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A Multiscale Simulation Method and Its Application to Determine the Mechanical Behavior of Heterogeneous Geomaterials

机译:多尺度仿真方法及其应用,以确定异构岩土材料的力学行为

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摘要

To study the micro/mesomechanical behaviors of heterogeneous geomaterials, a multiscale simulation method that combines molecular simulation at the microscale, a mesoscale analysis of polished slices, and finite element numerical simulation is proposed. By processing the mesostructure images obtained from analyzing the polished slices of heterogeneous geomaterials and mapping them onto finite element meshes, a numerical model that more accurately reflects the mesostructures of heterogeneous geomaterials was established by combining the results with the microscale mechanical properties of geomaterials obtained from the molecular simulation. This model was then used to analyze the mechanical behaviors of heterogeneous materials. Because kernstone is a typical heterogeneous material that comprises many types of mineral crystals, it was used for the micro/mesoscale mechanical behavior analysis in this paper using the proposed method. The results suggest that the proposed method can be used to accurately and effectively study the mechanical behaviors of heterogeneous geomaterials at the micro/mesoscales.
机译:为了研究异质地造影的微/源性机械行为,提出了一种多尺度模拟方法,其将分子模拟结合在微观尺寸,抛光切片的MESSCLE分析和有限元数值模拟中。通过处理从分析抛光的异质地质材料的抛光切片并将它们映射到有限元网格中获得的模拟图像,通过将结果与从中获得的地磁的微观机械性能组合来建立更精确地反映异质地造物材料的思科结构的数值模型。分子模拟。然后使用该模型分析异质材料的机械行为。因为克尼斯石是一种典型的异质材料,其包括许多类型的矿物晶体,所以它用于本文中的微/迈索尔机械行为分析,使用该方法使用该方法。结果表明,所提出的方法可用于在微/ mesoscales精确地和有效地研究异质岩土材料的机械行为。

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