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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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基于对越南境内红河断裂带的野外考察,结合中国境内红河断裂带已有考察研究成果,从断裂几何结构、构造演化与地层发育、新生代地质地貌特征等多个方面,初步探讨了红河断裂带现今活动的基本特征.认为:(1)红河断裂带在断裂几何结构、断裂长期的发育演化过程、断裂活动的地质地貌表现等诸多方面都表现出异常突出的时空不均匀性和分段性;(2)红河断裂新构造运动以来的夷平面发育与解体、新生代盆地发育与堆积、水系及河流阶地发育与变形等方面的特征表明,中国境内红河断裂带第四纪以来总体活动水平由北向南逐渐减弱的趋势一直延续到了越南境内;(3)青藏高原侧向挤出作用的影响范围足有限的,这一认识对于探索川滇地区地壳运动与强震活动的动力学机制具有重要意义. 相似文献
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利用云南区域数字地震遥测台网资料,采用Brune圆位错模型对1998年12月至2006年8月云南境内M≥3地震和越南北部M>2地震测算震源参数。结果表明,红河断裂两侧活动块体的地震活动和震源参数存在较为明显的差异。就地震矩与震级的标度关系而言,滇西南块体与美国加州圣安德列斯断层和滇西实验场及其周边地区的结果一致,但与华南块体和越南北部地区有差异;从应力降的测算结果看,华南块体西缘的云南及越南北部地区的年均值为7.29MPa,滇西南块体为4.48MPa,两块体北部地震的应力降大于南部地区,应力降由北向南逐渐减小;就地震位错年均值而言,华南块体为12.3mm/a,滇西南块体为6.6mm/a。 相似文献
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甘孜-玉树断裂的平均滑动速率与近代大地震破裂 总被引:33,自引:0,他引:33
野外调查获得甘孜-玉树断裂晚第四纪活动及近代地震破裂的新证据,由7个地点的断错地貌及其相关沉积物年龄确定出近5万年来断裂的平均左旋滑动速率(122)mm/a,该结果与鲜水河断裂的平均左旋滑动速率估值很接近,反映了沿川滇~羌塘活动地块的北~东北边界的晚第四纪水平运动总体上是协调的,沿断裂的3个段落均发现近代大地震地表破裂的遗迹,其中,北西段1896年破裂至少长70km,相应地震的矩震级为7.3;中段的最新破裂长约180km,是一次矩震级约为7.7、未知年代的大地震形成的;东南段未知年代的最新破裂长约65km,最大同震左旋位移5.3m,估计相应地震的矩震级约为7.3,已根据调查资料推断了后两次大地震可能分别发生在1854年和1866年,这些证明该断裂的不同段落均具有发生大地震的能力。 相似文献
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