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首页> 外文期刊>Rock Mechanics and Rock Engineering >Dynamic Model of Fracture Normal Behaviour and Application to Prediction of Stress Wave Attenuation Across Fractures
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Dynamic Model of Fracture Normal Behaviour and Application to Prediction of Stress Wave Attenuation Across Fractures

机译:断裂正常行为的动力学模型及其在断裂中应力波衰减预测中的应用

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摘要

The purpose of this paper is to establish a dynamic constitutive model of fracture normal behaviour, based on laboratory tests of artificial fractures cast by cement mortar. A series of tests are systematically carried out under quasi-static (10−1 MPa/s) up to highly dynamic (103 MPa/s) monotonic loading conditions. The normal stress-fracture closure response is measured at different loading rates. Based on the measured curves, a nonlinear (hyperbolic) dynamic model of fracture normal behaviour, termed as dynamic BB model, is proposed. The dynamic model is modified from the existing BB model of static normal behaviour of fractures by taking into account the loading-rate effect. Two important dynamic parameters of fractures, FSC d (dynamic fracture stiffness constant, which describes the incremental ratio of dynamic initial stiffness) and FCC d (dynamic fracture closure constant, which describes the decremental ratio of dynamic maximum allowable closure), are identified. They indicate the quantitative degree of loading-rate effect on fracture normal behaviour subjected to dynamic loads. For practical application, the new model is incorporated into the Universal Distinct Element Code (UDEC) and subsequently, UDEC modelling of normally incident P-wave transmission across single fractures with the dynamic BB model is conducted. Wave transmission coefficient is obtained for various combinations of fracture dynamic parameters, as well as different wave amplitudes and frequencies. The numerical results show that wave transmission coefficient for a fracture with the dynamic BB model is greater than that for a fracture with the static BB model. In addition, a fracture with higher values of FSC d and FCC d leads to higher transmission (lower attenuation).
机译:本文的目的是在水泥砂浆浇筑的人工裂缝的实验室测试的基础上,建立裂缝正常行为的动态本构模型。在准静态(10−1 MPa / s)到高动态(103 MPa / s)单调加载条件下,系统地进行了一系列测试。在不同的加载速率下测量法向应力-断裂闭合响应。根据测得的曲线,提出了裂缝正常行为的非线性(双曲线)动力学模型,称为动态BB模型。考虑到加载速率效应,从现有的静态静态裂缝正常行为的BB模型中修改了动力学模型。裂缝的两个重要动态参数FSC d(动态裂缝刚度常数,描述了动态初始刚度的增量比)和FCC d (动态裂缝闭合常数,描述了动态最大值的递减比)允许的关闭)。它们表明了加载速率对承受动态载荷的裂缝正常行为的定量影响程度。对于实际应用,将新模型合并到通用唯一元素代码(UDEC)中,然后使用动态BB模型对单个裂缝上的垂直入射P波传输进行UDEC建模。对于裂缝动力学参数的各种组合以及不同的波幅和频率,可以获得波的传输系数。数值结果表明,采用动态BB模型的裂缝的波传递系数要大于采用静态BB模型的裂缝的波传递系数。另外,FSC d 和FCC d 值较高的裂缝会导致较高的透射率(较低的衰减)。

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