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北斗卫星系统是中国正在实施的自主研发、独立运行的卫星定位与通信系统.因其具有短报文通信功能,进行相应的软硬件开发,可以用于传输包括烈度在内的强震动台网观测数据.通过北斗卫星传输烈度速报的性能测试和在芦山7.0级大地震中的实际应用效果,对北斗卫星系统目前在强震动台网数据传输中的应用方式和效能进行介绍. 相似文献
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“十五”期间建设并投入试运行的中国数字强震动台网云南区域台网有20多个强震动台站记录到宁洱6.4级地震产生的地面运动。但值得注意的是,位于实地考察得到的Ⅵ度以上烈度区内或者其附近的4个强震台站,从加速度峰值、速度峰值与烈度的对应关系来看,与实际震害现象反映出的烈度有一定差异。究其原因,地震动幅值的大小和震级的大小有着直接的关系,但同时也和地震波的传播途径及场地条件等因素有关。因此,从场地因素的角度出发,从覆盖土层、地形地貌和地质构造条件等方面对造成强震动记录值偏大的原因进行了调查分析。在此基础上,对今后云南地区地震动研究场地影响的考虑提出了一些思路和建议。 相似文献
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The seismogenic fault and the dynamic mechanism of the Ning’er, Yunnan Province MS6.4 earthquake of June 3, 2007 are studied on the basis of the observation data of the surface fissures, sand blow and water eruption, land-slide and collapse associated with the earthquake, incorporating with the data of geologic structures, focal mecha-nism solutions and aftershock distribution for the earthquake area. The observation of the surface fissures reveals that the Banhai segment of the NW-trending Ning’er fault is dominated by right-lateral strike-slip, while the NNE-trending fault is dominated by left-lateral strike-slip. The seismo-geologic hazards are concentrated mainly within a 330°-extending zone of 13.5 km in length and 4 km in width. The major axis of the isoseismal is also oriented in 330° direction, and the major axis of the seismic intensity VIII area is 13.5 km long. The focal mechanism solutions indicate that the NW-trending nodal plane of the Ning’er MS6.4 earthquake is dominated by right-lateral slip, while the NE-trending nodal plane is dominated by left-lateral slip. The preferred distribution orientation of the aftershocks of MS≥2 is 330°, and the focal depths are within the range of 3~12 km, predominantly within 3~10 km. The distribution of the aftershocks is consistent with the distribution zone of the seismo-geologic hazards. All the above-mentioned data indicate that the Banhai segment of the Ning’er fault is the seismogenic fault of this earthquake. Moreover, the driving force of the Ning’er earthquake is discussed in the light of the active block theory. It is believed that the northward pushing of the Indian plate has caused the eastward slipping of the Qinghai-Tibetan Plateau, which has been transformed into the southeastern-southernward squeezing of the southwest Yunnan region. As a result, the NW-trending faults in the vicinity of the Ning’er area are dominated by right-lateral strike-slip, while the NE-trending faults are dominated by left-lateral strike-slip. This tectonic 相似文献
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以2007年6月3日云南省宁洱6.4级地震地表裂缝、喷砂冒水、地震滑坡、地震崩塌等资料为基础,结合震区的地质构造、震源机制解、余震分布等资料,研究了本次地震的发震断层及其强震频繁发生的动力学机制. 地震地表裂缝资料表明,北西向的宁洱断裂班海段具有右旋走滑的特征,北北东向的断层具有左旋走滑的性质. 地震地质灾害集中分布在330deg;方向上的长13.5 km、宽4 km的范围内. 等震线的长轴方向亦为330deg;,Ⅷ度区长轴长度为17 km. 震源机制解资料显示,宁洱6.4级地震的北西向节面为右旋错动,北东向节面为左旋错动. 大于等于2.0级的余震分布优势方向为330deg;,深度为3——12 km,优势深度为3——10 km,余震分布与地震地质灾害集中分布带一致. 以上资料说明,宁洱断裂班海段为这次地震的发震断层. 最后以活动地块理论为基础,讨论了宁洱地震的动力来源为印度板块的向北推挤使青藏高原向东滑移,在滇西南地区转化为向南南东方向的挤出,使宁洱附近网络状的北西向断裂发生右旋活动,北东向断裂发生左旋活动. 这种构造格局可能是该区频繁发生6.0——6.9级地震的原因. 相似文献
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