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Geodynamic and hydrodynamic evolution of the Broad Fourteens Basin (The Netherlands) in relation to its petroleum systems

机译:十四大盆地(荷兰)的地球动力学和流体动力学演化及其石油系统

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摘要

Data analysis in combinatin with 2D basin modelling is used to study the hydrogeologic and hydrodynamic response of the basin fill of the Broad Fourteens Basin to its geodynamic evolution and the significance of this response for the evolution of the petroleum systems in the basin. Data analysis resulted in the identification of the major mechanical processes involved in overpressure and fluid flow evolution in the basin (sedimentary loading and unloading, tectonic compression and extension, topography of the groundwater table) and provided a timeframework for the important permeability alterations in the basin and the distinct phases of fluid flow. Observed present-day diagenetic features and fracture characteristics in the basin indicate permeability alterations and paleo fluid flow during distinct periods of tectonic activity in the basin, e.g. during Late Jurassic rifting and Late Cretaceous inversion. The basin boundary fault zones were repeatedly reactivated during the periods of tectonic activity. The 2D basin modelling included sedimentary loading and unloading, topography of the water table and petroleum generation as pressure and fluid flow influencing mechanisms. In addition, the influence of time-dependent permeability of fault zones on the overpressure history and the evolution of petroleum systems was modelled and evaluated. The favoured modelling scenario, including a time-dependent permability of faults, shows that syn-rift and post-rift sedimentation in combination with gas generation induced overpressured conditions in restricted parts of the basin, that is mainly in the deeper low permeable Carboniferous shales and Zechstein evaporites. The calculated pre-inversion overpressured conditions disappear during subsequent inversion of the basin. Predicted present-day pressures in the reservoir horizons are near-hydrostatic and reasonably in accordance with observed pressures. The favoured scenario also explains the known location of oil fields, and the location and saturation characteristics of the gas occurrences. The model results further show that the difference in timing of oil charging of the P9 an Q1 Lower Cretaceous reservoirs explains the observed differencesin geochemical composition of the acccumulated oils. The biodegraded and water-washed nature of the Late Cretaceous charged Q1 oil reservoir is consistent with the concentrated topography-induced groundwater flow through Lower Cretaceous reservoir units during the Late Cretaceous inversion period. Late charging of the Lower Cretaceous oil reservoir in the P9 area explains the non-biodegraded character of the accumulated oils. In general, this paper shows the importance of using data analysis to obtain an a priori characterization of the basin geofluid evolution and shows that paleohydrodynamic conditions and time-dependent permeability of the hydrogeological frame-work have influenced significantly the petroleum system in the basin.
机译:结合二维盆地模型,结合康比特汀进行数据分析,以研究广十四盆地盆地填充物对其地球动力学演化的水文地质和水动力响应,以及该响应对盆地石油系统演化的意义。数据分析确定了盆地中超压和流体流动演化的主要机械过程(沉积物的装卸,构造压缩和伸展,地下水位的地形),并为盆地中重要的渗透率变化提供了时间框架以及流体流动的不同阶段。在盆地中观察到的当今成岩特征和断裂特征表明,在该盆地构造活动的不同时期(例如侏罗纪晚期裂谷和白垩纪晚期反转。在构造活动期间,盆地边界断层带被反复激活。二维盆地建模包括沉积物的装卸,地下水位的地形和作为压力和流体流量影响机制的石油产生。此外,对断层带随时间变化的渗透率对超压历史和石油系统演化的影响进行了建模和评估。受青睐的模拟场景(包括断层随时间变化的渗透性)表明,同分流和后裂陷的沉积作用与天然气的产生在盆地受限区域(主要在较深的低渗透性石炭系页岩和深部页岩)中产生了超压条件。 Zechstein蒸发。计算出的反演前超压条件在盆地的后续反演期间消失。当前在储层范围内的预测压力接近静水压力,并且合理地符合观察到的压力。有利的方案还解释了油田的已知位置,以及天然气发生的位置和饱和度特征。模型结果进一步表明,P9和Q1下白垩统油层充油时间的差异解释了所观测到的成藏油地球化学组成的差异。晚白垩世充注的Q1油藏的生物降解和水洗性质与晚白垩世反演期间通过下白垩统储层单元的地形诱导的地下水浓流一致。 P9地区下白垩统储层的后期充注解释了所积累油的非生物降解特征。总的来说,本文显示了使用数据分析获得盆地地流体演化先验特征的重要性,并表明古水动力条件和水文地质框架随时间变化的渗透率对盆地的石油系统产生了重大影响。

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