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A Petroleum Systems Analysis and Characterization of the Frontier Ceduna Sub-Basin in Australia

机译:澳大利亚边疆雪松盆地的石油系统分析与表征

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Objectives/Scope: The Ceduna Sub-basin is one of the few remaining frontier basins in Australia today. Few exploration wells have been drilled in the basin and none have encountered hydrocarbons. The current study aims to investigate the hydrocarbon prospectivity of an area of interest (AOI) within the distal part of the Ceduna Sub-basin, where no well information is available. Methods, Procedures, Process: The study uses 3D seismic data and employs principles from geophysics, structural geology, sedimentology, sequence stratigraphy, and petroleum systems analysis in a comprehensive investigation to understand the Ceduna Sub-basin. Multiple 2D basin models were created for the AOI to test different scenarios in a detailed risk analysis of the petroleum system and its major controls. They were identified from a comprehensive literature review and after a thorough interpretation of the 3D seismic survey in the AOI. Results, Observations, Conclusions: Results show that the best reservoir is located within the low stand systems tract (LST) deposits of the Hammerhead Sandstone (Ss) and Top Tiger Ss. The potential source rock occurs in the condensed high stand system tract (HST) deposits in the Base Tiger Ss and White Pointer Ss. 1D modeling showed that these source rocks may have generated hydrocarbons as their depth is <9 km. The critical moment during the source rock history was at 80 Ma coinciding with the deposition of the Hammerhead Ss. Based on the regional structural framework, faults were initiated after source rock deposition. Several growth faults may pose a risk in terms of hydrocarbon leakage. Different 2D models have advanced the understanding of the petroleum systems in the AOI. The results showed that the most prospective areas are within a rollover anticline play and those areas where intra-formational seals are present. The model confirms that fault integrity represents the prime risk across the basin. Novel/Additive Information: The current study contributes to understanding of the Ceduna Sub-basin by identifying two different plays in the AOI: rollover anticline and tilted fault block. Probability analysis of the different petroleum elements shows that the rollover anticline play has the highest geological probability of success.
机译:目标/范围:Ceduna Sub-Basin是今天澳大利亚少数剩余的边境盆地之一。在盆地中钻出了很少的勘探井,没有遇到碳氢化合物。目前的研究旨在研究Ceduna子盆地远端部分内的感兴趣区域(AOI)的碳氢化合物前景,没有井的信息。方法,程序,过程:该研究使用3D地震数据,采用来自地球物理,结构地质,沉积学,序列地层和石油系统分析的原则,以了解Ceduna子盆地。为AOI创建了多个2D盆模型,以测试石油系统的详细风险分析及其主要控制的不同情景。他们是从全面的文献审查中确定的,并在彻底解释AOI中的3D地震调查之后。结果,观察结论:结果表明,最好的水库位于锤头砂岩(SS)和顶部虎头的低支架系统道(LST)沉积物内。潜在的源岩发生在基础虎SS和白指针SS中的冷凝高支架系统的沉积物中。图1D建模表明,这些源岩可能产生的碳氢化合物,因为它们的深度<9公里。源岩历史期间的关键时刻在80 mA时与锤头SS的沉积重合。基于区域结构框架,在源岩沉积后发起故障。几种生长错误可能会在碳氢化合物泄漏方面造成风险。不同的2D模型在AOI中提出了对石油系统的理解。结果表明,最潜在的区域在滚动反射线游戏中以及存在形成内部密封的区域。该模型确认故障完整代表了整个盆地的主要风险。新颖/附加信息:目前的研究通过识别AOI中的两种不同戏剧来了解CEDUNA子盆地:ROLLOVER WITHTLINE和TILTED故障块。不同石油元素的概率分析表明,劳累铁路反向线的成功地质概率最高。

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