评估纳米到微米尺度的地质力学特性及其随时间变化的行为:现状与发展前景

Mary C. Ngoma, Oladoyin Kolawole
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引用次数: 0

摘要

在不同的温度、压力、应力和时间条件下,岩石会发生不同尺度(纳米、微米和宏观尺度)的变形。亚岩心尺度(纳米到微米尺度)岩石性质的变化会影响局部(精细尺度)和整体尺度(宏观尺度)的岩石变形。然而,对于如何评估亚岩心尺度(即纳米到微米尺度)的岩石变形及其准确预测和估算岩石宏观尺度力学行为的潜力,还缺乏全面的了解。本研究对纳米尺度和微观尺度岩石力学参数的评估、其随时间变化的行为以及在岩石工程中的潜在应用进行了全面而前瞻性的综述。此外,我们还强调了基于实验和数值方法评估岩石力学参数的主要发现,并介绍了这些方法的局限性。此外,我们还讨论了亚岩心尺度力学评估在预测地质工程中岩石的宏观力学(更大尺度)特性和行为方面的可靠性。最后,我们提出了一些建议,以推进以这些较小尺度的岩石力学评估为重点的研究,并提供更准确的亚岩心尺度表征。
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Assessment of nano-to-micro-scale geomechanical properties and their time-dependent behavior: Current status and progressive perspectives

Rocks can deform at varying scales (nano-, micro- and macro-scale) under different temperatures, pressures, stresses, and time conditions. Sub-core scale (nano-to micro-scale) changes in rock properties can influence local (fine-scale) and bulk scale (macro-scale) rock deformation. However, there is a lack of comprehensive knowledge on how rock deformation at sub-core scale (i.e., nano-to micro-scale) is assessed and its potential to accurately predicte and estimate the macro-scale mechanical behavior of rocks. This study presents a comprehensive and forward-leaning review of the assessment of nano-scale and micro-scale rock mechanical parameters, their time-dependent behavior, and potential applications in rock engineering. Also, we highlighted the key findings based on experimental and numerical methods for evaluating rock mechanical parameters, and presented the limitations of these approaches. Further, we discussed the reliability of sub-core scale mechanical assessments in predicting macromechanical (larger-scale) properties and the behavior of rocks in geo-engineering. Finally, we offer recommendations to advance investigations focused on rock mechanical assessments at these smaller scales and provide a more accurate characterization at the sub-core scale.

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