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Integrated petrographic – rock mechanic borecore study from the metamorphic basement of the Pannonian Basin, Hungary

机译:匈牙利Pannonian盆地变质基底的岩相-岩石力学岩心综合研究

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The integrated evaluation of borecores from theMez?sas-Furta fractured metamorphic hydrocarbon reservoirsuggests significantly distinct microstructural androck mechanical features within the analysed fault rocksamples. The statistical evaluation of the clast geometriesrevealed the dominantly cataclastic nature of the samples.Damage zone of the fault can be characterised byan extremely brittle nature and low uniaxial compressivestrength, coupled with a predominately coarse fault brecciacomposition. In contrast, the microstructural mannerof the increasing deformation coupled with higher uniaxialcompressive strength, strain-hardening nature andlow brittleness indicate a transitional interval betweenthe weakly fragmented damage zone and strongly grindedfault core. Moreover, these attributes suggest this unit ismechanically the strongest part of the fault zone. Gougerichcataclasites mark the core zone of the fault, with theirwidespread plastic nature and locally pseudo-ductile microstructure.Strain localization tends to be strongly linkedwith the existence of fault gouge ribbons. The fault zonewith ~15 m total thickness can be defined as a significantmigration pathway inside the fractured crystalline reservoir.Moreover, as a consequence of the distributed natureof the fault core, it may possibly have a key role in compartmentalisationof the local hydraulic system.
机译:对Mez?sas-Furta压裂变质烃储层的岩心进行综合评估,表明在所分析的断层岩样中,岩心显着不同。断裂几何形状的统计评估揭示了样品的主要碎裂性质。断层的破坏区可以表现为极易碎的性质和低的单轴抗压强度,再加上主要为粗断层角砾岩成分。相比之下,变形增加的微观结构方式加上较高的单轴抗压强度,应变硬化性质和较低的脆性表明,弱碎裂破坏区与强磨断层核心之间存在过渡区间。此外,这些属性表明,该单元在力学上是断层带的最强部分。古格里奇钾长石以其广泛的塑性特征和局部假韧性显微组织标志着断层的核心区域。应变局部化往往与断层古格带的存在密切相关。总厚度约为15 m的断层带可定义为裂缝性晶体储集层内部的重要运移通道。此外,由于断层岩心的分布性质,它可能在局部水力系统的分隔中起关键作用。

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