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61.
The Zoulang Nanshan Caledonian Subduct ion Complex in the Northern Qilian Mountains and Its Dynamics 总被引:1,自引:0,他引:1
Xu Zhiqin Xu Huifen Zhang Jianxin Li Haibing Zhu Zhizhi Qu Jingchuan Institute of Geology Chinese Academy of Geological Sciences BeijingChen Daizhang Chen Jinlu China University of Geosciences Beijingand Yang KaichunNo. Q ilian Geological Party Bureau of Geology Mineral Resources of Q inghai Province Q ilian County Q inghai 《《地质学报》英文版》1994,68(3)
The front of the Zoulang Nanshan Caledonian volcanic island arc zone in the northern Qilian Mountains is a forearc accretionary terrane, composed of multiple accretionary volcanic island arcs, flysch accretionary wedges,high-pressure metamorphosed detachment zones and remnants of ophiolites. It resulted from the northeastward subduction of the Early Palaeozoic Qilan oceanic crust beneath the Alxa block. High-pressure metamorphism, which occurred during the subduction, progressed through three stages: the initial stage of medium T-high P,the main stage of temperature decrease and pressure increase, and the lag stage of pressure decrease and temperature increase. Finally the paper presents a retrotrench subduction dynamic model indicative of northward subduction of the central Qilian block and southward accretion of the Alxa block during the period of 450-500 Ma. 相似文献
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ItisataskofNationaScienceandTechnologyProjectNo.75-62-03-05and06forthe7thFive-YearPlanperiod.InvestigationsinGansuandShanxiwereundertakenbyInstituteofGeography,CAS,whiiethatinShaanxiwascarriedoutbyNortllwestInstitllteofWaterandSoilConservation,CAS.**OthermembersintheGroupofEndemicDiseaseandEnvironment,InstituteofGeograpl1y,CASare:YangLinsheng,ZhaoYuanwei,ZhaoNaiqin,LiDezhu,WangLizhenandTanJianan.I.IntrodIlcti01llthasbeenreported[21thattwoendemics,KeshanandKaschin-Beck,arecl… 相似文献
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Geochemistry of dissolved and particulate elements in the major rivers of China (The Huanghe,Changjiang, and Zhunjiang rivers) 总被引:1,自引:0,他引:1
The relationship between the geochemistry of dissolved and particulate materials and geographic conditions was investigated. Samples of water and suspended particulate matter were collected from five locations in three of the major rivers of China (the Huanghe, Changjiang, and Zhunjiang rivers). Because these rivers generally flow parallel to latitudes and flow through diverse geologic and climate zones, they provide excellent opportunities for comparisons of solute transport. The geochemistry of these rivers is influenced strongly by climate. The low discharge of the Huanghe River influences the character of the major ionic materials (Cl?+SO4 2? and Na++K+) as well as the high degree of mineralization within the system. Dissolved concentrations of both major ions and trace elements are lower in the southern reaches of the rivers. The highly mobile ions, such as, Na+ and Ca2+, are depleted from the suspended particulate material in the southern regions, while the relatively immobile ions of Al, Fe, Ti, Mn, and trace metals are concentrated within the suspended mateiral. The relative mobility of some elements as measured by the Dissolved Transport Index (DTI) changes with climate. The geology of the area drained by the rivers has a major influence on the geochemistry in areas of similar climate. Lowest leaching rates in the southern climates occur in areas dominated by granite, which is resistant to weathering. The composition of both cations and anions among the three tributaries of the Zhujiang River are dependent on the rocks that dominate each eregion. Some particulate forms of the rare earth elements are present in the highest concentrations in regions dominated by granite. The DTI calculated for the major rivers in China are much smaller than those computed for other major rivers of the world. The low concentration of heavy metals in the particulate material suggests that pollution in the rivers of China is less serious than in rivers of other industrialized countries. 相似文献
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根据我国西北干旱内陆流域水资源形成、转化规律和水资源利用实际情况,利用乌鲁木齐河流域较为丰富的地表水和地下水资料,并结合流域水文地质条件,研制了乌鲁木齐河流域水资源转化模拟和计算模型。模拟和计算结果表明,乌鲁木齐河流域现状实际引水量和净用水量,已经大大超过现有水利条件下的最大可能引水量和净用水量,其中净用水量甚至超过了流域的水资源总量,水资源开发利用明显过度。在现有情况下,再采用提高渠系利用率方法增加可用水量,效果甚微,只能通过节水途径,提高水的利用率,去建立新的水资源供需平衡。 相似文献
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从模糊数学和灰色系统理论两个不同角度来分析地震事件,把模糊数学的表达方式用于灰色灾变预测GM(1,1)中,建立了地震预测的模糊灰色模型。用此模型讨论了南北天山四个区(带)的震级序列,在等维情况下,对比了模糊灰色方法与单纯灰色方法的优劣,讨论了影响预测结果的因素,最后给出了不同目标震级下各区(带)的预测值。 相似文献