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Controls on improved sub-salt reservoir imaging at the giant Karachaganak Field, Kazakhstan

机译:哈萨克斯坦Karachaganak巨型油田改善的盐下储层成像的控制

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摘要

In western Kazakhstan there are several world class hydrocarbon fields, including the onshore Karachaganak Field. The geological setting is very challenging for the seismic imaging techniques where deep carbonate platform targets underlie a complex overburden including diapiric and detached salt structures. Furthermore, the extensive oil field infrastructure generates a noisy environment for seismic acquisition and reduced access for vibroseis trucks. KPO conducted an extensive integrated feasibility study for a new survey, complemented by a seismic acquisition test in 2008 which confirmed the need for dense source and receiver coverage, long offsets and wide azimuths to optimize imaging of the pre-salt targets. The survey was acquired in 2009 and survey execution exceeded local and international standards. It was the highest channel survey acquired in Kazakhstan and when fully depth image processed it will yield a high spatially sampled seismic volume, with improved resolution and structural definition. The application of the latest technology and techniques will enable better characterization of this complex carbonate reservoir, adding future value by better placement of wells and reducing overall costs for the ongoing development of the field.
机译:在哈萨克斯坦西部,有几个世界一流的油气田,包括陆上的Karachaganak油田。对于地震成像技术而言,地质条件非常具有挑战性,因为深层碳酸盐台地目标是复杂的覆盖层(包括二apiapi和分离的盐结构)的基础。此外,广泛的油田基础设施为嘈杂的地震采集提供了嘈杂的环境,并减少了振动式货车的使用范围。 KPO对一项新调查进行了广泛的综合可行性研究,并在2008年进行了地震采集测试,该测试证实了需要密集的源和接收器覆盖范围,长偏移量和宽方位角来优化盐下目标的成像。该调查于2009年获得,调查执行超出了本地和国际标准。这是哈萨克斯坦获得的最高通道调查,对全深度图像进行处理后,将产生高空间采样地震量,并具有更高的分辨率和结构清晰度。最新技术的应用将使该复杂的碳酸盐储层更好地表征,通过更好地布置井来增加未来价值,并降低油田开发的总体成本。

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