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METHOD FOR IDENTIFYING SUBSURFACE FLUID MIGRATIONAL PATHWAYS USING 3-D AND 4-D SEISMIC IMAGING

机译:3-D和4-D地震成像识别地下流体迁移路径的方法

摘要

The invention utilizes 3-D and 4-D seismic surveys as a means of deriving information useful in petroleum exploration and reservoir management. The methods use both single seismic surveys (3-D) and multiple seismic surveys separated in time (4-D) of a region of interest to determine large scale migration pathways within sedimentary basins, and fine scale drainage structure and oil-water-gas regions within individual petroleum producing reservoirs. Such structure is identified using pattern recognition tools which define the regions of interest. The 4-D seismic data sets may be used for data completion for large scale structure where time intervals between surveys do not allow for dynamic evolution. The 4-D seismic data sets also may be used to find variations over time of small scale structure within individual reservoirs which may be used to identify petroleum drainage pathways, oil-water-gas regions and, hence, attractive drilling targets. After spatial orientation, and amplitude and frequency matching of the multiple seismic data sets, High Amplitude Event (HAE) regions consistent with the presence of petroleum are identified using seismic attribute analysis. High Amplitude Regions are grown and interconnected to establish plumbing networks on the large scale and reservoir structure on the small scale. Small scale variations over time between seismic surveys within individual reservoirs are identified and used to identify drainage patterns and bypassed petroleum to be recovered. The location of such drainage patterns and bypassed petroleum may be used to site wells.
机译:本发明利用3-D和4-D地震勘测作为导出在石油勘探和储层管理中有用的信息的手段。该方法使用单个地震勘测(3-D)和在时间上相隔特定时间(4-D)的多个地震勘测来确定沉积盆地内的大规模迁移路径,精细规模的排水结构和油水煤气各个石油生产储层中的区域。使用定义感兴趣区域的模式识别工具可以识别这种结构。 4-D地震数据集可用于大型结构的数据完成,其中勘测之间的时间间隔不允许动态演变。 4-D地震数据集还可用于查找各个储层内小规模结构随时间的变化,这些变化可用于识别石油排放路径,油气水区域,从而确定有吸引力的钻井目标。在进行空间定向以及多个地震数据集的振幅和频率匹配之后,使用地震属性分析来确定与石油存在相一致的高振幅事件(HAE)区域。高振幅区域生长并相互连接,以建立大规模的管道网络和小规模的储层结构。识别各个储层内地震勘测之间随时间的小规模变化,并将其用于识别排水模式和要开采的旁路石油。这样的排水方式和绕过的石油的位置可以用来定位井。

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