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Experimental research and energy analysis of a new type of dry ice powder pneumatic rock breaking technology 被引量:2
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作者 Xiaofei Wang Shaobin Hu +2 位作者 Enyuan Wang Qiang Zhang Bing Liu 《International Journal of Mining Science and Technology》 SCIE EI CAS CSCD 2023年第4期423-435,共13页
When the traditional drill and blast method is applied to rock crushing projects,it has strong vibration,loud noise and dust pollution,so it cannot be used in densely populated areas such as urban public works.We deve... When the traditional drill and blast method is applied to rock crushing projects,it has strong vibration,loud noise and dust pollution,so it cannot be used in densely populated areas such as urban public works.We developed a supercritical CO_(2)true triaxial pneumatic rock-breaking experimental system,and conducted laboratory and field tests of dry ice powder pneumatic rock-breaking.The characteristics of the blast-induced vibration velocity waveform and the evolution of the vibration velocity and frequency with the focal distance were analyzed and discussed.The fracturing mechanism of dry ice powder pneumatic rock breaking is studied.The research results show that:(1)The vibration velocity induced by dry ice powder pneumatic rock breaking decays as a power function with the increase of the focal distance;(2)The vibration frequency caused by dry ice powder pneumatic rock breaking is mainly distributed in 1–120 Hz.Due to the dispersion effect,the dominant frequency of 10–30 Hz appears abnormally attenuated;(3)The traditional CO_(2)phase change fracturing energy calculation formula is also applicable to dry ice pneumatic rock breaking technology,and the trinitrotoluene(TNT)equivalent of fracturing energy is applicable to the Sadovsky formula;(4)Dry ice powder pneumatic rock breaking is shock wave and highenergy gas acting together to fracture rock,which can be divided into three stages,among which the gas wedge action of high-energy gas plays a dominant role in rock mass damage. 展开更多
关键词 dry ice powder pneumatic rock breaking Cracking mechanism Energy analysis Vibration frequency
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干冰粉热冲击破岩基坑围护结构振动安全研究
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作者 王小飞 胡少斌 +2 位作者 王恩元 黄俊 颜正勇 《中国公路学报》 EI CAS CSCD 北大核心 2024年第3期371-381,共11页
为了给干冰粉热冲击破岩现场设定施工参数设计提供参考,并对关键工程结构进行全面的安全评价,首次在居民区附近明挖隧道中进行了隧道开挖工程干冰粉热冲击破岩现场试验。在试验中通过压力传感器获得干冰粉致裂筒内部压力变化曲线,使用... 为了给干冰粉热冲击破岩现场设定施工参数设计提供参考,并对关键工程结构进行全面的安全评价,首次在居民区附近明挖隧道中进行了隧道开挖工程干冰粉热冲击破岩现场试验。在试验中通过压力传感器获得干冰粉致裂筒内部压力变化曲线,使用振动和噪音监测系统监测破岩过程中隧道结构的噪音和振动响应。通过希尔伯特黄变换对振动信号进行分解和特征提取,通过振动能量时域分布和频域分布特征获得振动安全评价参数。研究结果表明:(1)干冰气动破岩最大振动速度在砼冠梁8 m处衰减至50 mm·s^(-1)以下,满足安全质点振动速度要求,噪音在4 m处仅为83 dB,对周边居民生活影响很小;(2)干冰破岩诱发振动速度整体上呈衰减趋势,且符合乘幂函数衰减,可以划分为振动速度缓慢降低区(2.5~10 m)和稳定区(>10 m)两个区域;(3)干冰粉致裂管破裂压力在40~60 MPa,干冰粉热冲击破岩是冲击波和高能气体共同作用致裂岩石,可以分为3个阶段,其中高能气体的气楔作用在岩体损伤中占主导作用;(4)HHT与傅里叶变换分析相比更适用于处理振动信号,获得振动速度峰值和主频率后计算振动最大位移可以更好地对隧道结构进行安全评估。干冰粉热冲击破岩是一种比传统钻爆法更加安全的破岩技术,振动弱,噪音小,适合在城市敏感区域应用。 展开更多
关键词 隧道工程 干冰粉热冲击破岩 振动安全 希尔伯特黄变换
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