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Rock damage control in bedrock blasting excavation for a nuclear power plant

机译:核电站基岩爆破开挖中的岩石破坏控制

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摘要

Drill and blast is a major method for bedrock excavation in nuclear power plant engineering. Under blasting excavation, blast-induced vibration propagates in rock mass and induces damage to surrounding rock. Studying the characteristics of wave propagation and blast-induced damage to rock mass is most important to restrict the damage extension. In the present paper, in support of the bedrock blasting excavation for the Linao Nuclear Power Plant project (LNPP), the site seismic survey and sonic wave test are presented to study the characteristics of wave propagation and the blast-induced damage for rock mass. The explosive load, rock damage characteristics and peak particle velocity (PPV) attenuation law are also investigated by numerical simulation using commercial software. It can be seen that the numerical simulation results agree well with that obtained by site monitoring. Based on the site monitoring and the numerical simulation, the relationship between PPV at 30 m away from the charge hole and the damage depth of rock mass is established. A simple method based on safety threshold of vibration velocity for rock mass to restrict the damage depth of rock mass under blasting excavation is presented. According to the damage controlled method and the presented safety threshold of vibration velocity for rock mass, the remained bedrock can be simply and effectively protected during blasting excavation.
机译:钻爆是核电站工程中基岩开挖的主要方法。在爆破开挖下,爆炸引起的振动在岩体中传播,并引起对围岩的破坏。研究波浪传播和爆炸引起的岩体破坏特征对于限制破坏扩展最为重要。本文为支持临Nuclear核电站项目(LNPP)的基岩爆破开挖,提出了现场地震勘测和声波试验,以研究波传播的特征以及爆炸对岩体的破坏。还使用商业软件通过数值模拟研究了炸药的载荷,岩石破坏特性和峰值粒子速度(PPV)衰减规律。可以看出,数值模拟结果与现场监测结果吻合良好。在现场监测和数值模拟的基础上,建立了距炮孔30 m处的PPV与岩体破坏深度的关系。提出了一种基于振动速度安全阈值的岩体爆破开挖时限制岩体损伤深度的简便方法。根据破坏控制方法和提出的岩体振动速度安全阈值,可以在爆破开挖过程中简单有效地保护剩余的基岩。

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