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Application of the four-dimensional lattice spring model for blasting wave propagation around the underground rock cavern

机译:三维晶格弹簧模型在爆炸波在地下洞室中传播中的应用

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This paper studies the propagation and attenuation of blasting wave induced by explosion in underground rock cavern by employing the newly developed four-dimensional lattice spring model (4D-LSM). The non-reflection viscous boundary condition was implemented in the 4D-LSM to reduce the computing resources of full-scale simulation of blasting wave propagation in the practical engineering. Then, a number of damping models were developed and implemented in the 4D-LSM to describe the attenuation of blasting wave in the rock mass. In addition, the influence of the loading form of blast load and damping models on the propagation and attenuation of blasting wave were studied by comparing with the field test data in details. It was found that the loading form of a triangular blast stress wave with an equivalent pressure wave and the coupled damping model could lead the 4D-LSM producing a reasonable fitting over the field test data in terms of both the blasting waveform recorded at a given measuring point and attenuation results from a number of measuring points. Our study provides a basis for the further application of the 4D-LSM as an alternative numerical tool in modeling the blasting wave propagation problems in rock engineering.
机译:本文利用新开发的四维格点弹簧模型(4D-LSM)研究了地下岩洞中爆炸引起的爆炸波的传播和衰减。在4D-LSM中实现了非反射粘性边界条件,以减少实际工程中爆破波传播全面模拟的计算资源。然后,在4D-LSM中开发并实现了许多阻尼模型,用于描述岩体中爆炸波的衰减。此外,还通过与现场试验数据进行了比较,研究了爆炸荷载的加载形式和阻尼模型对爆炸波传播和衰减的影响。结果发现,在等效压力波的作用下,三角爆炸冲击波的载荷形式和耦合的阻尼模型可以使4D-LSM在给定测量值下记录的爆炸波形方面对现场测试数据产生合理的拟合。点和衰减是由多个测量点得出的。我们的研究为4D-LSM作为岩石工程中爆破波传播问题建模的替代数值工具的进一步应用提供了基础。

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