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Experimental investigation of the nonlinear evolution from pipe flow to fissure flow during carbonate rock failures

机译:碳酸盐岩失效期间管道流动对裂隙流动的实验研究

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摘要

Fissure flow (FF)-induced disasters are a basic scientific difficulty in the fields of rock mechanics and geological engineering disasters. Based on large collapse and landslide disasters in China's southwestern mountainous karst region, this study focused on the nonlinear evolution of the transition from pipe flow (PF) to FF during the process of carbonate rock rupture, with a view to determining the mechanism by which the interactions between geological structures and karst PF cause disasters. An experiment was designed and conducted to visualize the PF-FF transition in a carbonate rock by X-ray imaging at a material scale. Multiple mechanical metrics for the carbonate rock as well as X-ray imagery of the flow were obtained. The effects of multistage loading on the PF regime and the fractal characteristics of the PF-FF morphology were investigated. On this basis, the mechanism of the nonlinear evolution from PF to FF during the carbonate rock rupture process was determined. The experiment result demonstrates the fractal characteristics of the nonlinear evolution from PF to FF during the carbonate rock rupture process.
机译:裂缝流(FF)诱导灾害是岩石力学和地质工程灾害领域的基本科学困难。基于中国西南部喀斯特地区的大崩溃和滑坡灾害,本研究重点是在碳酸盐岩破裂过程中从管道流(PF)到FF的过渡到FF的非线性演变,以确定该机制地质结构与喀斯特PF之间的相互作用导致灾害。设计并进行了实验,以通过以物质刻度通过X射线成像在碳酸盐岩中可视化PF-FF过渡。获得了碳酸盐岩的多种机械指标以及流动的X射线图像。研究了多级载荷对PF制度的影响及PF-FF形态的分形特征。在此基础上,确定了在碳酸盐岩破裂过程中从PF到FF的非线性演化的机制。实验结果显示了在碳酸盐岩破裂过程中PF到FF的非线性演化的分形特征。

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