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排序方式: 共有3786条查询结果,搜索用时 15 毫秒
81.
The crustal fluid evolution and the causes of earthquakes(Ⅲ) 总被引:1,自引:0,他引:1
徐常芳 《地震学报(英文版)》1997,(2)
Thecrustalfluidevolutionandthecausesofearthquakes(Ⅲ)CHANG-FANGXU(徐常芳)InstituteofGeology,StateSeismologicalBureau,Beijing1000... 相似文献
82.
将有限差分层析反演方法用于大别造山带人工地震测深剖面上部地壳初至波的走时层析成像,得到这一剖面上部地壳横向不均匀结构图像表明,在南大别地区的超高压变质带发现榴辉岩相岩石,其下方3km深度以内的基底仍具有大陆地壳构造中正常的结晶基底速度(6.00km/s左右);北大别地区在整个上地壳保持正常的速度,而在超高压带下方3km深度以下为6.20-630km/s的相对高速异常区,这一现象可能与超高压变质岩的含量增大有关.同时还表明,南大别和北大别之间至少在上地壳已有明显差异,它们之间的水吼一五河断裂可能是大别造山带内部的主要构造分界线. 相似文献
83.
Study on the Gravity Field and Deep-Seated Crustal Structure at the North Margin of the Qinghai-Tibet Plateau 总被引:1,自引:0,他引:1
MENG Lingshun 《Continental Dynamics》1997,(1)
1.I~ductionThenorthernmarginoftheQinghai-TibetplateauincludestheAltllnMis.,theQilianMis.,KunlunMis.,theQaidambasinandthesouthernTarimbasin.ThisareaistCctonicallycharacterizedbyintensiveCenozoicdeformationwithcomplicateddeformationalmechedsm(Molnaretal.,1987;Zheng,1991;Culetal.,1994;Ding,1995andXuetal.,1996).Thedeformationalmechanismsincludethrust-napping,strike-slipping,extensionandblockrotation,aswellassimultaneousupliftingandtypicalbasin-rangetectonics(CulandXu,1996).IntermsofCenozoi… 相似文献
84.
John O. Solem Thyra Solem Kaare Aagaard Oddvar Hanssen 《Journal of Paleolimnology》1997,18(3):269-281
Invertebrate colonization of lakes following the uplift of land from the sea was studied in four lakes, currently situated between 39 and 24 m a.s.l., on the central Norwegian coast. The lakes were isolated from the sea between 9500 and 7700 years B.P. Animal and algal remains picked from core samples showed that the first colonizers preserved as fossils were usually members of the Chironomidae, Daphnidae/Chydoridae, Acarina, Porifera (Ephydatia mülleri and Spongilla lacustris), Bryozoa (Cristatella mucedo and Plumatella spp.) and Charophyta (Chara sp.). Of the chironomids, the genus Chironomus was present in the oldest lacustrine layers of all four lakes, but other genera recorded at the marine/lacustrine boundary were Dicrotendipes, Procladius (?), Einfeldia, Microtendipes, and Glyptotendipes. Remains of the caddis fly family Limnephilidae were also present in the earliest lacustrine sediments in Kvennavatnet and Kvernavatnet. The oldest invertebrate fauna is typical for mesotrophic lakes. However, chironomids and mites have been present in this area from at least about 10?500 years B.P. A diverse chironomid community was established between 300 and 800 years after isolation from the sea at Kvernavatnet on the island of Hitra, while only between 80 and 120 years passed before a comparably diverse community developed at Kvennavatnet on the mainland coast. A similar development of the invertebrate fauna occurred in Kvennavatnet, Kvernavatnet and Storkuvatnet. However, Litjvatnet deviates greatly from the ‘normal’ pattern because a tsunami disturbed the bottom sediments and fauna. The tsunami, a gigantic sea wave, was caused by a submarine slide from the Norwegian continental slope. It reached Litjvatnet, today located 24 m a.s.l., but was not traced in Storkuvatnet at 30 m a.s.l. This event happened about 7200 years B.P. 相似文献
85.
P-SH conversion is commonly observed in teleseismic P waves, and is often attributed to dipping interfaces beneath the receiver. Our modelling suggests an alternative explanation in terms of flat-layered anisotropy. We use reflectivity techniques to compute three-component synthetic seismograms in a 1-D anisotropic layered medium. For each layer of the medium, we prescribe values of seismic velocities and hexagonally symmetric anisotropy about a common symmetry axis of arbitrary orientation. A compressional wave in an anisotropic velocity structure suffers conversion to both SV -and SH -polarized shear waves, unless the axis of symmetry is everywhere vertical or the wave travels parallel to all symmetry axes. The P-SV conversion forms the basis of the widely used 'receiver function' technique. The P-SH conversion occurs at interfaces where one or both layers are anisotropic. A tilted axis of symmetry and a dipping interface in isotropic media produce similar amplitudes of both direct ( P ) and converted ( Ps ) phases, leaving the backazimuth variation of the P-Ps delay as the main discriminant. Seismic anisotropy with a tilted symmetry axis leads to complex synthetic seismograms in velocity models composed of just a few flat homogeneous layers. It is possible therefore to model observations of P coda with prominent transverse components with relatively simple 1-D velocity structures. Successful retrieval of salient model characteristics appears possible using multiple realizations of a genetic-algorithm (GA) inversion of P coda from several backazimuths. Using GA inversion, we determine that six P coda recorded at station ARU in central Russia are consistent with models that possess strong (> 10 per cent) anisotropy in the top 5 km and between 30 and 43 km depth. The symmetry axes are tilted, and appear aligned with the seismic anisotropy orientation in the mantle under ARU suggested by SKS splitting. 相似文献
86.
87.
从生物化石的性质和分布分析秦岭上升的阶段性与幅度 总被引:5,自引:0,他引:5
本文从生物化石的性质、分布的与我国南、北方同期生物群的对比,分析了秦岭从中生代晚期以来各个时期上升的幅度。秦岭在三叠纪末期成陆后即开始隆起,但隆起幅度有限。白垩纪与古新世该区地形高低悬殊不大。早第三纪中、后期秦岭有一次强烈的隆起活动,地形起伏,且对动物的迁移起了明显的阻碍作用。相继产生的夷平作用使晚第三纪秦岭区内的动物仍与区外的保持着较好的往来交流。早更新世末期秦岭再次表现出了垂直运动的特点。由于 相似文献
88.
属于帕米尔弧山前带的乌帕尔剖面和属于南天山山前带的巴对布拉克剖面,现今的纬度差为0.56°,但是下第三系古地磁测定结果表明其古纬度差很大.乌帕尔剖面齐姆根组上部的古纬度为8°N,而巴什布拉克剖面巴什布拉克组第5段的古纬度为36.1°N。若考虑到当时板块的相对运移速度,估计始新世早期巴什布拉克地区的古纬度大致为31°N,与当时乌帕尔所处位置的纬差达23°。又根据Klootwijk测得的帕米尔西北缘利什坦层的古纬度值,在始新世末期.包括乌帕尔在内的帕米尔前缘与以巴什布拉区为代表的南天山山前带之间还有至少10°的纬度差。古地磁资料表明,始新世早期,塔里木海宽达2000km,此时印度板块西北端已与欧亚板块局部碰撞,至始新世末,印度板块向北推进20°,帕米尔弧前缘与南天山山前的距离缩短到约1000km,原塔里木海的两侧上升为山前平原。 相似文献
89.
The Uplift of the Longmenshan Thrust Belt and Subsidence of the West Sichuan Foreland Basin 总被引:8,自引:0,他引:8
Liu Shugen Luo Zhili Dai Sulan Changlu Institute of Technology Chengdu Sichuan ChinaDennis Arne Dalhousie U niversity Canadaand C.J.L. Wilson Melbourne U niversity Australia Jiang M inxi 《《地质学报》英文版》1996,70(1):16-26
Based on fission track dating of apatite, and measurement of vitrinite reflectance of rock samples from the Longmenshan (Longmen Mountain)area and the West Sichuan foreland basin and computer modelling it is concluded that (l)the Songpan-Garze fold belt has uplifted at least by 3-4 km with an uplift rate of no less than 0.3-0.4 mm/a since 10 Ma B.P.; (2) the Longmenshan thrust nappe belt has uplifted at least by 5-6 km with an uplift rate of more than 0.5- 0.6 mm /a since 10 Ma B.P.; (3) the Longmenshan detachment belt has uplifted by 1 - 2 km at a rate of 0.016-0.032 mm/a since 60 Ma B.P.; (4) the West Sichuan foreland basin has uplifted by 1.7-3 km at a rate of 0.028-0.05 mm/a since 60 Ma B.P.; (5) the uplift rate of the area on the west side of the Beichuan-Yingxiu-Xiaoguanzi fault for the last 10 Ma is 40 times as much as that on its east side; (6) the uplifting of the the Songpan - Garze fold belt and the subsidence of the West Sichuan foreland basin 60 Ma ago exhibit a mirro-image correlation, i.e 相似文献
90.
Magnetostratigraphy and palaeoclimate of Red Clay sequences from Chinese Loess Plateau 总被引:5,自引:0,他引:5
Two Red Clay profiles near Xi’an and Xifeng were investigated in an attempt to determine magnetostratigraphic and palaeoclimatic
records. The results show that aeolian dust accumulation and the related East Asia palaeomonsoon system had begun by 6.5 Ma,
and it is deduced that the Tibetan Plateau had reached a significant elevation at that time. The late Tertiary palaeoclimatic
history of the Red Clay as reflected by magnetic susceptibility is reconstructed during the period of 6.5–2.5 Ma. Stepwise
increase in susceptibility of aeolian dust accumulation appears to have a close correlation to the uplift processes of the
Tibetan Plateau. The remarkable increase of aeolian dust accumulation at 3.2 Ma appears to be due to the influence of global
ice volume on the East Asia monsoon. Palaeomonsoon variation during the late Tertiary as recorded in the Red Clay sequences
from the Chinese Loess Plateau can be regarded as the product of a number of interacting factors, such as uplift of the Tibetan
Plateau, solar radiation, global ice volume, etc.
Project supported by the National Natural Science Foundation of China and the Foundation of Xi’an Laboratory of Loess and
Quaternary Geology, Chinese Academy of Sciences. 相似文献