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作 者:王建国[1,4] 陶家龙 石飞 万再春 WANG Jianguo;TAO Jialong;SHI Fei;WAN Zaichun(Faculty of Land Resources Engineering,Kunming University of Science and Technology,Kunming 650093,Yunnan,China;Yunnan Shangli Mining Co.,Kunming 650299,Yunnan,China;Mining Institute of Yunnan Copper Co.,LTD,Kunming 650224,Yunnan,China;Advanced Blasting Technology Engineering Research Center of Yunnan Provincial Department of Education,Kunming 650093,Yunnan,China)
机构地区:[1]昆明理工大学国土资源工程学院,云南昆明650093 [2]云南上立矿业有限公司,云南昆明650299 [3]云南铜业股份有限公司矿山研究院,云南昆明650224 [4]云南省教育厅爆破新技术工程研究中心,云南昆明650093
出 处:《矿产保护与利用》2024年第4期9-17,共9页Conservation and Utilization of Mineral Resources
基 金:云南省重大科技专项(202202AG050014);云南省基础研究计划面上项目(202201AT070178)。
摘 要:为了获得逐孔预裂爆破的最优延期时间,基于Ansys/LS−Dyna有限元软件,结合现场实验研究了不同延期时间下逐孔预裂爆破的振动衰减规律,为实际工程应用提供了理论依据。结果表明:与齐发起爆相比,逐孔起爆可以有效地降低质点峰值振动速度(PPV),特别是预裂沟附近区域;随着延期时间的增大,萨道夫斯基公式的K值逐渐减小,而α值变化不大,当延期时间大于0.6T(T为单孔爆破振动持续时间)时,K与α的值趋于稳定,接近于单孔爆破;校正系数β与延期时间成反比,最优延期时间应为0.6T~1.0T;逐孔预裂成缝后对主爆区的减振率大于齐发预裂爆破。To obtain the optimal delay time of hole−by−hole pre−splitting blasting,based on Ansys/LS−Dyna finite element software,combined with field experiments,this paper studies the vibration attenuation law of hole−by−hole pre−splitting blasting under different delay time,which provides a theoretical basis for practical engineering application.The results showed that compared with the simultaneous initiation,the hole−by−hole initiation effectively reduced the peak particle vibration velocity(PPV),especially in the area near the pre−split trench.As the delay time increased,the K value of the Sadaovsk formula gradually decreased,while theαvalue did not change much.When the delay time was greater than 0.6T(T was the duration of single−hole blasting vibration),the values of K andαtended to be stable and close to single−hole blasting.The correction coefficientβwas inversely proportional to the delay time,and the optimal delay time should be 0.6 T~1.0 T;the vibration reduction rate of the main blasting area after hole−by−hole pre−splitting was greater than that of the simultaneous pre−splitting blasting.
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