开挖过程中爆破引起的地面振动参数的可预测性

A. Kahriman
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引用次数: 2

摘要

虽然过去进行了许多研究以消除爆破产生的环境问题,但不幸的是,由于问题的复杂性,尚未建立一个通用的方法或公式。除了波浪和地震动特性外,爆破参数和场地因素的复杂性也限制了通用准则的制定。因此,在预测和控制爆破效果方面,仍需进行有针对性的试验研究。本文介绍了伊斯坦布尔地铁隧道施工中爆破引起的地面振动测量结果。在研究范围内,使用4种不同类型的振动监测器在需要长时间爆破的约300 m隧道推进过程中测量了所有爆炸事件的地面振动分量,以估计峰值颗粒速度,并确定衰减曲线的斜率以及测试地点的最大每延迟装药量。在对数据对进行统计分析后,得到了粒子速度与尺度距离之间的最终关系。
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PREDICTABILITY OF THE GROUND VIBRATION PARAMETERS INDUCED BY BLASTING DURING THE TUNNELING
Although many research studies were carried out in the past to eliminate environmental issues produced from blasting, unfortunately a general approach or formula has not been established yet due to the complexity of the matter. In addition to the wave and ground motion characteristics, the complexity of blasting parameters and site factors restrict the development of a general criterion. Therefore, experimental site-specific studies should still be done for predicting and controlling the blasting effects. This paper presents the results of ground vibration measurements induced by blasting, which were performed during the tunneling for Istanbul Subway. Within the scope of the study, ground vibration components were measured for all blast events using 4 different types of vibration monitors during the advancement of about 300 m length of the tunnels which required blasting over a long period, for the estimation of the peak particle velocity, and to determine the slope of the attenuation curve together with the maximum charge per delay for the test site. At the end of the statistical analysis of the data pairs, a final relation is developed between particle velocity and scaled distance.
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