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Seismic inversion and AVO analysis applied to predictive-modeling gas-condensate sands for exploration and early production in the Lower Magdalena Basin, Colombia

机译:地震反演和AVO分析应用于预测模型的凝析气砂,用于哥伦比亚下马格达莱纳盆地的勘探和早期生产

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摘要

The Plato Depression in the Lower Magdalena Basin is a Miocene depocenter where a thick, shale-prone marine sequence known as the Porquero Formation was laid down in basin-floor conditions. Seismic inversion carried out on new and existing 2D seismic data helped to focus early exploration on a shallow stratigraphic gas-sand play associated with what seemed to be isolated shale diapirs with shallow roots. A subsequent land 3D survey helped to locate the first exploratory well, which resulted in the discovery of the Guama gas-condensate field. The main reservoir consists of laminar, low-permeability sands in a relatively thick shale-prone sequence of Early and Middle Miocene age. Sequential application of acoustic and elastic inversion and AVO analysis was used to build an evolving 3D predictive model of gas sands, extracted from an otherwise featureless seismic cube. Workflows were based on careful rock-physics analysis, simultaneous seismic inversion, and AVA analysis supported by custom well-log and seismic-gather conditioning. Work routines carried out in parallel became essential to applying quality control and fine-tuning the model, which supported three additional successful wells, early reservoir planning, and key volumetrics.
机译:下马格达莱纳盆地的柏拉图凹陷是一个中新世沉积中心,盆地底部条件下沉积了厚厚的,易发页岩的海洋层序,即Porquero地层。对新的和现有的2D地震数据进行的地震反演有助于将早期勘探重点放在与似乎是孤立的浅根页岩底气相关的浅层地层气砂岩中。随后的陆地3D调查帮助找到了第一口探井,从而发现了瓜马凝析气田。主要储层由中新世早期和中期的相对较厚页岩多发的层状低渗透性砂岩组成。声波和弹性反演以及AVO分析的顺序应用被用来建立一个从没有其他特征的地震立方体中提取出来的气砂的3D预测模型。工作流程基于仔细的岩石物理分析,同步地震反演以及由定制测井和地震采集条件支持的AVA分析。并行执行的工作程序对于应用质量控制和微调模型至关重要,它支持了另外三口成功的油井,早期的油藏规划和关键的体积测量。

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