首页> 外文会议>Annual Conference on Explosives and Blasting Technique; 20070128-31; Nashville,TN(US) >The Assessment of Environmental Impacts of Blasting During The Construction of A Metro Tunnel
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The Assessment of Environmental Impacts of Blasting During The Construction of A Metro Tunnel

机译:地铁隧道施工中爆破环境影响评价

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This paper presents the results of ground vibration measurements induced by blasting during the construction of the Istanbul Kadikoey-Kartal metro tunnel which has been driven at a depth of approximately 20-40 m deep under a highly urbanized region of Istanbul city in Turkey. This tunnel is being constructed by a joint venture group. The formation encountered during the construction is classified as hard and strong rock by laboratory and field tests performed by the joint venture group. Within the scope of the study, for the prediction of the peak particle velocity and to determine the slope of the attenuation curves together with the maximum charge per delay for the S4 shaft tunnels and S12 shaft tunnels of this tunnel route, ground vibration components were measured carefully by using four vibration monitors (Instantel Minimate Plus model) during the advancement of the tunnels which required blasting. The particle velocities and frequency values of all blast events are evaluated according to the United States Bureau of Mines (USBM) and German DIN 4150 Norms in order to predict, and compare the influence grades to the neighbouring buildings, and structures. Also, data pairs of scaled distance and peak particle velocity obtained from 114 records at S4 shaft tunnels and 79 records at S12 shaft tunnels were analysed statistically. Empirical relationships with correlation at the 95 % confidence interval were established for different rock units (diabase and arkose) and suggested for the test sites in order to estimate particle velocity of the ground vibrations.
机译:本文介绍了在伊斯坦布尔市高度城市化地区下驱动伊斯坦布尔伊斯坦布尔Kadikoey-Kartal地铁隧道施工期间爆破引起的地面振动测量结果,该隧道的深度约为20-40 m。该隧道是由一家合资企业集团建造的。根据合资企业小组进行的实验室和现场测试,在施工过程中遇到的地层被分为坚硬岩石。在研究范围内,为预测峰值粒子速度并确定衰减曲线的斜率以及该隧道路线的S4竖井和S12竖井的最大单位延迟电荷,测量了地面振动分量在需要爆破的隧道前进过程中,通过使用四个振动监测器(Instantel Minimate Plus型号)仔细地进行仔细检查。根据美国矿务局(USBM)和德国DIN 4150规范对所有爆炸事件的粒子速度和频率值进行评估,以便预测并比较对邻近建筑物和结构的影响等级。此外,对从S4竖井隧道的114条记录和S12竖井隧道的79条记录获得的标度距离和峰值粒子速度数据对进行了统计分析。对于不同的岩石单位(辉绿岩和阿克苏斯),建立了在95%置信区间内具有相关性的经验关系,并建议在测试地点进行估算,以估计地面振动的粒子速度。

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