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Face destressing blast design for hard rock tunnelling at great depth

机译:大幅面硬岩隧道掘进的爆破设计

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Destress blasting of development headings is a construction technique in deep tunnels, whereby explosives are used to fracture the rock in such a way that strain energy is dissipated from the rock mass, with minimal deformation. This is intended to reduce the frequency and severity of violent stress-driven face or floor instability. Effective destressing relies on shear mechanisms of rock mass failure. For this to occur, the length and directionality of blast-induced radial fractures must be sufficient to generate fracture continuity between adjacent explosive charges. Natural rock structure must also be weakened by blasting. The blast-induced fracture network characteristics are largely dependent upon the explosive properties, rock mass strength, natural structural characteristics, as well as the magnitude, orientation and anisotropy of the principal stresses. This paper presents a destress blasting design concept consisting of a series of symmetrical rows of destressing charges which are sub-parallel, yet almost oblique to the major principal stress. When detonated, these rows of charges are intended to create a series of continuous fracture planes which may deform in shear, transitioning the rock face to a post-peak loading condition. The blast design and related damage zones have been examined numerically using the Hybrid Stress Blasting Model. The modelling results guide the blast design parameters, such as borehole diameter, burden, spacing, explosive charge properties and alignment of the borehole rows relative to the major principal stress. It is suggested that the optimal destressing charge consists of a collar primed, fully confined and coupled explosive.
机译:掘进井巷道的爆破是深层隧道中的一种建筑技术,在这种隧道中,炸药被用来使岩石破裂,从而使应变能从岩体中消散,而变形最小。目的是减少剧烈的应力驱动的面部或地板不稳定性的频率和严重性。有效的卸压取决于岩体破坏的剪切机制。为此,爆炸引起的径向裂缝的长度和方向性必须足以在相邻炸药之间产生裂缝连续性。天然岩石结构也必须通过爆破来削弱。爆炸引起的裂缝网络特征很大程度上取决于炸药的爆炸特性,岩体强度,自然结构特征以及主应力的大小,方向和各向异性。本文提出了一种卸压爆破设计概念,其中包括一系列对称的卸压装药行,这些行次平行但几乎与主要主应力倾斜。当爆炸时,这些装药行旨在产生一系列连续的断裂面,这些断裂面可能会在剪切作用下变形,从而使岩石面转变为峰后载荷状态。使用混合应力爆破模型对爆破设计和相关损伤区域进行了数值检查。建模结果指导爆破设计参数,例如井眼直径,负荷,间距,炸药装填属性以及井眼排相对于主要主应力的对准。建议最佳的卸压装药由装填好的,完全密闭和耦合的炸药组成。

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