挪威巴伦支陆架古生代碳酸盐岩储层

J. Ahokas, A. Hartwig, Ø. Kjøsnes, P. E. Øverli, S. Vassmyr, J. Skeie, J. Rinna, J. Kristensen
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引用次数: 0

摘要

深入降低风险和整合不同的数据集是识别、验证挪威巴伦支海陆架(NBSS)古生界前景并对其进行排名的重要任务。唯一的重大发现是在Loppa High地区的上二叠统碳酸盐岩区,而更不成熟的下二叠统碳酸盐岩区可能蕴藏着大量的油气。2018年,计划在巴伦支海的下二叠纪地层钻探三口新井。Aker BP运营一个,并参与另一个。Aker BP已经投入了大量的精力和资源来提高内部对NBSS古生界储层的了解,并降低其风险。降低风险的工作流程可以分为三个主要部分;1)收集和详细分析来自斯瓦尔巴群岛的类似油田数据,通过对地震数据的解释,量化和预测类似沉积环境中存在的烃源岩类型;2)利用不同的地震数据成像技术来增强地震成像以及对未来储层的相和岩性预测;3)将所有可用的数据纳入石油系统建模(PSM)中,以评估石油的富集和保存风险由此增强的对地下的了解有助于在现有发现之外做出积极的钻井决策。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Paleozoic Carbonate Play in the Norwegian Barents Sea Shelf
In-depth risk mitigation and integration of different datasets is an essential task to identify, validate and rank Paleozoic prospects in the Norwegian Barents Sea Shelf (NBSS). The only significant discoveries have been made in the Upper Permian carbonate play on the Loppa High area, whereas the more immature lowermost Permian carbonate play may trap significant volumes of hydrocarbons. During 2018, three new wells are planned to drill into the Lower Permian strata in the Barents Sea. Aker BP operates one, and participates in another of these. Aker BP have allocated significant effort and resources to enhance in-house understanding and to mitigate Paleozoic play risks in the NBSS. De-risking workflow can be split into three main parts; 1) Collection and detailed analysis of analogous field data from Svalbard archipelago to quantify and predict type of hydrocarbon source rocks present in similar depositional setting as interpreted from seismic data 2) Utilizing different seismic data imaging techniques to enhance seismic imaging and facies and lithology prediction of prospective reservoir levels 3) Incorporating all available data in Petroleum Systems Modelling (PSM) to assess the petroleum charge and preservation risk The resulting enhanced understanding of subsurface have facilitated positive drill decisions outside the present discoveries.
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