面下方的西南角,并向ESE-SE方向偏移,并与Top Temblor不整合面几乎平行。切开中央部分的Valv不整合面,形成通道切口,并向北跟随纽扣式不整合面。该调查将油藏分为通道,非通道支座和不整合边界受限的子单元,这将使操作员能够改善蒸汽注入并优化产油井的位置。

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