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通过大量的素混凝土及钢筋混凝土结构切割爆破实践,分析归纳出其主要爆破参数计算方法和工程施工技术特点。将这些计算方法和技术要点应用于工程实践,取得了较好的切割爆破效果,达到了相应的工程目的。 相似文献
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岩体的块体结构和结构面网络模型生成,是进行各种力学分析和场分析的基础。详细研究了有限结构面进行复杂块体切割的过程,提出了相应的算法,并采用C++语言编写了相应的程序。为描述块体切割后的复连通特性,在块体数据结构中添加了有向壳的概念。结构面可以为简单的凸多边形,也可采用形态更加复杂的凹多边形。通过面-面求交线、交线环路搜索形成有向环、有向环包含关系分析形成有向面、有向面拓扑搜索形成有向壳和有向壳包含关系分析形成块体等过程,将有限结构面分别与各块体进行切割运算,形成进行块体切割的一般方法。在切割过程中将得到的有向环,有向面、有向壳和块体分别进行拓扑有效性校核,满足要求后得到最终的块体和结构面网络模型。选取4个算例来验证该方法的可行性。计算结果表明,该方法可以对复杂块体进行有效地切割,结构面可以选择包括凹形面在内的复杂多边形,方法具有普遍意义。 相似文献
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粤西某水泥厂拟对该厂两条生产线进行整体爆破拆除。由于环境复杂,爆破规模大,施工难度很大,特别是双排水泥窑的高宽比小,采取常规底部立柱爆破切口难以使水泥窑顺利倾倒。通过选取合理的爆破参数,并以充分的预拆除配合,采取合理的爆破网路,安全、快速地完成了该水泥厂整体爆破拆除。同时,采取了一系列爆破危害综合控制措施,确保了爆破安全和环保作业。 相似文献
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Summary A case study is presented where a controlled blasting programme (presplitting) was adopted in an open-pit copper mine in order to improve the stability of the resulting cut slopes. The aim was to reduce over break and minimize damage to the final pit walls from production blasts. The use of presplitting allowed considerably higher benches to be adopted with much steeper overall slope angles. The extra cost of presplitting was fully justified by the improved face stability and the resulting reduction in overburden quantity. 相似文献
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起爆时差是超深孔一次成井爆破设计中的一个重要参数,合理设计起爆时差和起爆顺序,能够达到先起爆炮孔为后起爆炮孔创造良好自由面和补偿空间,实现筒状硐室分层、分段爆破的目的,并能降低围岩震动破坏。为合理选取起爆时差,基于超深孔微差爆破破岩机制,从理论上推导了一次成井预裂爆破延期时间,掏槽孔与相邻辅助孔、同分段辅助孔、相邻分段辅助孔的起爆时差等计算公式;同时提出了自下而上预裂爆破、先上下后中间光面爆破等6种一次成井起爆顺序。在华恒矿-650矸石仓,结合施工条件合理确定起爆时差等爆破参数,形成爆破设计方案。爆破过程中实现了分层、分段爆破,获得了良好的硐室成型,验证了形成的超深孔微差爆破技术是成功的,其结果对类似工程的实施具有一定的参考价值。 相似文献
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隧道开挖施工的爆破振动监测与控制技术 总被引:24,自引:0,他引:24
以万松岭隧道工程开挖为研究对象,对隧道工程开挖施工爆破地震波的振动监测方法及控制技术进行了研究。通过对爆破振动监测结果的回归分析,建立了隧道工程开挖爆破振动传播的数学模型;确立了其传播衰减规律。结合工程实际,提出了修正后的爆破地震波衰减经验数学公式;经对比分析,所得爆破地震波衰减规律公式预测的质点振动速度具有较高的精度。同时,结合该隧道工程开挖爆破施工,从选择合理爆破时差、最大装药量、微差起爆、掘进进尺、预裂爆破等5个方面提出了爆破振动控制技术措施使该隧道开挖施工爆破中的地面振动速度值控制在了安全范围以内,从而确保了施工段地面建筑群的安全和该隧道工程开挖爆破作业的安全。其研究对指导隧道工程开挖爆破施工和保证地面建筑物安全起到了重要作用。 相似文献
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针对地下深孔爆破采矿过程中常出现的爆破后冲作用严重以及爆破块度不均匀等若干问题,以南方某铅锌矿实际采用的爆破、炸药和岩石参数为基础,采用ANSYS/LS-DYNA对矿山拟采用的不同装药量、不同耦合系数的6种装药结构建立了数值计算模型。通过分析爆炸仿真过程中的Von Mises有效应力信息,结合爆破破岩机制及Mises屈服理论,确定了深孔爆破的最佳炮孔装药结构。现场试验表明,优化的装药结构爆破块度均匀且爆破后冲作用得到有效控制,基本上解决了矿山深孔侧向爆破存在的问题,研究结果为深孔爆破的优化设计提供理论依据和技术支持。 相似文献
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Arvind K. Mishra Y. K. Nigam Deepanshu R. Singh 《Journal of the Geological Society of India》2017,89(1):87-90
Except for very deep-seated deposits, open cast mining method has been recognized as the safest and most productive mode for mining minerals. Ever growing demand in minerals and coal has compelled the mine operators to increase the size of mine, which has resulted in an increasing trend towards large capacity open cast projects. Explosives and blasting techniques play a significant role in efficient opencast mining operations. There have been constant technological developments towards safer, faster, economical and more efficient blasting systems. Further, globally increased competitiveness has necessitated to carryout blasts in such a way that the desired degree of fragmentation is achieved in the primary blast, with minimum undesired side effects such as ground vibration, air blast/noise, flyrock, generation of oversize boulders, formation of toe, and over break or back break. Hence, the ultimate objective of the blasting engineer is to ensure that the blasts are carried out in an eco-friendly manner. This paper presents a case study of limestone mine where a controlled blasting was conducted near a green structure of wagon tippler (at 2 m) being constructed for foundation work of belt conveyor as the mine management wants to double the existing production. This paper deals with controlled blast design and its implementation using electronic detonators with signature hole technique. 相似文献
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H. P. Rossmanith K. Uenishi 《Fragblast: International Journal for Blasting and Fragmentation》2000,4(3):208-237
Bench blasting has a long tradition and yet the mechanics of throw and muck-pile formation is not clearly understood. This educational paper addresses bench blasting and muck-pile formation in a very simplified manner: a two-block system with ensuing formation of a two-block muckpile is investigated. It will become apparent that the study of a two-block system is perfectly sufficient for a deeper understanding of the problem of the entire bench blast and muck-pile formation. Two approaches will be presented: the momentum or impact approach and the wave propagation approach. The movement of the individual blocks and the formation of a 'two-block muck-pile' will be studied for both approaches and the differences in the results will be discussed. The purpose is to clarify, during blasting and ensuing block movement, the influence of the wave propagation action as compared to a purely gas-pressure based momentum treatment of muckpile formation. The results show that a wave propagation approach may lead to considerably different results for jointed rock mass and for certain combinations of parameters. 相似文献