Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting

To study the impact of cutting blasting on the surface, a vibration waveform prediction function was constructed, and a method of dividing the affected area was proposed. Based on the equivalent spherical charge theory, it is possible to establish a connection between the fitting coefficient and the...

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Main Authors: Yan Zhao, Xiangxiang Yin, Hailong Wang, Lijie Ge, Jialei Yan, Yunhe Li, Huilin Li, Jinglei Liu
Format: Article
Language:English
Published: Wiley 2024-01-01
Series:Shock and Vibration
Online Access:http://dx.doi.org/10.1155/2024/9666468
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author Yan Zhao
Xiangxiang Yin
Hailong Wang
Lijie Ge
Jialei Yan
Yunhe Li
Huilin Li
Jinglei Liu
author_facet Yan Zhao
Xiangxiang Yin
Hailong Wang
Lijie Ge
Jialei Yan
Yunhe Li
Huilin Li
Jinglei Liu
author_sort Yan Zhao
collection DOAJ
description To study the impact of cutting blasting on the surface, a vibration waveform prediction function was constructed, and a method of dividing the affected area was proposed. Based on the equivalent spherical charge theory, it is possible to establish a connection between the fitting coefficient and the engineering parameters in the equivalent source intensity function. Furthermore, a blasting vibration waveform function suitable for engineering can be constructed. Secondly, the reliability of the method introduced is verified through the data monitored on-site. Finally, the affected partitions of blasting vibration are divided based on the peak particle velocity and vibration displacement as standards. The results show that the vibration waveform prediction system introduced can restore the vibration waveform corresponding to cutting blasting. In addition, the zoning method can reasonably divide the scope of the affected area.
format Article
id doaj-art-ffae3c5b776a412bbd7d17780c9c4116
institution Kabale University
issn 1875-9203
language English
publishDate 2024-01-01
publisher Wiley
record_format Article
series Shock and Vibration
spelling doaj-art-ffae3c5b776a412bbd7d17780c9c41162025-02-03T05:54:34ZengWileyShock and Vibration1875-92032024-01-01202410.1155/2024/9666468Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of BlastingYan Zhao0Xiangxiang Yin1Hailong Wang2Lijie Ge3Jialei Yan4Yunhe Li5Huilin Li6Jinglei Liu7Hebei University of ArchitectureHydrochina Chengdu Engineering Corporation LimitedHebei University of ArchitectureHebei University of ArchitectureHebei University of ArchitectureHebei University of TechnologyHebei University of ArchitectureHebei University of ArchitectureTo study the impact of cutting blasting on the surface, a vibration waveform prediction function was constructed, and a method of dividing the affected area was proposed. Based on the equivalent spherical charge theory, it is possible to establish a connection between the fitting coefficient and the engineering parameters in the equivalent source intensity function. Furthermore, a blasting vibration waveform function suitable for engineering can be constructed. Secondly, the reliability of the method introduced is verified through the data monitored on-site. Finally, the affected partitions of blasting vibration are divided based on the peak particle velocity and vibration displacement as standards. The results show that the vibration waveform prediction system introduced can restore the vibration waveform corresponding to cutting blasting. In addition, the zoning method can reasonably divide the scope of the affected area.http://dx.doi.org/10.1155/2024/9666468
spellingShingle Yan Zhao
Xiangxiang Yin
Hailong Wang
Lijie Ge
Jialei Yan
Yunhe Li
Huilin Li
Jinglei Liu
Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting
Shock and Vibration
title Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting
title_full Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting
title_fullStr Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting
title_full_unstemmed Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting
title_short Prediction of Vibration Waveform and Division of Influenced Partitions under the Action of Blasting
title_sort prediction of vibration waveform and division of influenced partitions under the action of blasting
url http://dx.doi.org/10.1155/2024/9666468
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