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首页> 外文期刊>Journal of the Institution of Engineers (India), Series D. Metallurgical & Materials Engineering.Mining Engineering >Blasting Damage Predictions by Numerical Modeling in Siahbishe Pumped Storage Powerhouse
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Blasting Damage Predictions by Numerical Modeling in Siahbishe Pumped Storage Powerhouse

机译:Siahbishe泵送蓄能厂中数值模型的爆破损伤预测

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One of the popular methods of underground and surface excavations is the use of blasting. Throughout this method of excavation, the loading resulted from blasting can be affected by different geo-mechanical and structural parameters of rock mass. Several factors affect turbulence in underground structures some of which are explosion, vibration, and stress impulses caused by the neighbouring blasting products. In investigating the blasting mechanism one should address the processes which expand with time and cause seismic events. To protect the adjoining structures against any probable deconstruction or damage, it is very important to model the blasting process prior to any actual operation. Efforts have been taken in the present study to demonstrate the potentiality of numerical methods in predicting the specified parameters in order to prevent any probable destruction. For this purpose the blasting process was modeled, according to its natural implementation, in one of the tunnels of Siahbishe dam by the 3DEC and AUTODYN 3D codes. 3DEC was used for modeling the blasting environment as well as the blast holes and AUTODYN 3D for modeling the explosion process in the blast hole. In this process the output of AUTODYN 3D, which is a result of modeling the blast hole and is in the form of stress waves, is entered into 3DEC. For analyzing the amount of destruction made by the blasting operation, the key parameter of Peak Particle Velocity was used. In the end, the numerical modeling results have been compared with the data recorded by the seismographs planted through the tunnel. As the results indicated 3DEC and AUTODYN 3D proved appropriate for analyzing such an issue. Therefore, by means of these two softwares one can analyze explosion processes prior to their implementation and make close estimation of the damage resulting from these processes.
机译:地下和表面挖掘的流行方法之一是使用爆破。在整个挖掘方法中,爆破引起的负荷可能受到岩体的不同地质机械和结构参数的影响。几个因素影响地下结构中的湍流,其中一些是由邻近爆破产品引起的爆炸,振动和应力冲动。在调查爆破机制时,应该解决随时间扩展的过程并导致地震事件。为了保护邻接结构免受任何可能的解构或损坏,在任何实际操作之前模拟爆破过程非常重要。已经在本研究中拍摄努力,以证明在预测指定参数中的数值方法的潜力,以防止任何可能的破坏。为此目的,爆破过程根据其自然实施,在Siahbishe大坝的一个隧道中由3DEC和Autodyn 3D代码进行建模。 3DEC用于建模爆破环境以及爆炸孔和AUTODYN 3D,用于在爆破孔中建模爆炸过程。在该过程中,Autodyn 3D的输出是建模爆炸孔并以应力波的形式建模的结果,进入3DEC。为了分析通过爆破操作所取代的破坏量,使用了峰粒速度的关键参数。最后,将数值建模结果与通过隧道种植的地震仪记录的数据进行了比较。结果表明3DEC和Autodyn 3D,证明适合分析此类问题。因此,借助于这两个软件,可以在其实施之前分析爆炸过程,并仔细估计这些过程产生的损害。

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