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Numerical modelling of the dynamic response of threadbar under laboratory-scale conditions

机译:实验室规模条件下线杆动态响应的数值模型

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The development of mining and underground excavations under high stress conditions, where the occurrence of seismic events may induce sudden energy release, has generated new challenges and additional research related to the dynamic response of reinforcement systems. To ensure safety of underground excavations, the development of new reinforcement elements able to resist dynamic events and yielding during the loading process has advanced in the last 30 years as a result of research studies and testing programs carried out by recognized institutions. The execution of these testing programs involves a considerable time and requires validation. In Chile, the development of a new laboratory-scale dynamic test facility has required several studies in which numerical modelling is considered as an important part of the design process. This paper presents the implementation and results of a numerical model used to simulate the dynamic response of threadbar under laboratory-scale test conditions. A comprehensive calibration of the numerical model using the results of laboratory-scale dynamic tests available from the literature is presented. The continuous and split configurations for the encapsulating tube are tested and compared. A parametric analysis is performed with the calibrated model. The verification of the model is established with an additional laboratory-scale result not considered in the calibration process. A summary of the results in terms of the dissipated energy and the maximum displacement is presented. The results indicates a linear trend between the dissipated energy and the maximum displacement, and a significant improvement of the dynamic response of threadbar when the steel grade or the diameter of the rockbolt is increased.
机译:在高压力条件下开采和地下挖掘的发展,地震事件发生的发生可能导致突然能量释放,产生了与钢筋系统的动态响应有关的新挑战和额外的研究。为确保地下挖掘的安全性,由于公认机构开展的研究和测试计划,在过去30年中,在装载过程中能够抗拒动态事件和屈服的新加固元素的发展。执行这些测试程序涉及相当长的时间并需要验证。在智利,新的实验室规模的动态测试设施的发展需要几项研究,其中数值建模被认为是设计过程的重要组成部分。本文介绍了用于在实验室规模测试条件下模拟线杆动态响应的数值模型的实现和结果。介绍了使用文献提供的实验室规模动态测试结果的数值模型的全面校准。测试并比较封装管的连续和分流配置。使用校准模型进行参数分析。模型的验证是在校准过程中不考虑的额外实验室级结果的建立。提出了耗散能量和最大位移方面的结果的摘要。结果表明,当钢级或岩波的直径增加时,耗散能量和最大位移之间的线性趋势,以及线杆的动态响应的显着改善。

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