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中国科大学子宋晓东的重大发现地球内核在自转
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作者 周凤岗 《研究生教育研究》 1996年第4期81-81,共1页
中国科大学子宋晓东的重大发现地球内核在自转7月17日,美国《纽约时报》以头版头条报道:1986年毕业于中国科大的留美中国地震学家宋晓东,发现地球内核在自转。于当天中午,哥伦比亚大学为其举行了新闻发布会。加利福尼亚州大... 中国科大学子宋晓东的重大发现地球内核在自转7月17日,美国《纽约时报》以头版头条报道:1986年毕业于中国科大的留美中国地震学家宋晓东,发现地球内核在自转。于当天中午,哥伦比亚大学为其举行了新闻发布会。加利福尼亚州大学教授松·莱说:“这是一个震撼人心... 展开更多
关键词 地球内核 重大发现 地磁场 哥伦比亚大学 地球深部结构 板块运动 波的传播速度 地球物理学家 石油勘探开发 地震
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Seismic effort of blasting wave transmitted in coal-rock mass associated with mining operation 被引量:8
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作者 曹安业 窦林名 +3 位作者 骆循 张益东 黄军利 K.Andrew 《Journal of Central South University》 SCIE EI CAS 2012年第9期2604-2610,共7页
Microseismic effects during the transmission of seismic waves in coal and rock mass associated with mining operation were studied by on-site blasting tests and microseismic monitoring in LW704 of Southern Colliery,Aus... Microseismic effects during the transmission of seismic waves in coal and rock mass associated with mining operation were studied by on-site blasting tests and microseismic monitoring in LW704 of Southern Colliery,Australia,by using spread velocities,amplitudes and frequency contents as the main analysis parameters.The results show that the average P-wave velocity,mean values of combined maximal amplitudes and frequencies of the first arrivals are all reduced significantly along with goaf expanding and intensity weakening of overlying strata during mining process.A full roof fracturing can make the average P-wave velocities,combined maximal amplitudes and frequencies of first arrivals reduce to about 69.8%,92.2% and 60.0%,respectively.The reduction of the above seismic parameters reveals dynamic effects of the variation of strata structure and property to the wave transmission and energy dissipation of blasting wave.The research greatly benefits further study on stability of surrounding rock under the destructive effort by mine tremor,blasting,etc,and provides experimental basis for source relocation and parameter optimization of seismic monitoring as well. 展开更多
关键词 seismic effort blasting wave transmission and attenuation rule fracture zone intensity weakening geophone station
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