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101.
辽东早元古宙超镁铁质-镁铁质火山岩的发现,为辽东早元古宙地层层序划分与对比,以及大地构造环境恢复提供了新的依据。地层-岩石组合序列研究表明,辽东早元古宙由大陆裂谷向陆缘裂谷演化过程中,经历了初萌—发育—隆起的发育阶段,与这一演化相对应,岩石圈壳层发生了拱陷-拉张-减薄-叠置增厚等岩石圈结构等方面的变化。以地幔岩浆活动为特点的开放体系是制约辽东早元古宙非金属、有色金属和黑色金属矿床形成的初始原因。  相似文献   
102.
The Carboniferous Early Permian rill-related volcanic successions.covering large areas in the Chinese Tianshan and its adjacent areas.make up a newly recognized important Phanerozoic large igneous province in the world.which can be further divided into two sub-provinces:Tianshan and Tarim. The regional unconformity of Lower Carboniferous upon basement or pre-Carboniferous rocks.the ages (360—351 Ma) of the youngest ophiolite and the peak of subduction metamorphism of high pressure-low temperature metamorphic belt and the occurrence of Ni-Cu-bearing mafic-ultramatic intrusion with age of—352 Ma and A-type granite with age of~358 Ma reveal that the final closure of the Paleo Asian Ocean might lake place in the Early Mississippian.Our summation shows that at least four criteria.being normally used to identify ancient asthenosphere upwelling(or mantle plumes),are met for this large igneous province:(1) surface uplift prior to magmatism:(2) being associated with continental ifting and breakup events:(3) chemical characteristics of asthenosphere(or plume) derived basalts;(4) close links to large-scale minerali/alion and the uncontaminaled basalts,being analogous to those of many "ore-bearing" large igneous provinces.display Sr-Nd isotopic variations between plume and EMI geochemical signatures.These suggest that a Carboniferous asthenosphere upwelling and an Early Permian plume played the central role in the generation of the Tianshan—Tarim(central Asia) large igneous province.  相似文献   
103.
腾冲火山区的现代幔源氦释放:构造和岩浆活动意义   总被引:6,自引:3,他引:3  
赵慈平  冉华  王云 《岩石学报》2012,28(4):1189-1204
深地震测深(DSS)和大地电磁测深(MT)都表明腾冲火山区现今仍存在壳内岩浆囊,但对其数量和空间分布还存在分歧并缺乏全貌性认识。MT探测认为腾冲火山区是一个软流圈上涌和岩石圈减薄区,但对这一减薄区的空间范围还缺乏充分的约束。通过对腾冲火山区及外围大范围温泉逸出气体的分析测试,我们共获得了75个温泉逸出气体的氦同位素3He/4He比值数据(部分为前人资料)。利用氦同位素示踪原理,我们研究了腾冲火山区幔源氦释放强度空间分布和时间变化特征,结果发现:腾冲火山区的幔源挥发份释放呈1带3区分布。以3He/4He≥1 Ra,幔源氦比例≥15%为界,腾冲火山区的幔源挥发份释放异常区呈整片分布,为一南北走向的条带,南北长100km,东西宽50km。在整片异常区的内部,腾冲火山区的幔源挥发份释放又有强度不同的3个区域:① 中部腾冲县城-热海一带,3He/4He比值达到5.5 Ra以上,幔源氦比例达到70%以上,释放强度最强。② 北部曲石一带,3He/4He比值达4.5 Ra以上,幔源氦比例达到50%以上,释放强度次之。③ 南部五合-蒲川-新华一带,3He/4He比值达2Ra以上,幔源氦比例达到25%以上,释放强度最弱;腾冲火山区幔源挥发份释放强度在不断升高,其中第3个释放区的3He/4He比值(Ra)升高速率比前两者明显要大。我们认为:腾冲火山区现今幔源挥发份释放强度的空间分布图象就是该地区软流圈上涌和岩石圈减薄区空间尺度和上涌强度的最直接反映,上涌区(减薄区)的大小大致为南北长100km,东西宽50km;腾冲火山区现今存在3个壳内岩浆囊。第1个岩浆囊位于腾冲县城-热海一带,第2个岩浆囊位于马站-曲石一带,第3个岩浆囊位于五合-龙江-团田-蒲川-新华一带;腾冲火山区3个岩浆囊都在不断受到幔源岩浆的持续补充;第1个岩浆囊集幔源挥发份释放、相对地热梯度、地壳形变和地震活动等异常于一身,活动性最强,是未来腾冲火山最可能喷发的地点,需重点监视。第2个岩浆囊的幔源挥发份释放强度也引人注目,需加强监测。第3个岩浆囊规模大,埋深较浅,幔源挥发份释放增加较快,需引起注意。  相似文献   
104.
This paper reports a new 1° × 1° global thermal model for the continental lithosphere (TC1). Geotherms for continental terranes of different ages (> 3.6 Ga to present) constrained by reliable data on borehole heat flow measurements (Artemieva, I.M., Mooney, W.D. 2001. Thermal structure and evolution of Precambrian lithosphere: a global study. J. Geophys. Res 106, 16387–16414.), are statistically analyzed as a function of age and are used to estimate lithospheric temperatures in continental regions with no or low-quality heat flow data (ca. 60% of the continents). These data are supplemented by cratonic geotherms based on electromagnetic and xenolith data; the latter indicate the existence of Archean cratons with two characteristic thicknesses, ca. 200 and > 250 km. A map of tectono-thermal ages of lithospheric terranes complied for the continents on a 1° × 1° grid and combined with the statistical age relationship of continental geotherms (z = 0.04  t + 93.6, where z is lithospheric thermal thickness in km and t is age in Ma) formed the basis for a new global thermal model of the continental lithosphere (TC1). The TC1 model is presented by a set of maps, which show significant thermal heterogeneity within continental upper mantle, with the strongest lateral temperature variations (as large as 800 °C) in the shallow mantle. A map of the depth to a 550 °C isotherm (Curie isotherm for magnetite) in continental upper mantle is presented as a proxy to the thickness of the magnetic crust; the same map provides a rough estimate of elastic thickness of old (> 200 Ma) continental lithosphere, in which flexural rigidity is dominated by olivine rheology of the mantle.Statistical analysis of continental geotherms reveals that thick (> 250 km) lithosphere is restricted solely to young Archean terranes (3.0–2.6 Ga), while in old Archean cratons (3.6–3.0 Ga) lithospheric roots do not extend deeper than 200–220 km. It is proposed that the former were formed by tectonic stacking and underplating during paleocollision of continental nuclei; it is likely that such exceptionally thick lithospheric roots have a limited lateral extent and are restricted to paleoterrane boundaries. This conclusion is supported by an analysis of the growth rate of the lithosphere since the Archean, which does not reveal a peak in lithospheric volume at 2.7–2.6 Ga as expected from growth curves for juvenile crust.A pronounced peak in the rate of lithospheric growth (10–18 km3/year) at 2.1–1.7 Ga (as compared to 5–8 km3/year in the Archean) well correlates with a peak in the growth of juvenile crust and with a consequent global extraction of massif-type anorthosites. It is proposed that large-scale variations in lithospheric thickness at cratonic margins and at paleoterrane boundaries controlled anorogenic magmatism. In particular, mid-Proterozoic anorogenic magmatism at the cratonic margins was caused by edge-driven convection triggered by a fast growth of the lithospheric mantle at 2.1–1.7 Ga. Belts of anorogenic magmatism within cratonic interiors can be caused by a deflection of mantle heat by a locally thickened lithosphere at paleosutures and, thus, can be surface manifestations of exceptionally thick lithospheric roots. The present volume of continental lithosphere as estimated from the new global map of lithospheric thermal thickness is 27.8 (± 7.0) × 109 km3 (excluding submerged terranes with continental crust); preserved continental crust comprises ca. 7.7 × 109 km3. About 50% of the present continental lithosphere existed by 1.8 Ga.  相似文献   
105.
南冲绳海槽岩石圈构造动力作用机制探讨   总被引:8,自引:1,他引:8  
由最新获得的重磁、地震和多波束地形数据 ,结合多尺度的地幔流动力分析 ,展示了南冲绳海槽岩石圈构造动力的多样性特征和其内在的联系。从上新世开始的三幕张性断陷活动是在以前的压性断裂构造的基础上发展起来的 ,向岛弧侧迁移 ,岩浆、火山活动主要集中在正断层与平移断层的交汇处。深部动力源可归结为上地幔对流产生的菲律宾海板块俯冲 ,引起岛弧岩石圈挤压褶皱而向海沟旋张掀斜 ,产生弧后岩石圈的张性构造 ;进一步引起弧后软流圈挤压隆起 ,岩石圈与软流圈耦合作用导致海槽断陷张裂、岩浆活动。冲绳海槽仍是一个软流圈在汇聚的弧后盆地。全球性左旋压扭滑移背景 ,琉球海沟南段俯冲受阻小、强度大 ,台湾—吕宋的北向挤压 ,使海槽表现为剪张性 ,由平移断层调控使张性断裂左旋雁行排列 ,整个海槽张性构造由北往南推进 ,张应力方向由NW过渡到NNW。  相似文献   
106.
中国西部古亚洲与特提斯两大构造域划分问题讨论   总被引:4,自引:0,他引:4  
构造域是岩石圈划分中最大一级构造分区,一般将大洋岩石圈及与相邻大陆相互作用的构造带归为同一构造域,其实质是强调以大洋岩石圈为主导动力源.在梳理青藏高原北部造山带、天山-兴蒙造山带数十条蛇绿构造混杂岩带时代、性质的基础上,结合古生代古地理编图研究成果,提出中华古陆(地)块群在古生代时期为介于古亚洲洋和特提斯洋间的陆链.现今的天山-兴蒙造山带是古亚洲洋与不同性质陆块相互作用的结果,属古亚洲构造域组成部分,秦、祁、昆造山带是特提斯洋与中华古陆(地)块群相互作用结果,属特提斯构造域有机组成部分.  相似文献   
107.
Don Francis   《Lithos》2003,71(2-4):135-152
The Earth's continents are cored by Archean cratons underlain by seismically fast mantle roots descending to depths of 200+ km that appear to be both more refractory and colder than the surrounding asthenospheric mantle. Low-temperature mantle xenoliths from kimberlite pipes indicate that the shallow parts of these cratonic mantle roots are dominated by refractory harzburgites that are very old (3+ Ga). A fundamental mass balance problem arises, however, when attempts are made to relate Archean high-Mg lavas to a refractory restite equivalent to the refractory lithospheric mantle roots beneath Archean cratons. The majority of high-Mg Archean magmas are too low in Al and high in Si to leave behind a refractory residue with the composition of the harzburgite xenoliths that constitute the Archean mantle roots beneath continental cratons, if a Pyrolitic primitive mantle source is assumed. The problem is particularly acute for 3+ Ga Al-depleted komatiites and the Si-rich harzburgites of the Kaapvaal and Slave cratons, but remains for cratonic harzburgites that are not anomalously rich in orthopyroxene and many Al-undepleted komatiites. This problem would disappear if fertile Archean mantle was richer in Fe and Si, more similar in composition to chondritic meteorites than the present Pyrolitic upper mantle of the Earth. Accepting the possibility that the Earth's convecting upper mantle has become poorer in Fe and Si over geologic time not only provides a simpler way of relating Archean high-Mg lavas to the lithospheric mantle roots that underlie Archean cratons, but could lead to new models for the nature Archean magmatism and the lower mantle sources of modern hot-spot volcanism.  相似文献   
108.
S波接收函数对于研究岩石圈速度结构具有重要价值. 本文利用合成地震图技术研究了S波接收函数的动力学特征. 在接收函数非线性复谱比反演方法的基础上,发展了基于贝叶斯理论的P波和S波接收函数的非线性联合反演方法. 结果表明:(1)适用于S波接收函数反演的震中距范围约为55°~80°,S波接收函数反演要求所用远震事件的震级大于5级; (2)与陡变的岩石圈底部界面(LAB)相比,梯度带类型LAB上生成的SLP转换波相对较弱,台站下方的沉积盖层有助于相对增强SLP震相; (3)由于S波接收函数径向分量不符合δ脉冲,不依赖于等效震源假定的三分量接收函数多道最大或然性反褶积方法更适合S波接收函数的估计;(4)数值检验的结果表明,在初始模型速度参数偏离真实模型20%的情况下,本文的方法能够预测300 km深度范围内的P波和S波速度结构;(5)观测数据的反演结果表明,由于P波接收函数低频分量相对不足,本文的联合反演方法对于大于100 km深度上地幔的S波速度结构约束相对较弱.  相似文献   
109.
大同第四纪玄武岩成因:主微量元素及Sr-Nd-Pb-Hf同位素研究   总被引:1,自引:0,他引:1  
孙嘉祥  李霓  张雯倩 《岩石学报》2020,36(11):3331-3345
大同火山区位于大兴安岭-太行山重力梯度带西侧,所发育的第四纪玄武岩岩石地球化学特征为探索该区火山岩成因提供了重要约束,同时也为华北克拉通西部岩石圈地幔与软流圈的相互作用提供重要依据。根据火山地貌和岩性的不同,沿着北东向陈庄-许堡断裂可将大同玄武岩大致分为东、西两区,西区火山多呈锥状,以碱性玄武岩为主;东区则以溢流拉斑玄武岩为主,锥体少。镜下岩相学研究观察到大量橄榄石和单斜辉石斑晶,结合Ni、Cr两种元素随着MgO含量降低而减小,这两种矿物应是分离结晶作用下的主要产物。这些玄武岩的SiO2和(K2O+Na2O)含量分别为45.02%~53.3%和3.60%~6.53%,相对富集轻稀土元素((La/Yb)N=5.8~31.6),并显示富集LILE(Rb、Ba、Sr正异常)以及HFSE(Nb、Ta、Zr正异常)的洋岛玄武岩(OIB)特征。根据La/Yb-Sm/Yb图解模拟计算得出大同玄武岩均是石榴石相二辉橄榄岩低程度部分熔融的结果,其中碱性玄武岩部分熔融程度约为1.5%~3%,拉斑玄武岩约为4%~8%。所研究的玄武岩有较低87Sr/86Sr(0.703302~0.705102)、较高143Nd/144Nd(0.512561~0.512963)和176Hf/177Hf(0.282922~0.283072)比值。在143Nd/144Nd-87Sr/86Sr图解上大同玄武岩落在OIB范围内;207Pb/204Pb-206Pb/204Pb和143Nd/144Nd-206Pb/204Pb图解表明它们来自PREMA和EMⅠ端元的二元混合。大同碱性玄武岩和拉斑玄武岩的地球化学特征不同可以用两点原因来解释:(1)主量与微量元素特征的差异是两种玄武岩部分熔融程度不一样形成的;(2)同位素特征表明两种玄武岩都来自软流圈亏损端元的部分熔融并存在少量岩石圈富集端元物质的加入,其差异则是加入比例不同造成的。  相似文献   
110.
由于印度洋板块向亚欧板块俯冲使青藏高原不断隆起,其形成不仅导致了亚洲大陆内部强烈的晚新生代构造变形,还对其边缘地区的地貌格局产生重大影响.青藏高原东北缘是青藏高原向北东方向扩展的前缘部位,是印度与欧亚两大板块碰撞作用由近南北方向向北东、东方向转换的重要场所.本文利用2004年和2008年完成的深地震反射剖面资料,采用关键处理技术和参数开展唐克-合作剖面与合作-临夏剖面联线处理,获得总长约400 km的深地震反射剖面,完整揭示了西秦岭造山带及其两侧盆地的地壳结构和构造变形样式.结果显示西秦岭造山带下地壳向若尔盖逆冲推覆的深部构造特征;西秦岭下地壳北倾的强反射及其北侧南倾的强反射特征揭示出扬子与华北两个大陆板块在西秦岭造山带下的汇聚行为.Moho的埋深和起伏形态表明青藏高原东北缘地壳经历了高原隆升后强烈的伸展减薄作用.  相似文献   
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