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The impact of the Messinian Salinity Crisis on the petroleum system of the Eastern Mediterranean: a critical assessment using 2D-petroleum system modelling

机译:墨西哥盐度危机对东地中海石油系统的影响:使用二维石油系统建模的关键评估

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摘要

The offshore Levant Basin demonstrates one of the most phenomenal natural examples of a working petroleum system associated with a relatively rapid unloading and loading cycle caused by the the Messinian Salinity Crisis (MSC). In this study, 2D basin and petroleum systems modelling suggests that the geologically instantaneous water unloading of c. 2070 m and subsequent rapid salt deposition and refill impacts the subsurface pore pressure and temperature in the underlying sediments. The pressure drop is modelled to be instantaneous, whereas the impact on temperature is more of a transient response. This has important consequences for the shallow sub-Messinian biogenic petroleum system, which is assumed to have experienced fluid brecciation associated with massive fluid escape events. Deeper Oligo-Miocene sediments are far less affected, thus indicating a "preservation window" for biogenic gas accumulations, which hosts the recent discoveries (Tamar, Leviathan, Aphrodite). Hydrocarbon accumulations of a "bubble point oil" composition are modelled to have experienced cap expansion during the drawdown, with the pressure drop being the primary control. This study suggests that seal-limited traps are expected to have undergone a catastrophic seal failure whereas the impact of the MSC is modelled to be less destructive for size-limited and particularly charge-limited traps.
机译:黎凡特盆地近海展示了一个工作石油系统最自然的例子之一,该系统与由墨西拿盐度危机(MSC)引起的相对快速的装卸周期有关。在这项研究中,二维盆地和石油系统建模表明c的地质瞬时水卸载。 2070 m以及随后的快速盐分沉积和补充会影响地下沉积物中的地下孔隙压力和温度。压降被建模为瞬时的,而对温度的影响更多是瞬态响应。这对浅的亚美西尼亚生物成因石油系统具有重要影响,该系统被假定具有与大量流体逸出事件相关的流体溴化现象。较深的中新世沉积物受到的影响要小得多,因此表明了生物气成藏的“保存窗口”,其中蕴藏着最近的发现(塔玛,利维坦,阿芙罗狄蒂)。对“起泡点油”组合物的碳氢化合物累积量进行建模,使其在压降期间经历了井盖膨胀,其中压降为主要控制因素。这项研究表明,密封受限的陷阱有望发生灾难性的密封失效,而MSC的影响被建模为对尺寸受限且特别是电荷受限的陷阱的破坏性较小。

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