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71.
北天山晚古生代蛇绿岩带的巴音沟蛇绿岩是该带的重要组成部分和典型代表。传统意义的巴音沟蛇绿岩带在区内分南北两支,南支为贝勒克蛇绿岩带,北支为巴音沟蛇绿岩带,分别代表早泥盆世末和早石炭世末的两条不同古洋壳残片。  相似文献   
72.
Fluids released from the subducting oceanic lithosphere are generally accepted to cause mantle wedge peridotite melting that produces arc magmas. These fluids have long been considered to be dominated by highly oxidized H2O and CO2 as inferred from erupted arc lavas. This inference is also consistent with the geochemistry of peridotite xenoliths in some arc basalts. However, the exact nature of these fluids in the mantle wedge melting region is unknown. Here, we report observations of abundant CH4 + C + H2 fluid inclusions in olivine of a fresh orogenic harzburgite in the Early Paleozoic Qilian suture zone in Northwest China. The petrotectonic association suggests that this harzburgite body represents a remnant of a Paleozoic mantle wedge exhumed subsequently in response to the tectonic collision. The mineralogy, mineral compositions and bulk-rock trace element systematics of the harzburgite corroborate further that the harzburgite represents a high-degree melting residue in a mantle wedge environment. Furthermore, existing and new C, He, Ne and Ar isotopes of these fluid inclusions are consistent with their being of shallow (i.e., crustal vs. deep mantle) origin, likely released from serpentinized peridotites and sediments of the subducting oceanic lithosphere. These observations, if common to subduction systems, provide additional perspectives on mantle wedge melting and subduction-zone magmatism. That is, mantle wedge melting may in some cases be triggered by redox reactions; the highly reduced (∼ΔFMQ-5, i.e., 5 log units below the fayalite-magnetite-quartz oxygen fugacity buffer) CH4-rich fluids released from the subducting slab interact with the relatively oxidized (∼ΔFMQ-1) mantle wedge peridotite, producing H2O and CO2 that then lowers the solidus and incites partial melting for arc magmatism. The significance of slab-component contribution to the geochemistry of arc magmatism would depend on elemental selection and solubility in highly reduced fluids, for which experimental data are needed. We do not advocate the above to be the primary mechanism of arc magmatism, but we do suggest that the observed highly reduced fluids are present in mantle wedge peridotites and their potential roles in arc magmatism need attention.  相似文献   
73.
通过对临沧锗矿床中基底花岗岩、矿化煤以及硅质岩的稀土元素地球化学研究认为盆地基底花岗提供了形成锗矿化的锗和形成硅质岩的硅;本区陆相热水成因硅质岩的Ce异常不明显,相对富集LREE;矿化煤相对富集HREE,这可能主要与矿化煤在含锗热液的相互作用过程中,煤对重烯土的优先富集有关。  相似文献   
74.
邵爱武  杨甦 《安徽地质》2010,20(3):222-225,240
在安徽定远东兴盐矿勘探中,通过采用地震反射波法与钻孔的对比分析,充分说明地震反射波法在第三系地层中寻找石膏矿、岩盐等沉积型矿藏有着良好的应用前景。  相似文献   
75.
甘肃天水地区45a来强降水与洪涝灾害特征分析   总被引:5,自引:4,他引:5  
洪涝灾害是一种常见的自然灾害,对农业生产和人民生活有极大的影响.通过对甘肃天水地区强降水和洪涝灾害事件资料的整理,对其强降水事件、洪涝灾害变化特征以及二者间地联系进行了分析研究.现有资料统计显示,天水地区没出现过整个区域性洪涝灾害,以局地洪涝灾害为主,强降水事件和洪涝灾害具有显著的年代际和季节性变化特征.由于当地的土地蓄水性能很差,一般性的强降水就可能会产生洪涝灾害.随着气候变暖,这一地区的强降水事件和洪涝灾害呈增加趋势,建议当前应加强对局地强降水事件的防范工作.  相似文献   
76.
周海龙  刘宝昌  王骕  李闯 《世界地质》2017,36(3):1008-1014
与传统的钢制钻杆相比,铝合金钻杆具有密度小、比强度高、无磁等优点,因此在钻井作业中具有较大优势。钻杆在井下工作环境恶劣,如与井壁发生碰撞,将导致钻杆变形,降低其强度。笔者通过Ansys LS-DYNA以及Workbench进行仿真,研究Φ147 mm铝合金钻杆与孔壁碰撞后的变形状态,以及产生裂纹后对其强度进行分析。结果表明,Φ147 mm铝合金钻杆在使用过程中,钻杆主体段相对薄弱,在2 m/s的速度下与钻孔壁发生碰撞会产生塑性变形,从而降低铝合金钻杆的性能。钻杆主体段的裂纹长度1 mm时,在载荷作用下,将发生裂纹扩展,导致钻杆断裂。钻杆主体段有裂纹时,在疲劳载荷作用下,有裂纹的钻杆所能承受的载荷是无裂纹钻杆所能承受载荷的五分之一。  相似文献   
77.
瑞雷波勘探在地下洞穴探测中的应用   总被引:4,自引:0,他引:4  
利用瑞雷波勘探方法进行地下洞穴探测,在实际处理过程中,对场地所测得的面波频散曲线进行分类、归纳,并利用动力触探曲线对各种特征曲线所反映的地下洞穴情况进行标定,从而确定整个测区洞穴的空间分布规律。  相似文献   
78.
苏德辰  李庆谋 《现代地质》1995,9(3):279-283
Fischer图解(又称为容纳空间图解)为人们研究沉积旋回在空间上的叠置规律、相对海平面变化、层序级次的划分以及地层层序对比等提供了一种客观实用的方法。本文较详细地讨论了该图解的绘制方法及应注意的问题。运用该图解,将北京西山下苇甸剖面张夏组划分为1个大的三级旋回层序和4个四级旋回层序,根据图解反映的相对海平面变化讨论了旋回层序与构造运动间的关系,提出华北板块晚寒武世之前的"翘翘板运动"应始于中寒武世张夏期之早期到中期。  相似文献   
79.
The Ejina Oasis (EO), located in arid northwest China, is a typical arid area in the world. The ecosystem in the oasis has become worse since the 1990s. However, it began to improve after the Chinese government took the mandatory measure to redistribute the water in Heihe in 2000. To understand this change, the remote sensing images in 1990, 2000 and 2006 were selected, and exertion related Land Use/Cover Change (LUCC) model was employed. Results showed that: (1) non-vegetation cover was the main body of the vegetation cover in oasis, showing a trend of increase at the beginning and diminution later, while low, medium and high vegetation cover was the other way around; (2) the area of low, medium and high vegetation cover in 2006 was less than that in 1990; the status and trend index P t of oasis vegetation cover was 0.62 in 1990–2000, which means that the oasis ecosystem of Ejina was getting worse and was under an unbalanced status; P t was 0.27 in 2000–2006 indicating that the oasis ecosystem was restored obviously and the whole system tended to be balanced; (3) all of these changes should be attributed to the water resources redistribution in Heihe River, which played a leading role, as well as the measures and relevant policies taken by the local government, which promoted the rapid recovery of the medium and high vegetation.  相似文献   
80.
A Paleozoic ultrahigh-pressure metamorphic (UHPM) belt extends along the northern margin of the Qaidam Basin, North Tibetan Plateau. Eclogites in the Yuka eclogite terrane, northwest part of this UHPM belt, occur as blocks or layers of varying size intercalated with granitic and pelitic gneisses. These eclogites have protoliths geochemically similar to enriched-type mid-ocean ridge basalts (E-MORB) and oceanic island basalts (OIB). On the basis of Ti/Y ratios, they can be divided into low-Ti and high-Ti groups. The low-Ti group (LTG) eclogites exhibit relatively low TiO2 (most <2.5 wt%) and Ti/Y (<500) but comparatively high Mg# (48–55), whereas the high-Ti group (HTG) eclogites have high TiO2 (most >2.5 wt%) and Ti/Y (>500) but lower Mg# (46–52). Zircons from two eclogite samples gave a magmatic crystallization (protolith) age of ∼850 Ma and a UHPM age of ∼433 Ma. The occurrence, geochemical features and age data of the Yuka eclogites suggest that their protoliths are segments of continental flood basalts (CFBs) with a mantle plume origin, similar to most typical CFBs. Our observation, together with the tectonic history and regional geologic context, lend support for the large scale onset of mantle plume within the Rodinia supercontinent at ∼850 Ma. The Qaidam block is probably one of the fragments of the Rodinia supercontinent with a volcanic-rifted passive margin. The latter may have been dragged to mantle depths by its subducting leading edge of the oceanic lithosphere in the Early Paleozoic.  相似文献   
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