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Establishment of Appropriate Normal Compaction Trend NCT: A Critical Aspect for Reducing Uncertainty in 3D Pore Pressure Modelling

机译:建立适当的正常压实趋势NCT:一种减少3D孔隙压力建模不确定性的关键方面

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In 3D Pore Pressure Modelling workflow, establishing appropriate Normal Compaction Trend (NCT) is not only critical but also requires the maximum extent of human interpretation and geological understanding. If not established appropriately, it can introduce substantial uncertainty in the final pore pressure prediction. Though, statistical algorithm techniques are available to establish it, the authors of this paper have demonstrated that establishing NCT manually based on geological logic and regional pressure understanding is much more reliable technique than pure statistical based approach. In this paper, authors utilizes two different approaches in establishing Normal Compaction Trend (NCT) for the study area. First, based on pure statistical technique and second, a manual one based on combination of 3D velocity trends and regional geological pressure understanding. The 3D pore pressure volumes generated from the above two separate NCT’s are then checked for their conformance and agreement with the regional pressure data and understanding, including validation with post drill measured pressure data in the study area. The results and analysis in the study area shows that, establishment of NCT based purely on statistical approach results in higher uncertainty in the 3D pore pressure estimation process. Whereas, manual NCT based on logic results in much more robust, reliable, and regionally consistent 3D pore pressure model with lower uncertainty. In our case study, the average uncertainty in the statistical NCT based 3D Pressures was ranging between 0.8 – 2.3 PPG when compared with actual pressures, while in the case of logic based manual NCT the average uncertainty was less than 1.0 PPG. This case study indicates that in the offshore areas, particularly in areas where there is transition from shelf to slope to deepwater, it is advisable to use all the regional pressure knowledge and geological understanding in establishing the NCT, rather than adopting only the pure statistical methods.
机译:在3D孔隙压力建模工作流程中,建立适当的正常压缩趋势(NCT)不仅是至关重要的,而且需要最大程度的人类解释和地质理解。如果没有适当建立,它可以在最终孔隙压力预测中引入大量的不确定性。虽然,统计算法技术可用于建立它,本文的作者已经证明,根据地质逻辑和区域压力理解,手动建立NCT是比纯统计方法更可靠的技术。在本文中,作者利用了两种不同的方法来建立研究区域的正常压缩趋势(NCT)。首先,基于纯统计技术和第二,基于3D速度趋势和区域地质压力理解的组合手册。然后,从上述两个单独的NCT产生的3D孔隙压力卷与区域压力数据和理解的一致性和协议检查,包括使用研究区域中的钻探测量压力数据的验证。研究区的结果和分析表明,纯粹基于统计方法的基于NCT的建立导致3D孔隙压力估计过程中的更高的不确定性。虽然,基于逻辑的手动NCT导致具有更低不确定性的更强大,可靠,以及区域一致的3D孔隙压力模型。在我们的案例研究中,与实际压力相比,统计基于NCT的3D压力的平均不确定性在0.8-2.3ppg之间,而基于逻辑的手动NCT的情况下,平均不确定度小于1.0 ppg。本案例研究表明,在离岸地区,特别是在从架子过渡到深水的区域,建议在建立NCT时使用所有区域压力知识和地质理解,而不是仅采用纯粹的统计方法。

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