Advanced Processing of Multiples into useful Seismic data for Surface Hydrocarbon Oilfields

Ikwueto O.C, Ezike I.F, Ozokwelu N.B
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Abstract

Distinguishing multiples from primaries and transforming them into useful signals has been one of the most serious difficulties faced by Geophysicists when processing and interpreting data. Multiples are multiplicative events seen in seismic sections which often seriously impedes correct mapping of the subsurface geology in search of oil and gas reservoirs. These events have undergone more than one reflection. In this paper, we present an approach to transform shot gathers from multiple reflections into primaries by combining a multi-channel weighted cross-correlation (WCC) with surface-related multiple elimination (SRME). The new primaries obtained from the combination exhibit the same kinematics as the original dataset with few transformation artefacts. We also demonstrate that this primaries can accurately estimate missing traces as long as the gaps are within the acquisition spread.While this combination allows the transformation of multiples into primaries for surface seismic data, the latter means that nonlinear seismic imaging can be implemented by a number of linear steps. The result shows that the multiple reflections contain a wealth of information that should be used in seismic processing to improve the resolution of reservoir images beyond current capability.
多层地震资料的先进处理方法在地面油气油田中的应用
在处理和解释数据时,地球物理学家面临的最严重的困难之一是区分多次波和初级波并将其转化为有用的信号。倍数是地震剖面中出现的乘法事件,它经常严重妨碍在寻找油气储层时正确绘制地下地质图。这些事件经历了不止一次的反思。本文提出了一种将多通道加权互相关(WCC)和表面相关多重消除(SRME)相结合的方法,将多次反射的镜头集变换成原色。从组合中获得的新原色具有与原始数据集相同的运动学特性,并且变换伪影较少。我们还证明,只要间隙在采集范围内,该初级可以准确地估计缺失的迹线。虽然这种组合可以将多次地震数据转换为地面地震数据的初级地震数据,但后者意味着非线性地震成像可以通过许多线性步骤来实现。结果表明,多重反射波包含了丰富的信息,可以用于地震处理,以提高现有能力之外的储层图像分辨率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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