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Reservoir prediction of deep-water turbidite sandstones with seismic lithofacies control -A case study in the C block of lower Congo basin

机译:地震岩相控制的深水浊积砂岩储层预测-以刚果盆地下C区为例

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Currently, conventional forecasting methods of well-to-seismic integration are unable to identify turbidite channel sandstones due to scarcity of well data in deepwater areas, small geophysical differences between sandstones and mudstones of turbidite channels and strong sandstones heterogeneity. The reservoir prediction of deep-water turbidite channels is still a difficult issue in deep-water research. On the basis of previous studies, we propose a new technology named "reservoir prediction of deep water turbidite sandstones with seismic lithofacies control" in view of the characteristics of deep water turbidite sandstones. This new technology improves the reservoir prediction of complex sedimentary systems after classifying seismic lithofacies and connecting lithofacies with rock-physics. Furthermore, it can accomplish the genetic classification statistics of rock-physics, improve conversion accuracy of seismic elastic parameters/reservoir parameters and achieve the quantitative reservoir prediction under the double control of seismic geomorphology and seismic lithofacies. The C block of Lower Congo Basin is characterized by few well data, complex lithology but high resolution-seismic. We use the technology to predict the reservoirs of this area and have achieved excellent results. This has great significance for the later exploration. (C) 2015 Elsevier Ltd. All rights reserved.
机译:当前,由于深水区井数据的缺乏,浊积通道的砂岩和泥岩之间的微小地球物理差异以及强砂岩的异质性,常规的地震-地震综合预测方法无法识别浊积通道砂岩。在深水研究中,深水浊积通道的储层预测仍然是一个难题。鉴于深层水浊积砂岩的特征,我们在前人研究的基础上提出了一种新技术,即“控制地震岩相的深层水浊积砂岩储层预测”。在对地震岩相进行分类并将岩相与岩石物理联系起来之后,这项新技术改进了复杂沉积系统的储层预测。此外,在地震地貌学和地震岩相双重控制下,可以完成岩石物理学的遗传分类统计,提高地震弹性参数/储层参数的转换精度,实现定量储层预测。下刚果盆地C区块的特点是井眼数据少,岩性复杂,但地震分辨率高。我们使用该技术预测该地区的储层并取得了出色的成果。这对于以后的探索具有重要意义。 (C)2015 Elsevier Ltd.保留所有权利。

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