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471.
东亚寒潮活动对下游爆发性气旋生成的影响   总被引:3,自引:2,他引:3       下载免费PDF全文
孙淑清  高守亭 《气象学报》1993,51(3):304-314
本文研究了东亚寒潮过程与下游爆发性气旋之间的关系。通过对一个强寒潮过程及随后在西北太平洋上爆发性气旋生成的个例分析发现,寒潮过程相伴随的大环流调整给下游气旋猛烈发展提供了极好的背景条件。当超长波槽与长波槽耦合加深时,槽前气旋迅速发展。大槽的加深使高空急流不断加速,大风区向低层扩展。出口区的次级环流也随着急流的加强而加强,它促使北侧低层气旋发展。对93次爆发性气旋作统计分析进一步证实了上述结论。绝大多数过程皆伴有上游的强冷高压活动。高压中心越强相应的爆发气旋也越强,甚至可以发生连续的爆发。绝大多数爆发性气旋发生在超长波槽前,强高空急流出口区的向极侧。  相似文献   
472.
华东东部地区中强地震概率背景及其发震估计   总被引:1,自引:0,他引:1  
门可佩  赵兵 《内陆地震》1993,7(3):279-285
应用数理统计方法,简明地给出了华东东部地区中强地震发震的概率背景,并在此基础上根据可公度性理论讨论了今后M≥5、M≥6级地震的危险性,估计该区在1993、1996年前后有可能发生5级以上地震,而且1996年前后发生的有可能是6级以上地震。  相似文献   
473.
474.
东天山中段不同构造环境火山岩地球化学特征   总被引:8,自引:0,他引:8  
东天山中段分布有阿齐山岛弧区(Ⅱ_2)安山岩类和海沟区(Ⅱ_1)混杂岩带玄武岩类火山岩,不同构造环境形成的火山岩各自具有与其环境相对应的地球化学特征。在常量元素、微量元素及稀土元素特征方面,它们可与世界上典型构造环境区形成的火山岩相对比。从地球化学特征发现,Ⅱ_2区火山岩主要与早石炭世吐鲁番洋壳向塔里木陆壳俯冲有关,形成了Ⅱ_2区钙碱性安山质火山岩。Ⅱ_1区混杂岩带内呈洋壳残片产出的玄武岩类与吐鲁番洋盆的扩张有成因联系,岩石属于大洋拉斑玄武岩类。  相似文献   
475.
To better understand the lithosphere mantle collision tectonics between the India plate and Asia plate, we determine three dimensional P wave velocity structure beneath western Tibet using 27,439 arrival times from 2,174 teleseismic events recorded by 182 stations of Hi-CLIMB Project and 16 stations in the north of Hi-CLMB. Our tomographic images show the velocity structure significantly difference beneath northern and southern Qiangtang, which can further prove that the Longmu Co-Shuanghu ophiolitic belt is a significant tectonic boundary fault zone. There are two prominent high velocity anomalies and two prominent low velocity anomalies in our images. One obvious high velocity anomalies subduct beneath the Tibet at the long distance near 34°N, whereas it is broke off by an obvious low velocity anomaly under the IYS. We interpret them as northward subducting Indian lithosphere mantle and the low velocity anomanly under IYS likely reflects mantle material upwelling triggered by tearing of the northward subduction Indian lithosphere. The other prominent high velocity anomaly was imaged at a depth from 50 km to 200 km horizontal and up to the northern Qiangtang with its southern edge extending to about 34°N through Hoh Xil block. We infer it as the southward subducting Asia lithosphere mantle. The other widely low velocity anomaly beneath the Qiangtang block lies in the gap between the frontier of India plate and Asia plate, where is the channel of mantle material upwelling.  相似文献   
476.
Correlation analysis identified that Indian summer rainfall and East Asian 500 hPa geopotential height field are significantly correlated.A teleconnection pattern between Indian monsoon and East Asian summer circulation (IEA pattern) was proposed.We suggested that the Pacific-Japan teleconnection pattern (PJ pattern) primarily influences the meridional position of the northwestern Pacific subtropical high (NPSH) in summer,while IEA pattern partly affects its zonal stretch or the anomaly of geopotential height field over China mainland.The numerical experiments imply that the IEA pattern has important impact on East Asian circulation and it can be stimulated by the SST anomaly of the Indian Ocean.We summarized that there are two ways,a directive way and a selective way,by which ENSO exerts impacts on East Asian summer monsoon.  相似文献   
477.
赋存于东秦岭熊耳地体熊耳群陆相火山岩中的上宫金矿,是典型的断控脉状造山型金矿床,其成矿物质长期被认为来自结晶基底太华超群(所谓原生矿源层)、盖层熊耳群(所谓衍生矿源层)或燕山期花岗岩,或者下伏地壳或地幔。但是,这些观点与放射成因同位素研究结果相矛盾,因此可以认为成矿物质侧向来源于熊耳地体以南的管道口群栾川群沉积地层,后者沿马超营断裂向北陆内俯冲到熊耳地体之下,通过变质脱水导致上宫金矿成矿流体系统的发育和矿床形成。此外,成矿早阶段石英40Ar/39Ar年龄为222.8Ma±24.9Ma;成矿早、中、晚阶段矿物或岩石的Rb-Sr等时线年龄分别为242Ma±10Ma,165Ma±7Ma和113Ma±6Ma,表明成矿发生在250Ma~100Ma之间,同步于华北与扬子板块的陆陆碰撞造山作用。  相似文献   
478.
河南省东部地球物理特征与找煤远景   总被引:2,自引:0,他引:2  
在综合分析各种地球物理资料的基础上,论述了豫东平原区的地球物理特征,包括重力场、磁力场、地震反射波等,通过重、磁、地震联合反演并与钻探资料对比,做出了区域地质研究和综合地质解释,指出了找煤远景。  相似文献   
479.
Mountain ranges that are actively forming around the western and northern perimeter of the Indo-Eurasia collisional deformational field, such as the Mongolian Altai, comprise a unique class of intracontinental intraplate transpressional orogen with structural and basinal elements that are distinct from contractional and extensional orogens. Late Cenozoic uplift and mountain building in the Mongolian Altai is dominated by regional-scale dextral strike-slip faults that link with thrust and oblique-slip faults within a 300-km-wide deforming belt sandwiched between the more rigid Junggar Basin block and Hangay Precambrian craton. Dominant orogenic elements in the Mongolian Altai include double restraining bends, terminal restraining bends, partial restraining bends, single thrust ridges, thrust ridges linked by strike-slip faults, and triangular block uplifts in areas of conjugate strike-slip faults. The overall pattern is similar to a regional strike-slip duplex array; however, the significant amount of contractional and oblique-slip displacement within the range and large number of historical oblique-slip seismic events renders the term “transpressional duplex” more accurate. Intramontane and range flanking basins can be classified as ramp basins, half-ramp basins, open-sided thrust basins, pull-apart basins, and strike-slip basins. Neither a classic fold-and-thrust orogenic wedge geometry nor a bounding foredeep exists. The manner in which upper crustal transpressional deformation is balanced in the lower crust is unknown; however, crustal thickening by lower crustal inflation and northward outflow of lower crustal material are consistent with existing geological and geodetic data and could account for late Cenozoic regional epeirogenic uplift in the Russian Altai and Sayan regions.  相似文献   
480.
Manabu  Abe  Tetsuzo  Yasunari  Akio  Kitoh 《Island Arc》2005,14(4):378-388
Abstract   The relationship between the altitude of the Tibetan Plateau and climate change in central Asia was investigated through a numeric experiment using the Meteorological Research Institute (MRI) coupled atmosphere–ocean general circulation model I (MRI-CGCM1). The results suggest that summer precipitation in central Asia decreased significantly as the Tibetan Plateau rose in height. Spring precipitation, however, increased during initial growth stages when the plateau height was up to 40% of its present-day height, and then decreased with further plateau growth. During the Tibetan Plateau uplift, the difference between precipitation and evaporation was minimal during spring. When the plateau attained a height exceeding 60% of its present height, relatively low precipitation but high evaporation in spring led to a lower amount of ground moisture. In the case of the high plateau, sensible heat flux during summer and fall largely exceeded latent heat flux. Change was particularly significant for cases when the plateau reached 40–60% of its present-day height. The duration of the predominant sensible heat flux became longer with the uplift of the Tibetan Plateau. The period in which latent heat exceeded sensible heat seems to have been restricted to winter and early spring. The numeric experiments suggest that a significant drying of central Asia corresponded to the period in which the Tibetan Plateau exceeded approximately half its present-day height.  相似文献   
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