Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting

In the traditional presplitting blasting, the presplit holes are generally uniformly initiated, which causes local damage to the retained rock mass while forming the damping ditch. In order to determine the optimal delay time of the precise delay initiation hole by hole, the finite element software...

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Main Authors: Jun Ma, Xianglong Li, Jianguo Wang, Qiang Li, Ting Zuo, Xiao Wu, Meng Hou
Format: Article
Language:English
Published: Hindawi Limited 2021-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2021/4593221
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spelling doaj-86e062d3cb204ad0afe50532ba1899b52021-09-27T00:51:58ZengHindawi LimitedShock and Vibration1875-92032021-01-01202110.1155/2021/4593221Numerical Simulation on Selection of Optimal Delay Time for Precise Delay BlastingJun Ma0Xianglong Li1Jianguo Wang2Qiang Li3Ting Zuo4Xiao Wu5Meng Hou6Faculty of Land and Resources Engineering of Land and Resources EngineeringFaculty of Land and Resources Engineering of Land and Resources EngineeringFaculty of Land and Resources Engineering of Land and Resources EngineeringFaculty of Land and Resources Engineering of Land and Resources EngineeringFaculty of Land and Resources Engineering of Land and Resources EngineeringZhejiang Gaoneng Corporation of Blasting Engineering Co., Ltd.Zhejiang Gaoneng Corporation of Blasting Engineering Co., Ltd.In the traditional presplitting blasting, the presplit holes are generally uniformly initiated, which causes local damage to the retained rock mass while forming the damping ditch. In order to determine the optimal delay time of the precise delay initiation hole by hole, the finite element software ANSYS/LS-DYNA is used to build a blasting model of the concrete, which includes concrete, explosive, and air to simulate the crack forming process of the presplitting hole under various initiation modes. Four kinds of initiation modes for blasting, namely, simultaneous initiation with 0 ms, 9 ms, 12 ms, and 15 ms of delay between adjacent holes, are set up to determine the exact delay time of the best presplitting effect. The simulation results show that when the prehole detonates simultaneously, the inner hole crack penetrates the fastest, but the peak stress around the hole is up to 147.9 MPa. When interhole delayed initiation is used, although the time of interhole crack penetration is prolonged, the stress coupling is generated around the precrack and the maximum stress is obviously reduced. The maximum stress generated under the three delayed initiation conditions is only 76.8 MPa. Considering the requirement of damage control of surrounding rock mass and the rapid formation of precrack, 9 ms delay time is determined as the precise delay time of this test.http://dx.doi.org/10.1155/2021/4593221
collection DOAJ
language English
format Article
sources DOAJ
author Jun Ma
Xianglong Li
Jianguo Wang
Qiang Li
Ting Zuo
Xiao Wu
Meng Hou
spellingShingle Jun Ma
Xianglong Li
Jianguo Wang
Qiang Li
Ting Zuo
Xiao Wu
Meng Hou
Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting
Shock and Vibration
author_facet Jun Ma
Xianglong Li
Jianguo Wang
Qiang Li
Ting Zuo
Xiao Wu
Meng Hou
author_sort Jun Ma
title Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting
title_short Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting
title_full Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting
title_fullStr Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting
title_full_unstemmed Numerical Simulation on Selection of Optimal Delay Time for Precise Delay Blasting
title_sort numerical simulation on selection of optimal delay time for precise delay blasting
publisher Hindawi Limited
series Shock and Vibration
issn 1875-9203
publishDate 2021-01-01
description In the traditional presplitting blasting, the presplit holes are generally uniformly initiated, which causes local damage to the retained rock mass while forming the damping ditch. In order to determine the optimal delay time of the precise delay initiation hole by hole, the finite element software ANSYS/LS-DYNA is used to build a blasting model of the concrete, which includes concrete, explosive, and air to simulate the crack forming process of the presplitting hole under various initiation modes. Four kinds of initiation modes for blasting, namely, simultaneous initiation with 0 ms, 9 ms, 12 ms, and 15 ms of delay between adjacent holes, are set up to determine the exact delay time of the best presplitting effect. The simulation results show that when the prehole detonates simultaneously, the inner hole crack penetrates the fastest, but the peak stress around the hole is up to 147.9 MPa. When interhole delayed initiation is used, although the time of interhole crack penetration is prolonged, the stress coupling is generated around the precrack and the maximum stress is obviously reduced. The maximum stress generated under the three delayed initiation conditions is only 76.8 MPa. Considering the requirement of damage control of surrounding rock mass and the rapid formation of precrack, 9 ms delay time is determined as the precise delay time of this test.
url http://dx.doi.org/10.1155/2021/4593221
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