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Experimental determination of subcritical crack growth parameters in sedimentary rock

机译:沉积岩中亚临界裂纹扩展参数的实验确定

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Mounting evidence suggests that subcritical crack growth is an important mechanism for the development of natural fractures. Numerical simulations of fracture patterns are sensitive to the subcritical crack growth index, the exponent used to describe the power law dependence of crack velocity on stress intensity. Few measured values of subcritical indices in sedimentary rocks have been published, however, and no systematic studies of diagenetic controls of subcritical crack index behavior are available. Subcritical crack index measurements are especially difficult in weak, porous rock, primarily because non-elastic material response can obscure fracture-related behavior. We have carried out numerous subcritical crack index measurements with the widely used dual torsion beam test configuration and developed a modified test methodology for subcritical crack index measurements on porous rocks. The principal element of the methodology is a specimen pre-loading procedure to minimize transient material response. Measurement reliability is documented in the study by documentation of reproducibility in three sets of sandstone and carbonate specimens. [References: 15]
机译:越来越多的证据表明,亚临界裂纹的生长是自然裂缝发展的重要机制。断裂模式的数值模拟对亚临界裂纹扩展指数敏感,该指数用于描述裂纹速度对应力强度的幂律依赖性。尚未发表沉积岩中亚临界指数的测量值,但是,尚无对亚临界裂纹指数行为的成岩控制的系统研究。在弱多孔岩石中,亚临界裂缝指数的测量尤为困难,这主要是因为非弹性材料的响应会掩盖与裂缝相关的行为。我们已经使用广泛使用的双扭力梁测试配置进行了许多次临界裂纹指数测量,并开发了一种改进的测试方法,用于在多孔岩石上进行次临界裂纹指数测量。该方法的主要要素是样品预加载程序,以最大程度地减少材料的瞬态响应。通过研究三套砂岩和碳酸盐样品的重现性,研究中记录了测量的可靠性。 [参考:15]

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