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SWALLOWTAIL CATASTROPHE MODELING OF THE INSTABILITY OF LAYERED ROCKS

机译:燕尾灾难建模分层岩石不稳定性

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A layered rock in underground works is simplified as a rectangular plate and the mechanical model of a rock plate simply supported on four sides is established based on the deformation and force features of the rock under practical engineering conditions. The mechanical mechanism of collapse of the rock plate under the combined action of in-plane stress, vertical stress and dynamic loads during production disturbance is studied using the catastrophe theory. The total potential function and the bifurcation-set equation are derived for the rock system when it undergoes swallowtail catastrophe. The study shows that the instability collapse of layered rocks in underground works under the combined action of in-plane stress, vertical stress and dynamic loads during production disturbance accords with the swallowtail catastrophe model. Ultimate frequency of catastrophe instability of rock plates is given in the paper, which has certain guiding significance in controlling rock collapse instability.
机译:基于实际工程条件下岩石的变形和力特征,建立了地下工程中的层状岩石作为矩形板,并且基于岩石的变形和力特征,建立了岩板的机械模型。利用灾难理论研究了在生产干扰期间在面内应力,垂直应力和动态载荷的组合作用下岩板塌陷的机械机制。当它经过燕尾灾难时,为岩石系统导出总势函数和分叉设置方程。该研究表明,在生产障碍期间在面内应力,垂直应力和动态载荷的组合作用下,地下岩石中的层状岩石的不稳定塌陷符合SwallowTail灾难模型。本文给出了岩板的灾难不稳定性的最终频率,在控制岩石坍塌不稳定方面具有一定的指导意义。

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