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Quantitative fracture prediction from seismic data

机译:基于地震数据的定量裂缝预测

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This paper presents results obtained from an area located east of Bremen, Germany, where gas is produced from a deep Rotliegend sandstone reservoir. Faults, fractures and associated deformation bands at reservoir depth have an important influence on the productivity of the gas field as fractures are cemented and tight and may act as permeability barriers. This contribution comprises the development of new coherency tools to better image sub-seismic faults and lineaments from seismic data, and the development of fracture attributes in order to quantify fracturation and its areal distribution. The fractal behaviour of faults was used to establish a relationship between coherency processed seismic data and borehole images at log scale. The 'fractal dimension' (FD) of the length of a fault population can be interpreted as a characteristic parameter describing local geology in terms of fracturation. Calculating FD for each point of a seismic grid yields an areal distribution of this value. Correlating seismic-derived FD values and fracture populations derived from borehole images defined a linear relationship which can be used to forecast the distribution of sub-seismic fractures and deformation from seismic data.
机译:本文介绍了从德国不来梅以东地区获得的结果,该地区的天然气来自深处的Rotliegend砂岩储层。储层深度的断层,裂缝和相关的变形带对气田的生产率有重要影响,因为裂缝被胶结和致密,并可能作为渗透屏障。这项贡献包括开发新的相干工具,以更好地从地震数据中描绘出亚地震断层和构造,以及开发裂缝属性以量化裂缝及其面积分布。断层的分形行为被用来建立经相干处理的地震数据和对数尺度的井眼图像之间的关系。断层群长度的“分形维数”(FD)可以解释为描述局部地质特征的特征参数。计算地震网格的每个点的FD会得出该值的面积分布。将地震衍生的FD值与从井眼图像中得出的裂缝总体进行关联,可以定义线性关系,该线性关系可用于根据地震数据预测亚地震裂缝的分布和变形。

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