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911.
Based on Coulomb static stress variation, the stress trigging action of the Mani ( Ms7.9, Nov.1997) earthquake on the West Kuulun Mountains Pass (MsS.1, Nov. 2001 ) earthquake is researched. Results of different source mechanism resolutions show that a 10_3 MPa Coulomb stress due to the Mani earthquake was added to the fracture fault of the Kunlun earthquake, and this may shift the broken date to about 10 years earlier, and infer that the stress level in the crust is not low. Comparing the relationship between strong earthquake strength and frequency and earth rotation change, it is shown that the strength‘s decrease and the variation period‘ s shortening of earth rotation are important controlling factors on strong earthquake activity. This great event with Ms = 8.1 took place probably due to a gradual strengthening background of regional stress field within the Qinghai-Xizang block in the period of acceleration of change of day‘s length and stress triggering from the Mani earthquake.  相似文献   
912.
We obtain the preliminary result of crustal deformation velocity field for the Chinese continent by analyzing GPS data from the Crustal Motion Observation Network of China (CMONOC), particularly the data from the regional networks of CMONOC observed in 1999 and 2001. We delineate 9 technically active blocks and 2 broadly distributed deformation zones out of a dense GPS velocity field, and derive block motion Euler poles for the blocks and their relative motion rates. Our result reveals that there are 3 categories of deformation patterns in the Chinese continent. The first category, associated with the interior of the Tibetan Plateau and the Tianshan orogenic belt, shows broadly distributed deformation within the regions. The third category, associated with the Tarim Basin and the region east of the north-south seismic belt of China, shows block-like motion, with deformation accommodated along the block boundaries only. The second category, mainly associated with the borderland of the Tibetan Plateau, such as the Qaidam, Qilian, Xining (in eastern Qinghai), and the Diamond-shaped (in western Sichuan and Yunnan) blocks, has the deformation pattern between the first and the third, i.e. these regions appear to deform block-like, but with smaller sizes and less strength for the blocks. Based on the analysis of the lithospheric structures and the deformation patterns of the regions above, we come to the inference that the deformation modes of the Chinese continental crust are mainly controlled by the crustal structure. The crust of the eastern China and the Tarim Basin is mechanically strong, and its deformation takes the form of relative motion between rigid blocks. On the other hand, the northward indentation of the Indian plate into the Asia continent has created the uplift of the Tibetan Plateau and the Tianshan Mountains, thickened their crust, and raised the temperature in the crust. The lower crust thus has become ductile, evidenced in low seismic velocity and high electric conductivity observed. The brittle part of the crust, driven by the visco-plastic flow of the lower crust, deforms extensively at all scales. The regions of the second category located at the borderland of the Tibetan Plateau are at the transition zone between the regions of the first and the third categories in terms of the crustal structure. Driven by the lateral boundary forces, their deformation style is also between the two, in the form of block motion and deformation with smaller blocks and less internal strength.  相似文献   
913.
A numerical method of viscoelastic finite element coupled with spring-block model is developed to study temporal processes from the slow tectonic motion of large-scale crust to the rapid failure of small-scale faults. Our modeling demonstrates that the motion of crustal blocks is driven by forces from tectonic plate boundaries, and the deformation is distributed on faults for the stress accumulating. The coupling model generates earthquake sequences that display a magnitude-frequency scaling consistent with Gutenberg-Richter law. The frictional heterogeneities affeci earthquakes occurrence and stresses distribution of crustal blocks. Rupture of earthquakes starts at the nucleation node, and propagates bilaterally along faults with the stress triggering, release and redistribution. The failure of faults releases part of crustal stresses, the stress state of crustal blocks near fault is affected by the rupture of local segments on the fault, and the stress state of crustal blocks far away from the fault is controlled by the seismic activity of the whole fault.  相似文献   
914.
We use 23298 Pn arrival-time data from Chinese national and provincial earthquake bulletins to invert fine structure of Pn velocity and anisotropy at the top of the mantle beneath the Sichuan-Yunnan and its adjacent region. The results suggest that the Pn velocity in this region shows significant lateral variation; the Pn velocity varies from 7.7 to 8.3 km/s. The Pn-velocity variation correlates well with the tectonic activity and heat flow of the region. Low Pn velocity is observed in southwest Yunnan, Tengchong volcano area, and the Panxi tectonic area. These areas have very active seismicity and tectonic activity with high surface heat flow. On the other hand, high Pn velocity is observed in some stable regions, such as the central region of the Yangtze Platform; the most pronounced high velocity area is located in the Sichuan Basin, south of Chengdu. Pn anisotropy shows a complex pattern of regional deformation. The Pn fast direction shows a prominent clockwise rotation pattern from east of the Tibetan block to the Sichuan-Yunnan diamond block to southwest Yunnan, which may be related to southeastward escape of the Tibetan Plateau material due to the collision of the Indian Plate to the Eurasia Plate. Thus there appears to be strong correlation between the crustal deformation and the upper mantle structure in the region. The delay times of events and stations show that the crust thickness decreases from the Tibetan Plateau to eastern China, which is consistent with the results from deep seismic sounding.  相似文献   
915.
渭干河流域"2002·7"特大洪水分析   总被引:6,自引:0,他引:6  
黄健  毛炜峄  李燕  王顺德 《冰川冻土》2003,25(2):204-210
渭干河是塔里木河流域第六大源流, 位于天山西部南麓, 渭干河干流起点有新疆最大的流域性控制工程--克孜尔水库. 2002年7月下旬天山中西部山区出现大暴雨(雪)过程, 渭干河流域山区降水持续时间长达30 h以上, 山区降水量50 mm左右, 导致5条支流和渭干河干流出现有水文记录以来的最大洪峰, 流量超过警戒流量和危险流量的2~3.5倍, 暴雨(雪)过程结束之后, 融雪型洪峰长时间居高不下. 洪水过程中, 各支流以及暴雨与融雪等多种洪峰遭遇现象很明显. 克孜尔水库入库洪峰流量达3 660 m3*s-1, 经水库调洪错峰, 出库峰值流量为1 000 m3*s-1, 削峰率72.7%.  相似文献   
916.
邓友生  马巍  何平  周成林 《冰川冻土》2003,25(6):644-647
将研制的高分子有机材料作为添加剂,加入到土体中,经过拌和夯实、干燥固结,能够起到稳定和提高土体的强度,并具有低渗透和低吸水等特性.冻胀试验表明:加入添加剂不仅能阻止土体冻胀的产生、外来水源的入侵及水分的迁移,还能隔断土体孔隙之间的联系,使水分在土体孔隙中不能运移,从而达到了防治冻胀的目的。  相似文献   
917.
地震荷载作用下温度和围压对冻土强度影响的试验研究   总被引:6,自引:4,他引:6  
通过对重塑冻结兰州黄土的动三轴试验,较系统研究了地震荷载作用下冻土的动强度特性,并且定量研究了其在不同温度(-2℃、-5℃、-7℃)和围压(1MPa、3MPa、5MPa)条件下的变化规律.结果发现:冻结黄土的动抗剪强度随围压的增大、温度的降低、振次的减少而增大;动粘聚力Cd随振次的减小和温度的降低而增大;动内摩擦角吼随振次的增大和温度的降低而增大。  相似文献   
918.
王延恩  李念国  韩汝钊 《地下水》2003,25(2):103-105
两城水源地具有较丰富的喀斯特水,根据长期观测资料,充分考虑水资源的各种补给和开采条件,应用水均衡原理,对其水资源量进行定量评价,获得允许可开采量,为工农业供水提供可靠依据。  相似文献   
919.
邵泽宝  刘乃行  王松江 《地下水》2003,25(4):251-253
水资源匮乏已成为当今社会发展不可回避的主要问题,成为制约国民经济快速、稳定、健康发展的“瓶颈”,解决这一问题成为当务之急,本文就城市节水存在的问题,提出了加强节水管理的综合性措施。  相似文献   
920.
放射性碳测年国际比对活动的初步结果   总被引:1,自引:1,他引:1  
中国科学院地球环境研究所^14C实验室作为中国唯一的代表参加了第四届放射性碳测年国际比对活动(FIRI),取得了比较优异的成绩。初步分析了本届比对活动的测年结果,得出如下结论:不同的^14C测年方法对测年结果无明显的影响,不同现代碳标准的选择对大部分样品的测年结果有较明显的影响,而采用不同的本底物质仅对老年龄样品的定年有显著影响;加速器质诺测年法在各种^14C测年方法中最准确、精度最高,正逐渐成为国际^14C测年方法的主流。  相似文献   
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