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Safe Vibrations of Spilling Basin Explosions at “Gotvand Olya Dam” Using Artificial Neural Network

机译:人工神经网络在“戈特万德·奥利亚大坝”溢洪池爆炸中的安全振动

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Ground vibration is an undesirable outcome of an explosion which can have destructive effects on the surrounding environment and structures. Peak Particle Velocity (PPV) is a determining factor in evaluation of the damage caused by an explosion. To predict the ground vibration caused by blasting at the Gotvand Olya Dam (GOD) spilling basin, thirty 3-component records (totally 90) from 19 blasts were obtained using 3 VIBROLOC seismographs. Minimum and the maximum distance from the center of the exploding block to the recording station were set to be 11 and 244 meters, respectively. To evaluate allowable safe vibration and determining the permissible explosive charge weight, Artificial Neural Networks (ANN) was employed with Back Propagation (BP) and 3 hidden layers. The mean square error and the correlation coefficient of the network in this study were found to be 1.95 and 0.995, respectively, which compared to those obtained from the known empirical correlations, indicating substantially more accurate prediction. Considering the network high accuracy and precision in predicting vibrations caused by such blasting operations, the nearest distance from the center of the exploding block at this study was 11 m, and considering the standard allowable vibration of 120 mm/sec for heavy concrete structures, the maximum permissible explosive weight per delay was estimated to be 47.00 Kg. These results could be employed in subsequent safer blasting operation designs.
机译:地面振动是爆炸的不良结果,会对周围环境和结构造成破坏性影响。峰值粒子速度(PPV)是评估爆炸造成的损害的决定因素。为了预测在戈特万德奥利雅水坝(GOD)溢水盆地爆破引起的地面振动,使用3台VIBROLOC地震仪从19次爆炸中获得了30个三分量记录(总共90个)。从爆炸块中心到记录台的最小距离和最大距离分别设置为11米和244米。为了评估允许的安全振动并确定允许的炸药装药重量,将人工神经网络(ANN)与反向传播(BP)和3个隐藏层一起使用。在这项研究中,网络的均方误差和相关系数分别为1.95和0.995,与从已知经验相关中获得的均方误差和相关系数相比,表明预测的准确性更高。考虑到网络在预测此类爆破操作引起的振动方面的高精度和高精度,因此在本研究中距爆炸块中心的最近距离为11 m,并考虑到重型混凝土结构的标准允许振动为120 mm / sec,每次延误的最大允许爆炸物重量估计为47.00 Kg。这些结果可用于后续更安全的爆破作业设计中。

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