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首页> 外文期刊>Petroleum Geoscience >A strategy for modelling the diagenetic evolution of seismic properties in sandstones
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A strategy for modelling the diagenetic evolution of seismic properties in sandstones

机译:砂岩地震成岩作用演化建模策略

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The geometrical distribution of various components in a composite sandstone is decisive for its overall stiffness and seismic velocities.Information about which constituents,for example,are load bearing,dispersed in pore fluid or present as contact cement is,therefore,necessary if the seismic properties are to be modelled reliably.A distribution scheme for quartz cement,K-feldspar and some of the most common clay minerals in sandstones (illite,kaolinite,smectite and chlorite) is suggested on the basis of thin-section observations made by a number of authors.This classification scheme facilitates rock physics modelling as a function of mineral concentrations.A composite rock physics model has also been developed to account for simultaneous combinations of mineral distributions.Well-known mineral reactions are used to make simple models of mineralogy versus temperature (depth) from different starting scenarios,as various minerals tend to follow different and predictable paths during burial and increasing temperature.The mineralogical trends are then entered into the composite rock physics model to produce the diagenetic evolution of seismic rock properties,and the procedure is used to estimate the effective rock properties of sandstones in a well log.The modelling allows deductions to be made about possible mineralogies and their distributions from seismic parameters.Finally,reflection coefficients resulting from sandstones subjected to various diagenetic processes are modelled and analysed.The results show that it is possible to discriminate between reflections emanating from the interfaces of a selection of common diagenetic scenarios.
机译:复合砂岩中各种组分的几何分布对其整体刚度和地震速度具有决定性作用。因此,如果地震特性是必要的,则需要有关哪些成分(例如承载),分散在孔隙流体中或以接触水泥的形式存在的信息。在对许多矿物进行薄层观测的基础上,提出了一种石英水泥,钾长石和砂岩中一些最常见的粘土矿物(伊利石,高岭石,绿土和绿泥石)的分布方案。这种分类方案有助于根据矿物浓度对岩石物理模型进行建模。还开发了复合岩石物理模型来考虑矿物分布的同时组合。众所周知的矿物反应用于建立矿物学与温度的简单模型(深度),因为在布里期间各种矿物倾向于遵循不同且可预测的路径然后将矿物学趋势输入到复合岩石物理模型中,以产生地震岩石性质的成岩演化,并使用该程序估算测井中砂岩的有效岩石性质。最后,对经历不同成岩作用的砂岩的反射系数进行了建模和分析。结果表明,可以区分出常见成岩作用的选择界面之间的反射。场景。

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