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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Mineral substitution: Separating the effects of fluids, minerals, and microstructure on P- and S-wave velocities
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Mineral substitution: Separating the effects of fluids, minerals, and microstructure on P- and S-wave velocities

机译:矿物替代:分离流体,矿物和微观结构对纵波和横波速度的影响

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摘要

We have developed a new technique of mineral substitution that accurately predicts the change in rock stiffness upon changes in the elastic properties of the rock mineral frame, assuming no changes in the microstructure or mineral volume fraction. The method is rigorous, the results are realizable, and the predictions are always within bounds. We have applied mineral substitution to separate the effects of composition (mineralogy and pore fill) on the rock stiffness from the effects of microstructure, i.e., porosity and pore shape. Application of mineral substitution on laboratory measured data sets of effective moduli (sandstones, limestones, and dolomites) revealed that if the original minerals making up the frame of sandstones (predominantly quartz) were replaced (or substituted) with calcite mineral properties, the newly predicted P-(V-P) and S-wave velocity (V-S) trends for the modified sandstones were very similar to the previously observed quadratic V-P-V-S empirical trends for limestones. Similarly, the V-P-V-S trends for modified limestones, with original minerals replaced by quartz mineral properties, were very similar to the observed linear V-P-V-S empirical trends for sandstones. The remaining minor differences between the modified and previously observed V-P-V-S trends might be attributed to the differences in rock microstructure. These findings are striking and suggest that V-P-V-S trends of natural rocks are dominated by mineralogy and the effects of microstructure are minor. We also found new V-P-V-S trends for rocks composed of various minerals, including zeolite, feldspar, pyrite, alpha-cristobalite, and halite.
机译:我们开发了一种新的矿物替代技术,假设岩石的微观结构或矿物体积分数未发生变化,该技术可以根据岩石矿物框架弹性特性的变化准确预测岩石刚度的变化。该方法严格,结果可实现,并且预测始终在范围之内。我们已经应用矿物替代来将成分(矿物学和孔隙填充)对岩石刚度的影响与微观结构(即孔隙度和孔隙形状)的影响分开。将矿物替代物应用于有效模量的实验室测量数据集(砂岩,石灰石和白云岩)表明,如果用方解石矿物特性代替(或替代)构成砂岩框架的原始矿物(主要是石英),则新预测改性砂岩的P-(VP)和S波速度(VS)趋势与石灰石先前观察到的二次VPVS经验趋势非常相似。同样,改性石灰石的V-P-V-S趋势(原始矿物被石英矿物特性所取代)与砂岩的线性V-P-V-S经验趋势非常相似。修改后的和以前观察到的V-P-V-S趋势之间的其余细微差异可能归因于岩石微观结构的差异。这些发现是惊人的,表明天然岩石的V-P-V-S趋势主要受矿物学的影响,微观结构的影响很小。我们还发现了由各种矿物组成的岩石的新的V-P-V-S趋势,包括沸石,长石,黄铁矿,α-方石英和石盐。

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