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High-resolution crosswell imaging of a west Texas carbonate reservoir: Part 3—Wavefield separation of reflections

机译:西德克萨斯碳酸盐储层的高分辨率井间成像:第3部分:反射波场分离

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Using crosswell data collected at a depth of about 3000 ft (900 m) in West Texas carbonates, one of the first well-to-well reflection images of an oil reservoir was produced. The P and S brute stack reflection images created after wavefield separation tied the sonic logs and exhibited a vertical resolution that was comparable to well log resolution. Both brute stacks demonstrated continuity of several reflectors known to be continuous from log control and also imaged an angular unconformity that was not detected in log correlations or in surface seismic profiling. The brute stacks, particularly the S-wave reflection image, also exhibited imaging artifacts. We found that multichannel wavefield separation filters that attenuated interfering wavemodes were a critical component in producing high-resolution reflec- tion images. In this study, the most important elements for an effective wavefield separation were the time-alignment of seismic arrivals prior to filter application and the implementation of wavefield-separation filters in multiple domains, particularly in common offset domain. The effectiveness of the multichannel filtering was enhanced through the use of extremely fine wellbore sampling intervals. In this study, 2.5 ft (0.76 m) vertical sampling intervals for both source and receiver were used, whereas most previous cross-well data sets were collected with much coarser sam-pling intervals, resulting in spatial aliasing and limiting the utility of the data for reflection processing. The wavefield separation techniques employed in this study used data volumes and associated filtering operations that were several orders of magnitude larger than those encountered in conventional VSP data analysis.
机译:使用在西德克萨斯碳酸盐岩中约3000英尺(900 m)深度处收集的井间数据,生成了一个油藏的第一批井间反射图像。波场分离后产生的P和S粗暴堆栈反射图像将声波测井记录捆绑在一起,并显示出与测井记录分辨率相当的垂直分辨率。这两个粗糙堆都证明了从反射控制中连续的几个反射器的连续性,并且还成像了在对数相关性或地表地震剖面中未检测到的角度不整合。残酷的堆栈,尤其是S波反射图像,也显示出成像伪影。我们发现,衰减干扰波模的多通道波场分离滤波器是产生高分辨率反射图像的关键组成部分。在这项研究中,有效波场分离的最重要要素是在应用滤波器之前地震到达的时间对准以及在多个域(尤其是在公共偏移域中)实施波场分离滤波器。通过使用极好的井眼采样间隔,增强了多通道过滤的有效性。在这项研究中,源和接收器都使用了2.5英尺(0.76 m)的垂直采样间隔,而大多数以前的井间数据集都是用更粗糙的采样间隔来收集的,从而导致空间混叠并限制了数据的实用性用于反射处理。本研究中使用的波场分离技术使用的数据量和相关的滤波操作比常规VSP数据分析中遇到的数据量大几个数量级。

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