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A cross-anisotropic elastoplastic model applied to sedimentary rocks

机译:一种跨越各向异性弹塑性模型,适用于沉积岩

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Strength and deformability properties of sedimentary rocks are difficult to characterize as these geomaterials show anisotropic mechanical behavior, which cannot be adequately evaluated by an isotropic constitutive model. This essay proposes a cross-anisotropic elastoplastic model to evaluate stress-strain relationships of sedimentary rocks. The approach couples the twelve-parameter Lade-Kim isotropic model with a non-uniform scaling of the stress tensor and includes two scaling parameters that link the orientation of the bedding planes with the loading direction. The anisotropic model parameters can be conveniently determined using Bayesian analysis. We illustrate our method using triaxial tests on a variety of confining stresses and bedding plane orientations for a travertine and a Tournemire shale. Our results demonstrate that the predicted maximum deviatoric stresses and the simulated stress-strain curves are shown to be in good agreement with the measured data.
机译:沉积岩石的强度和可变形性能难以表征,因为这些地质材料显示各向异性机械行为,这不能通过各向同性本构模型进行充分评估。 本文提出了一种横向各向异性弹塑性模型,以评估沉积岩的应力 - 应变关系。 该方法将十二个参数LADE-KIM各向同性模型耦合,具有应力张量的不均匀缩放,并包括两个缩放参数,该参数将床上架的方向与装载方向联系起来。 可以使用贝叶斯分析方便地确定各向异性模型参数。 我们说明了我们使用三轴测试对石灰华和塔内斯瓦莱的各种限制的压力和床上用品方向的方法。 我们的结果表明,预测的最大偏离偏离应力和模拟应力 - 应变曲线与测量数据吻合良好。

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