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一种特殊锚固结构抗动载性能研究
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(总参工程兵科研三所 洛阳 471023)

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曾宪明

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TU45

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Study on dynamic load resistance of a special anchoring structure
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(Engineering Corps Research Institute No. 3, General Staff, Luoyang 471023)

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    摘要:

    本文采用LS-DYNA有限元软件,对分别采用一般锚固结构和特殊类型复合锚固结构加固支护的洞室在爆炸荷载作用下的性能进行了数值模拟。文中着重分析了在爆炸条件下应力波传播及爆坑形成过程、爆炸近区围岩中的压力波和复合锚固结构构造措施区断裂缝形成过程,同时与试验结果进行了比较,并对其作用机理进行了分析。结果表明:两个模型的计算爆坑大小与试验结果基本吻合;新型复合锚固构造措施段使得锚固区外的弱化区介质内出现了局部自由面,当爆炸应力波经过自由面时所产生反射拉伸波导致该处裂缝产生;复合锚固结构洞室拱顶垂直向振动加速度峰值比单一锚固结构洞室的约小23.7%;单一锚固结构洞室比复合锚固结构洞室更容易出现结构性的冲切破坏和拉伸剥落破坏。

    Abstract:

    In this paper, LS-DYNA finite element software is used to numerically simulate the performance of caverns reinforced with general anchorage structure and special composite anchorage structure respectively under explosion load. In this paper, the stress wave propagation and the formation process of explosion crater, the pressure wave in the surrounding rock near the explosion and the formation process of zone fracture of the composite anchorage structure are analyzed. The results show that the calculated crater sizes of the two models are in good agreement with the experimental results. The new composite anchorage section makes a local free surface appear in the weakened zone outside the anchorage zone, and the reflected tension wave produced by the explosion stress wave passing through the free surface leads to the fracture. The peak value of vertical vibration acceleration is 23.7% lower than that of single caverns. The single anchorage structure cavity is more prone to punching failure and tensile spalling failure than the composite anchorage structure cavity.

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引用本文

Xianming Zeng, Jian Zhao, Shimin Li, Dalu Lin Study on dynamic load resistance of a special anchoring structure. Prestress Technology 2010,14(03):14-18. 10.59238/j. pt.2010.03.003

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  • 在线发布日期: 2023-08-06
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