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Vibration Characteristic of High-Voltage Tower Influenced by Adjacent Tunnel Blasting Construction

机译:相邻隧道爆破结构影响高压塔的振动特性

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The effects of tunnel blast excavation on the adjacent existing high-voltage tower are comprehensively studied for the Chashan highway tunnel project as a case study. To investigate the effect of blast-induced vibration from the tunnel on the adjacent existing tower, field tests and numerical simulations method were adopted to study the vibration velocity and vibration frequency of the existing tower. Moreover, the relationship between the transverse distance from the detonation center and the peak velocity is discussed in detail. The results showed that the peak velocity of the measuring point in tower foundation increases with the distance between the detonation center and tower foundation approaches, and the maximum velocity is appearing when detonation center is 0?m. Furthermore, the corresponding energy spectrum distributions of the existing tower under the effect of blast induced by vibration is also analyzed, and the main frequency of vertical vibration is generally higher than that of transverse vibration. On combining the peak velocity with the main frequency and the natural frequency of the tower, the safety evaluation of the blasting area is proposed, and the corresponding control measures of blasting vibration are put forward. A guideline for the blast safety zone is proposed based on vibration velocity, main frequency, and the quantity of explosive.
机译:Chashan公路隧道项目综合研究了隧道爆炸挖掘对邻近现有高压塔的影响,作为案例研究。为了探讨从邻近现有塔上的隧道的爆炸振动的效果,采用现场试验和数值模拟方法来研究现有塔的振动速度和振动频率。此外,详细讨论了与爆炸中心的横向距离与峰值速度之间的关系。结果表明,塔基地基测量点的峰值速度随着爆炸中心和塔基地基接近的距离而增加,当爆炸中心为0Ω·m时出现最大速度。此外,还分析了通过振动引起的喷射效果的现有塔的相应能谱分布,并且垂直振动的主频率通常高于横向振动。在将峰值速度与塔架的主频率和固有频率组合的基础上,提出了爆破区域的安全评估,提出了爆破振动的相应控制措施。提出了一种基于振动速度,主频率和爆炸性量的爆破安全区的指南。

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