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Stiffness and Deformation of Salt Rock Subject to Anisotropic Damage and Temperature-Dependent Healing

机译:盐岩的刚度和变形,受到各向异性损伤和温度依赖性愈合

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This research is motivated by the increasing need for geostorage facilities, mainly: nuclear waste disposals, high-pressure gas reservoirs and carbon dioxide sequestration systems. A new constitutive model is formulated to account for anisotropic damage due to tensile cracks and healing due to Diffusive Mass Transfer (DMT). The damage variable is the difference between the second-order crack density tensor and a scalar viscoplastic healing variable. The viscoplastic healing variable is needed to model the effects of DMT on the reduction of damage-induced deformation. Contrary to the damage and healing models proposed previously for salt rock, the proposed framework accounts for crack-induced anisotropy, and anisotropy is treated in both damage and healing evolution laws. Compression, extension and compression loading and unloading cycles have been simulated with Theta-Stock Finite Element code. The results illustrate well the influence of anisotropic damage on stiffness degradation and residual strain development. An algorithm has also been written to study the trends of the coupled damage and healing model for a stress path comprising an isotropic compression, and axial compression, a healing period and an unloading phase. The results match the theoretical expectations, and show that the proposed model can predict anisotropic damage and healing.
机译:核废料处置,高压气藏和二氧化碳封存系统:这项研究是由需要geostorage设施,主要是增加推动。一个新的构模型被配制以考虑各向异性损伤由于拉伸裂纹和愈合由于扩散传质(DMT)。损伤变量是二阶裂纹密度张量和一个标量粘塑性愈合变量之间的差。是需要的,粘塑性愈合变量DMT对损伤引起的变形的降低的影响进行建模。相反的是伤害和治疗模式原先提议盐岩,拟议的框架占裂缝引起的各向异性,各向异性在两个伤害和治疗演化规律治疗。压缩,拉伸和压缩加载和卸载循环已经模拟了θ-股票有限元代码。的结果说明以及关于刚度退化和残余应变发展各向异性损伤的影响。的算法也被写入到学习耦合损伤和愈合模型,其包括各向同性压缩应力路径,和轴向压缩,在愈合期和卸载阶段的趋势。结果符合理论预期,并表明,该模型可以预测各向异性的伤害和治疗效果。

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