Analysis of Vibration Response of Frame Building under Tunnel Blasting Load

B. Duan, Lipeng Gu, Hui Li, Wei Hou
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Abstract

In recent years, a large number of transportation facilities have been constructed in my country, and urban subway projects have gradually increased. The rise of urban subways has effectively alleviated ground traffic congestion, but at the same time it is bound to go under ground buildings. In the process of tunnel construction, it is necessary to ensure the safety of the tunnel, but also to consider the safety and use of ground buildings. In order to study the vibration response analysis of the frame structure under tunnel blasting, the Qingdao Metro Line 1 was taken as the research object, combined with the actual working conditions, and the MIDAS GTS NX finite element software was used for numerical simulation analysis, and the following conclusions were drawn: (1) Due to the frame structure The vibration velocity in the vertical direction is greater than that in the horizontal direction, so the vertical direction of the measuring point is taken as the key research object. A high-rise amplification effect has begun to appear on the 7th floor, and the protection of the middle layer and the top layer should be strengthened during blasting construction. (2) The buried depth of the tunnel is an important factor that affects the vibration response of the tunnel blasting to the frame structure building. When the buried depth of the tunnel is 20m, the vibration speed is close to the maximum range required by the “Blasting Safety Regulations”. Some parameters need to be changed appropriately to make the vibration speed suitable. When the buried depth of the tunnel is 25 m and 30 m, the influence of the buried depth of the tunnel on the vibration velocity is already small.
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隧道爆破荷载作用下框架结构振动响应分析
近年来,我国建设了大量的交通设施,城市地铁项目逐渐增多。城市地铁的兴起有效地缓解了地面交通拥堵,但同时也必然会向地下建筑下发展。在隧道施工过程中,既要保证隧道的安全,又要考虑地面建筑物的安全和使用。为了研究隧道爆破作用下框架结构的振动响应分析,以青岛地铁1号线为研究对象,结合实际工况,采用MIDAS GTS NX有限元软件进行数值模拟分析,得出以下结论:(1)由于框架结构垂直方向的振动速度大于水平方向的振动速度,因此将测点的垂直方向作为重点研究对象。7楼已开始出现高层放大效应,爆破施工时应加强对中间层和顶层的保护。(2)隧道埋深是影响隧道爆破对框架结构建筑振动响应的重要因素。当隧道埋深为20m时,振动速度接近《爆破安全规程》所要求的最大范围。为了使振动速度合适,需要适当改变一些参数。当隧道埋深为25 m和30 m时,隧道埋深对振动速度的影响已经很小。
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