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991.
Constraining the stepwise migration of the eastern Tibetan Plateau margin by apatite fission track thermochronology 总被引:8,自引:1,他引:8
LAI QingZhou ? DING Lin WANG HongWei YUE YaHui & CAI FuLong Institute of Geology Geophysics Chinese Academy of Sciences Beijing China Institute of Tibetan Plateau Research Chinese Academy of Sciences Beijing China 《中国科学D辑(英文版)》2007,50(2):172-183
Granites sampled from Garzê-Litang thrust, Longmen Shan thrust, Garzê and Litang strike-slip faults in the eastern Tibetan Plateau have been analyzed with apatite fission track thermochronological method in this study. The measured fission track apparent ages, combined with the simulated annealing mod- eling of the thermal history, have been used to reconstruct the thermal evolutionary histories of the samples and interpret the active history of the thrusts and faults in these areas. Thermal history mod- eling shows that earlier tectonic cooling occurred in the Garzê-Litang thrust in Miocene (~20―16 Ma) whereas the later cooling occurred mainly in the Longmen Shan thrust since ~5 Ma. Our study sug- gests that the margin of eastern Tibetan Plateau was extended by stages: through strike-slip faults deformations and related thrusts, the upper crust formed the Garzê-Litang margin in the Miocene epoch and then moved to the Longmen Shan margin since ~5 Ma. During this process, the deformations of different phases in the eastern Tibetan Plateau were absorbed by the thrusts within them and conse- quently the tectonic events of long-distance slip and extrusion up to hundreds of kilometers have not been found. 相似文献
992.
An 8.1Ma calcite record of Asian summer monsoon evolution on the Chinese central Loess Plateau 总被引:5,自引:0,他引:5
Chen XiuLing Fang XiaoMin An ZhiSheng Han WenXia Wang Xin Bai Yan Hong Ye 《中国科学D辑(英文版)》2007,50(3):392-403
Carbonates in loess-red clay sequences consist mainly of calcite and dolomite. The EDTA analysis of carbonates in different size fractions and magnetic susceptibility reveal that calcite is a sensitive index of summer monsoon. The chemical analysis of carbonates and calcite from an 8.1 Ma loess-red clay sequence at Chaona on the Chinese central Loess Plateau shows that the evolution of the Asian summer monsoon experienced four stages, namely 8.1―5.5 Ma, 5.5―2.8 Ma, 2.8―1.5 Ma and 1.5―0 Ma, with increasing intensification and fluctuation, suggesting a possible combining impacts of uplift of the Tibetan Plateau and global changes on the Asian summer monsoon. 相似文献
993.
青藏高原近40年来的降水变化特征 总被引:21,自引:7,他引:21
利用我国青藏高原地区的1961-2000年56个气象站的逐月降水资料,通过计算降水量的距平百分率,分析了青藏高原自1961至2000年以来降水量变化的趋势和1961-2000年以来各季降水量变化趋势,发现:青藏高原近40年来降水量呈增加趋势,降水量的线性增长率约为1.12mm/a。再将高原划分为四个季节,分析了各季40年来的降水量的变化情况得出:春季降水量年际变化较大,秋季降水量变化不明显。夏季降水量值较大而降水变化幅度较小,冬季降水量变化则与夏季相反。通过将青藏高原分为南北两个地区,分析了两个区的年降水量和四个季节的降水量的变化得出:高原南区1961-2000年降水量呈增加的趋势,降水量的线增长率为1.97 mm/a,春季和冬季降水量年际变化较大,夏季降水量变化不明显,秋季降水量略有增加;北区年降水量和夏季的降水量变化较小,秋季降水量的年际变化较大,冬季降水量变化最大。对青藏高原的南北两区用Mann-Kendall方法进行突变分析,显示高原南区分别在1978年和1994年发生突变,北区没有发现突变。 相似文献
994.
995.
996.
青藏高原北部成矿带划分 总被引:1,自引:0,他引:1
青藏高原北部地质构造复杂,成矿条件优越,金属矿产资源成群成带分布特征明显,研究程度相对较低。通过对1999年以来,在青藏高原北部空白区相继完成的1∶25万区域地质调查、1∶5万区域地质调查和一批1∶50万、1∶20万区域化探成果资料的综合研究,根据青藏高原北部金属矿产资源的时、空分布特征,结合区域物、化探资料和区域成矿地质背景,将青藏高原北部地区初步划分为3个级成矿带(域),5个级成矿带,9个级成矿带,对以后青藏高原北部地区地质矿产勘查评价工作具有十分重要的意义。 相似文献
997.
青藏高原西北缘高原面与陡坡地貌形成过程的裂变径迹热年代学约束 总被引:9,自引:1,他引:9
对青藏高原西北缘高原内部和陡坡地貌带2个花岗岩体10件磷灰石裂变径迹年龄测定表明,高原内部大红柳滩—郭扎错逆冲断裂上盘磷灰石裂变径迹年龄为24.8±4.9~14.0±1.3Ma,此外,一个玄武岩烘烤的热事件年龄为7.9±0.8Ma;而陡坡地貌带的西昆仑中间逆冲断裂上盘的磷灰石裂变径迹年龄为2.9±0.5~0.9±0.3Ma。进一步的热历史模拟结果显示,高原内部自渐新世以来经历了2期隆升-剥露,分别是渐新世—早中新世(30~16Ma)和上新世以来(≤5Ma),而陡坡带只记录了晚中新世以来(≤8Ma)的隆升-剥露,暗示他们经历了不同的热演化历史。结合前人在该区的磷灰石裂变径迹年龄数据和野外地质现象,认为现今高原边缘陡坡地貌带可能是自晚中新世以来(≤8Ma)高原边界断裂伴有向塔里木盆地后展式叠瓦逆冲产生的构造抬升的结果;现今高原面有可能是由高原边界断裂系于大约5~2Ma以来强烈活动逐渐形成的,其隆升-剥蚀幅度>2000~3000m。这对自晚中新世以来青藏高原西北缘高原面与陡坡地貌形成过程提供了磷灰石裂变径迹热年代的重要约束。 相似文献
998.
青藏高原北部新生代湖相碳酸盐岩碳氧同位素特征及古环境意义 总被引:3,自引:2,他引:3
对青藏高原北部地区新生代陆相地层中湖相碳酸盐岩进行了系统采样分析,以碳氧同位素作为古环境和古气候变化的替代指标,试图从古湖泊演化的角度,阐明高原新生代早期环境演变历史和过程。研究结果表明,该区所有分析样品中生物碎屑灰岩类样品的δ18O和δ13C显示最低值,反映它们沉积在一个水体滞留时间短的开放性淡水湖泊系统中。泥晶灰岩类样品的δ18O和δ13C之间具有正相关关系,表明它们发育在蒸发作用明显的封闭性咸水湖泊体系中,而叠层石灰岩类明显富集13C可能与微生物活动有关。从始新世到渐新世至中新世,湖相碳酸盐岩δ18O值具有逐渐增大的趋势,δ13C则由古近纪的负值变为新近纪的正值,反映该区古湖泊系统经历了一个由开放到封闭的过程,预示古近纪到新近纪之交高原古气候格局发生了重大变革。 相似文献
999.
LAI Shaocong QIN Jiangfeng LI Yongfeng LIU Xin 《中国地球化学学报》2007,26(3):305-311
Neogene volcanic rocks in the Belog Co area, Qiangtang, northern Tibet, are represented by a typical intermediate-basic and intermediate alkaline rock association, with latite-trachyte as the main rock type. The results of chemical analysis are: SiO2=52%–62%, Al2O3>15%, Na2O/K2O>1 and MgO<3.30%. In addition, the volcanic rocks are LREE-enriched with LREE/HREE=10–13, (La/Yb)N=15–19, and show a weak negative Eu anomaly with δEu=0.71–0.89. The close relationship between Mg# and SiO2 and the co-variation of the magmatophile elements and ultra-magmatophile elements such as La/Sm-La and Cr-Tb indicate that this association of volcanic rocks is the product of comagmatic fractional crystallization. The rock association type and lower Sm/Yb values (Sm/Yb=3.23–3.97) imply that this association of volcanic rocks should have originated from partial melting of spinel lherzolite in the lithospheric mantle. On the other hand, the weak negative Eu anomaly and relative depletion in Nb, Ta and Ti reflect the features of terrigenous magma. So the Neogene Belog Co alkaline volcanic rocks should be the result of partial melting of the special crust-mantle transition zone on the Qinghai-Tibet Plateau. 相似文献
1000.
The Chinese Loess Plateau is suffering from severe soil erosion. The eco-environmental changes of the plateau are believed
to have an important influence on global eco-environmental sustainability; hence, this problem has attracted considerable
attention from scientists around the world. This study has two purposes; application of remote sensing (RS) and geographic
information system (GIS) techniques in the dynamic analysis of eco-environmental changes in the semiarid zone; and using the
Longdong region of the Chinese Loess Plateau as an example, to make dynamic analysis of the eco-environmental changes of the
region during the 1986–2004 period and identify controlling factors. Landsat Thematic Mapper (TM) data at a spatial resolution
of 30 m were used for analysis. Two training areas were selected in Jingning and Qingcheng counties for analysis using 10-m
resolution SPOT and Landsat TM data. The satellite RS images were obtained from the Institute of Remote Sensing Application
(IRSA), Chinese Academy of Sciences (CAS). Each images was rectified by Albers Equal Area Conic projection based on 1:50,000
scale topographic maps after spectrum preparation of the images. To make the precision within 1 or 2 pixels, the accurate
coordinative control points of the two systems were identified. Then the interpretation key was established based on the land
use/cover survey in the study area. The images were classified into six primary environmental types (farmland, forest, grassland,
water, construction area, and desert) and 25 sub-types using a visual image interactive interpretation method to obtain vector
and attribute data. The resultant accuracy of the land use/cover classification reached 95%. Finally, the transformation areas
and ratios of various eco-environmental types in the region were calculated to obtain the transition matrixes of eco-environmental
types in the two training areas, Jingning and Qingcheng. This study demonstrates that satellite RS and GIS techniques are
effective tools to monitor and analyze the eco-environmental changes in the semiarid region. Visual image interactive interpretation
based on GIS technique provides comprehensive information on the direction, rate, and location of eco-environmental changes.
The transition matrix model can be used to precisely analyze the variation and rates of the eco-environmental types and their
spatial distribution. Great land use changes have taken place Longdong during the 1986–2004 period. These eco-environmental
changes were driven by natural and human factors. Natural factors influencing the Longdong region of the Chinese Loess Plateau
mainly include temperature, water condition, terrain, soil, and erosion; while human activities include over-cultivation,
overgrazing, and fuelwood cutting. As viewed from the extent and severity of the influences, human activities play a very
important role in altering the eco-environment of the semiarid region. The study results indicate a need for future research
and observation in the semiarid region. 相似文献