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Insights into sweep efficiency using 4D seismic at Halfdan field in the North Sea

机译:在北海Halfdan油田使用4D地震对扫掠效率的见解

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摘要

A repeat 4D seismic survey was acquired in 2012 over the Halfdan oil field in the Danish North Sea Central Gra-ben. The main objectives were to understand the lateral and vertical waterflood sweep in the reservoir, to identify unswept areas, to guide future well interventions, and to improve the reservoir model. The main oil reservoir is the Cretaceous chalk Tor Formation, and the field is developed via a line-drive waterflood. The reservoir saturation changes caused by water injection lead to large changes in acoustic impedance which can be imaged with 4D seismic. There were two main 4D processing projects for the Halfdan field. The 2012-2005 4D data were processed as a stand-alone project because of the high repeatability of the surveys, and a separate three-vintage processing project for all time steps also was carried out. When the three-vintage processing was not available, the original 4D processing was used for the 2005-1993 time step. Seismic inversion was performed because production effects have a large impact on the acoustic impedance in the chalk reservoir. The rock-physics model was also used to model 4D acoustic-impedance changes based on pressure and saturation changes in the reservoir. The 4D acoustic-impedance changes from the seismic and reservoir model were analyzed in conjunction with the production and geologic data on a well-by-well basis to better understand sweep efficiency.
机译:2012年,在丹麦北海中部Gra-ben的Halfdan油田进行了一次重复的4D地震勘探。主要目的是了解储层的横向和垂直注水趋势,确定未扫的区域,指导未来的油井干预措施,以及改善储层模型。主要储油层是白垩纪白垩岩Tor地层,该油田是通过线驱注水开发的。由注水引起的储层饱和度变化导致声阻抗发生较大变化,可以用4D地震成像。 Halfdan领域有两个主要的4D处理项目。由于调查的高度可重复性,因此将2012-2005年4D数据作为一个独立项目进行处理,并且还针对所有时间步骤进行了单独的三年份处理项目。如果无法使用三年份处理,则将原始4D处理用于2005-1993时间步。由于生产影响对白垩储层中的声阻抗有很大影响,因此进行了地震反演。岩石物理模型还用于基于储层中的压力和饱和度变化对4D声阻抗变化进行建模。在逐井的基础上,结合地震和储层模型对4D声阻抗的变化进行了分析,并结合生产和地质数据,以更好地了解扫掠效率。

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