Study on Influencing Factors of Liquid Carbon Dioxide Blasting in Rock Cutting

Q3 Engineering
Jianwei Li, Guiwen Zhang, Huadong Liu, Shanglong Zhang, Xuansheng Cheng
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引用次数: 0

Abstract

Background:: At present, although some scholars have studied liquid carbon dioxide blasting, there are still some problems to be solved, such as the influencing factors of the liquid carbon dioxide blasting effect. Based on the project of Jiu’e railway, this paper studies the influencing factors of liquid carbon dioxide blasting in rock cutting. Objective:: The study aims to show the influence of different blasting hole depths and jet directions on the effect of liquid carbon dioxide blasting and fracture development. Methods:: Considering the influence of jet direction and different blasting hole depth on liquid carbon dioxide blasting in rock cutting, the fracture development law at different blasting hole depths is analyzed, the stress characteristics of jet direction and non-jet direction are discussed, and fracture development process is analyzed in detail from the viewpoint of energy. Moreover, related patents on liquid carbon dioxide blasting devices are also reviewed. The research on law of fracture development and optimal blasting hole depth is the highlight of this paper. Results:: The influence of different blasting hole depths, jet directions on effect of liquid carbon dioxide blasting and fracture development is analyzed, When the depth of blasting hole is 2.5 m, the fractures can extend to bench surface but cannot extend to the bottom of the excavation surface. When the hole depth is 5.0 m, the fractures cannot extend to the bench surface. The fractures can be extended to the bottom of the excavation face and the bench surface when the blasting hole depth is 4.0. Moreover, the liquid carbon dioxide blasting can effectively blast the rock cutting, and the optimal blasting hole depth is 4m. Conclusion:: Through the analysis results, considering the influencing factors of fracture number, fracture length and consumption of blasting energy, a blasting hole depth of 4m is considered the best option.
液态二氧化碳爆破在岩石切割中的影响因素研究
背景:目前,虽然有学者对液体二氧化碳爆破进行了研究,但仍存在一些问题有待解决,如液体二氧化碳爆破效果的影响因素等。结合九娥铁路工程,对液态二氧化碳爆破在岩石切割中的影响因素进行了研究。目的:研究不同的爆破孔深和射流方向对液态二氧化碳爆破效果和裂缝发育的影响。方法:考虑射流方向和不同爆破孔深对岩石切割中液态二氧化碳爆破的影响,分析不同爆破孔深下裂缝发育规律,讨论射流方向和非射流方向的应力特征,并从能量角度详细分析裂缝发育过程。此外,还对液态二氧化碳爆破装置的相关专利进行了综述。裂缝发育规律和最佳爆破孔深的研究是本文的重点。结果:分析了不同爆孔深度、射流方向对液二氧化碳爆破效果和裂缝发育的影响,当爆孔深度为2.5 m时,裂缝可以延伸到台阶表面,但不能延伸到开挖面底部;当井深为5.0 m时,裂缝不能延伸到台阶表面。当爆破孔深为4.0时,裂缝可扩展到开挖面底部和台阶表面。液体二氧化碳爆破能有效爆破岩屑,最佳爆破孔深为4m。结论:通过分析结果,综合考虑裂缝数、裂缝长度和爆破能量消耗等影响因素,爆破孔深4m为最佳方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Recent Patents on Engineering
Recent Patents on Engineering Engineering-Engineering (all)
CiteScore
1.40
自引率
0.00%
发文量
100
期刊介绍: Recent Patents on Engineering publishes review articles by experts on recent patents in the major fields of engineering. A selection of important and recent patents on engineering is also included in the journal. The journal is essential reading for all researchers involved in engineering sciences.
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