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Is Thin Turbiditic Sand Winning - A Case Study on High Resolution Processing and Interpretation?

机译:薄型浊度砂赢 - 以高分辨率处理和解释为例吗?

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For an asset team one of many challenges is to accurately map the reservoirs for rock volume estimation in order to establish a development plan. However, when the reservoirs are thin they become more difficult to map given limitations of conventional seismic bandwidth. In this paper we present a real case study of processing a 2005 3D seismic dataset in REPSOL s Ballena permits, offshore North Spain. We describe a workflow of producing high resolution inversion results through a resolution enhancement technique (Bandwidth Extension), a processing sequence to optimize prestack data quality and a 3-term prestack seismic inversion. The resolution-enhanced seismic data and inversion results were able to increase the vertical resolution from 25 m to 12 m with better ties to the known wells in the area. The results further helped individualize the thin turbiditic sands into two different lobes which were difficult to map using normal bandwidth data and inversion results.
机译:对于资产团队,许多挑战之一是准确地映射岩石体积估计的储存器,以建立发展计划。然而,当储存器薄时,它们变得更加难以映射传统地震带宽的限制。在本文中,我们在北西班牙海外北西班牙处理了一个实际的研究A 2005年3D地震数据集。我们描述了通过分辨率增强技术(带宽扩展),处理序列来提供高分辨率反转结果的工作流程,以优化Prestack数据质量和3术语Prestack地震反演。分辨率增强的地震数据和反转结果能够将垂直分辨率从25米到12米增加到该区域的已知孔更好。结果进一步帮助将薄的浊度砂体中的两种不同的裂片中难以使用正常带宽数据和反演结果来映射。

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