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101.
影响碰撞造山成岩成矿模式的因素及其机制 总被引:44,自引:3,他引:41
基于分析陆内俯冲过程物质的活化迁移规律建立了碰撞造山成岩成矿模式,认为仰冲板片上依次出现热液矿床带、花岗岩基带和斑岩带。探讨了陆内俯冲的角度、速度、俯冲板片物质成分、地热梯度等因素对陆内俯冲成岩成矿模式空间分带模型的影响,推导了有关的变异形式,在充分显示碰撞造山成岩成矿模式之科学性和实用性的同时,为在碰撞造山带或陆内俯冲区进行实际找矿提供了理论参考。 相似文献
102.
Correlation between seismic anisotropy and Bouguer gravity anomalies in Tibet and its implications for lithospheric structures 总被引:8,自引:0,他引:8
As a baseline measurement for understanding the Himalayan–Tibetan orogen, a product of continent–continent collision between India and Eurasia, we analyse digital seismic data in order to constrain the seismic anisotropy of the Indian shield. Based on spatially sparse data that are currently available in the public domain, there is little shear-wave birefringence for SKS phases under the Indian shield, even though it is part of a fast-moving plate in the hotspot frame of reference. If most of the northern Indian mantle has little transverse anisotropy, the onset of significant anisotropy under Tibet marks the northern terminus of intact Indian lithosphere that is thrusting under the Himalayan–Tibetan orogen. Beyond this terminus, tectonic fabric such as that associated with the deforming lithospheric mantle of Eurasia must be present in the upper mantle. Along the profile from Yadong to Golmud, the only profile in Tibet where a number of shear-wave birefringence data are available, the amount of birefringence shows two marked increases, near 30° and 33°N, between which a local high in Bouguer gravity anomaly is observed. Such a correlation between patterns of shear-wave birefringence and gravity anomalies is explained by the juxtaposition of Indian lithosphere against the overlying Eurasian lithosphere: while the Eurasian lithospheric mantle appears only to the north of 30°N, the Indian lithospheric mantle extends northwards to near 33°N. 相似文献
103.
雪峰山加里东造山运动及其体制转换 总被引:17,自引:0,他引:17
本文论述了雪峰山地区加里东造山运动的变形序列,加里东运动期间,至少存在3个连续的构造热事件。并且阐述了挤压体制向伸展体制的转换,形成低角度滑脱带,高角度正断层及变质核杂岩。 相似文献
104.
南秦岭佛坪麻粒岩的矿物学和地球化学特征及其构造意义 总被引:1,自引:0,他引:1
采用电子探针、红外光谱和全岩化学分析方法,对佛坪麻粒岩开展了系统的矿物学和地球化学研究。研究结果表明本区麻粒岩以酸性岩为主,主要组成矿物为长石、石英、石榴子石、紫苏辉石及少量的黑云母和钙质角闪石。岩石富集轻稀土和大离子亲石元素,亏损高场强元素,具有强烈的Nb、Ta负异常,表明源岩在成因上与洋壳的俯冲消减作用有关。结合区域地质和测年资料,我们认为佛坪麻粒岩源岩的形成与勉略古洋壳向南秦岭地块之下的俯冲有关,是中—晚三叠世南秦岭与扬子地块的陆-陆碰撞所导致的麻粒岩相变质作用的产物。 相似文献
105.
Reworking of the Gangdese magmatic arc,southeastern Tibet: post‐collisional metamorphism and anatexis
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The Gangdese magmatic arc, southeastern Tibet, was built by mantle‐derived magma accretion and juvenile crustal growth during the Mesozoic to Early Cenozoic northward subduction of the Neo‐Tethyan oceanic slab beneath the Eurasian continent. The petrological and geochronological data reveal that the lower crust of the southeastern Gangdese arc experienced Oligocene reworking by metamorphism, anatexis and magmatism after the India and Asia collision. The post‐collisional metamorphic and migmatitic rocks formed at 34–26 Ma and 28–26 Ma respectively. Meta‐granitoids have protolith ages of 65–38 Ma. Inherited detrital zircon from metasedimentary rocks has highly variable ages ranging from 2708 to 37 Ma. These rocks underwent post‐collisional amphibolite facies metamorphism and coeval anatexis under P–T conditions of ~710–760 °C and ~12 kbar with geothermal gradients of 18–20 °C km ? 1, indicating a distinct crustal thickening process. Crustal shortening, thickening and possible subduction erosion due to the continental collision and ongoing convergence resulted in high‐P metamorphic and anatectic reworking of the magmatic and sedimentary rocks of the deep Gangdese arc. This study provides a typical example of the reworking of juvenile and ancient continental crust during active collisional orogeny. 相似文献
106.
Bar Elisha Yaron Katzir Andrew R. C. Kylander‐Clark Tzahi Golan Matthew A. Coble 《Journal of Metamorphic Geology》2019,37(5):591-610
Collision‐related granitoid batholiths, like those of the Hercynian and Himalayan orogens, are mostly fed by magma derived from metasedimentary sources. However, in the late Neoproterozoic calcalkaline (CA) batholiths of the Arabian–Nubian Shield (ANS), which constitutes the northern half of the East African orogen, any sedimentary contribution is obscured by the juvenile character of the crust and the scarcity of migmatites. Here, we use paired in situ LASS‐ICP‐MS measurements of U–Th–Pb isotope ratios and REE contents of monazite and xenotime and SHRIMP‐RG analyses of separated zircon to demonstrate direct linkage between migmatites and granites in the northernmost ANS. Our results indicate a single prolonged period of monazite growth at 640–600 Ma, in metapelites, migmatites and peraluminous granites of three metamorphic suites: Abu‐Barqa (SW Jordan), Roded (S Israel) and Taba–Nuweiba (Sinai, Egypt). The distribution of monazite dates and age zoning in single monazite grains in migmatites suggest that peak thermal conditions, involving partial melting, prevailed for c. 10 Ma, from 620 to 610 Ma. REE abundances in monazite are well correlated with age, recording garnet growth and garnet breakdown in association with the prograde and retrograde stages of the melting reactions, respectively. Xenotime dates cluster at 600–580 Ma, recording retrogression to greenschist facies conditions as garnet continued to destabilize. Phase equilibrium modelling and mineral thermobarometry yield P–T conditions of ~650–680°C and 5–7 kbar, consistent with either water‐fluxed or muscovite‐breakdown melting. The expected melt production is 8–10 vol.%, allowing a melt connectivity network to form leading to melt segregation and extraction. U–Pb ages of zircon rims from leucosomes indicate crystallization of melt at 610 ± 10 Ma, coinciding with the emplacement of a vast volume of CA granites throughout the northern ANS, which were previously considered post‐collisional. Similar monazite ages (c. 620 Ma) retrieved from the amphibolite facies Elat schist indicate that migmatites are the result of widespread regional rather than local contact metamorphism, representing the climax of the East African orogenesis. 相似文献
107.
《International Geology Review》2012,54(2):95-119
Eclogites are often the only tangible high-pressure evidence we have from a paleosubduction zone, and they potentially preserve important geochemical information from the descending slab. Selected Group B/C eclogites and metapelites from the Trescolmen locality in the Adula nappe in the central Swiss Alps were chosen for a detailed investigation to determine oxygen isotope ratios and major- and trace-element compositions of the main rock-forming minerals. Complex major-element zonation patterns in garnet porphyroblasts indicate a pre-Alpine, medium-pressure growth history coupled with a high-pressure modification during the Alpine orogeny. Garnet REE patterns are notably HREE depleted in rim regions, with high overall REE content, particularly in the cores of grains. Omphacites are relatively homogenous in major elements, and show LREE- and HREE-depleted patterns, but with overall abundances of REEs lower than in garnets. These patterns are best explained by partitioning of the HREEs into garnet and the LREEs into zoisite. Oxygen-isotope systematics indicate limited fluid flow in eclogites and surrounding metapelites. δ18O values of quartz and garnet at the interface between eclogites and metapelites are indistinguishable and point to fluid exchange. Oxygen equilibrium conditions among rock-forming minerals, particularly between quartz and garnet in eclogites and metapelites, were reached, and fractionation indicates temperatures of ~600°C. The δ18O of unaltered eclogites (5.5 to 7.5 ‰) suggests a basaltic, MORB-type protolith. 相似文献
108.
《International Geology Review》2012,54(2):116-132
Lower Miocene Boyalik volcanic rocks, situated approximately 80 km south of Ankara, exhibit both alkaline and calc‐alkaline characteristics. Alkaline products are trachybasaltic and trachyandesitic, whereas calc‐alkaline products are dacitic. The phenocrysts in the dacites consist primarily of plagioclase and hornblende, with lesser amounts of biotite. The groundmass contains plagioclase and quartz microcrysts. Trachyandesites are mainly composed of plagioclase and biotite phenocrysts with a groundmass of alkali feldspar microlites and minor clinopyroxene microcrysts. Trachybasalts are mainly composed of olivine and plagioclase phenocrysts, with minor clinopyroxene phenocrysts associated with alkali feldspar, plagioclase and clinopyroxene microlites and microcrysts in the groundmass. Oxides are common accessory phases in all products. Boyalik volcanic rocks have essentially homogeneous incompatible trace element patterns with variable Nb and Th anomalies, enrichment in Rb, Ba, K, La, Ce and Nd, and positive Sr anomalies. Some trace element ratios (e.g. Ba/Ta, Ba/Nb, Th/U and Ce/Pb) are variable among the series. For instance, dacites and trachyandesites have higher Ba/Ta (724–2509), Ba/Nb (45–173) and Th/U (3.5–8.7) and lower Ce/Pb (7.1–3.9) values than the trachybasalts. Trace element data indicate that the series are chemically distinct but probably were derived from a common lithospheric mantle source via variable degrees of partial melting. The magmas then underwent a process of evolution involving assimilation and fractional crystallization (AFC) during ascent to the surface. Although trachyandesites and dacites were generated from a lithospheric mantle source via ~1% and ~1.5% to ~5% degrees of partial melting, respectively, trachybasalts were derived from the same source via higher degrees of partial melting (~20%) with neglegible crustal contamination. Boyalik volcanism is linked to an intracontinental transpressional setting. However, the overall geochemical features are consistent with derivation from a mantle source that records earlier Eocene subduction between the Sakarya continental fragment and the K?r?ehir block during time. 相似文献
109.
110.
西秦岭岗察岩体地球化学特征及意义 总被引:1,自引:0,他引:1
岗察岩体位于西秦岭造山带西端,该岩体形成于三叠纪中晚期,具有从中基性-酸性演化趋势。ω(SiO2)为55.15%~74.84%,Al2O3为13.12%~17.98%,K2O为1.23%~5.24%,K2O/Na2O为0.43~1.49,A/CNK为0.86~1.06,样品σ值为1.37~2.40,岩体属准铝质-弱过铝质钙碱性系列。微量元素球粒陨石标准化蜘蛛图解呈明显的右倾谱型,总体表现为Y、Yb、Zr、P、Nb、Ti(HFS)相对亏损,Rb、Th、K(LIL)富集的特征,指示岩体具有活动大陆边缘环境的特征。稀土元素(La/Yb)N为3.51~18.89,在稀土元素分配曲线上轻稀土元素富集且分异明显,重稀土元素相对亏损,Eu元素"谷"形明显,δEu为0.31~0.83,表明岩浆演化过程中有长石的结晶分异。微量与稀土元素蛛网图解形态及其组成特征还表明了岗察岩体岩浆源物质主要是由上地壳重熔演化而成。Rb-(Y+Nb)判别图解、R1-R2因子判别图解说明岩体处于西秦岭大陆活动边缘,经历了中三叠世中期西秦岭扬子地块与祁连地块之间板块碰撞造山运动。 相似文献