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Modelling the Source of Blasting for the Numerical Simulation of Blast-Induced Ground Vibrations: A Review

机译:模拟爆破源对爆炸造型振动的数值模拟:综述

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The mining and construction industries have long been faced with considerable attention and criticism in regard to the effects of blasting. The generation of ground vibrations is one of the most significant factors associated with blasting and is becoming increasingly important as mining sites are now regularly located near urban areas. This is of concern to not only the operators of the mine but also residents. Mining sites are subjected to an inevitable compromise: a production blast is designed to fragment the utmost amount of rock possible; however, any increase in the blast can generate ground vibrations which can propagate great distances and cause structural damage or discomfort to residents in surrounding urban areas. To accurately predict the propagation of ground vibrations near these sensitive areas, the blasting process and surrounding environment must be characterised and understood. As an initial step, an accurate model of the source of blast-induced vibrations is required. This paper presents a comprehensive review of the approaches to model the blasting source in order to critically evaluate developments in the field. An overview of the blasting process and description of the various factors which influence the blast performance and subsequent ground vibrations are also presented. Several approaches to analytically model explosives are discussed. Ground vibration prediction methods focused on seed waveform and charge weight scaling techniques are presented. Finally, numerical simulations of the blasting source are discussed, including methods to estimate blasthole wall pressure time-history, and hydrodynamic codes.
机译:在爆破的影响方面,矿业和建筑行业长期以来一直面临着相当大的关注和批评。地面振动的产生是与爆破相关的最重要因素之一,随着采矿地点现在定期位于城市地区,越来越重要。这不仅是矿井的运营商,也是居民。采矿网站受到不可避免的折衷:生产爆炸旨在将可能的岩石碎片碎片;然而,爆炸的任何增加都可以产生地面振动,这可以繁殖,这可以繁殖距离并且对周围城市地区的居民造成结构损伤或不适。为了准确地预测这些敏感区域附近的接地振动的传播,必须表征和理解爆破过程和周围环境。作为初始步骤,需要一种精确的鼓起振动源的模型。本文提出了对模型爆破来源的方法进行全面审查,以便批判性地评估该领域的发展。还介绍了影响爆破性能和随后接地振动的各种因素的爆破过程和描述的概述。讨论了分析模型炸药的几种方法。介绍了聚集在种子波形和电荷重量缩放技术的地面振动预测方法。最后,讨论了爆破源的数值模拟,包括估计Blasthole壁压时历史和流动力码的方法。

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