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1.
Marine Geophysical Research -  相似文献   
2.
The present study is based on a set of lavas and crosscutting dikes collected by dives along detailed vertical transects on the northern flank of the western part of the Blanco Transform Fault, Northeast Pacific. The studied area consists of a small basin, the Western Blanco Depression (WBD), extending from the southern end of the Juan de Fuca ridge to a pseudofault trace 60 km eastward. The Northern Scarp of the WBD comprises a volcanic unit overlying a sheeted-dike complex. Major and trace element data, coupled with Sr–Nd isotope ratios, reveal a two-component mantle source, composed by an isotopically depleted matrix variably veined by more enriched material. One chemical group (NS2), indistinguishable from the other Northern Scarp samples on the basis of trace element data, has an unusually depleted isotopic composition typical of a nearly pure mantle end-member. Some cogenetic samples of the Northern Scarp have been used to constrain the differentiation modalities. Anorthite and MgO content profiles in plagioclase xenocrysts and phenocrysts reveal (i) the existence of H2O-bearing evolved melts in the mushy zones and (ii) the occurrence of mixing process between these melts and anhydrous mafic liquids. The hydration is supported by other petrographic features such as high magmatic fO2 values, calculated from Fe–Ti oxide pairs, and the presence of pyroxene inclusions in plagioclase phenocrysts. Mixing, consistent with the existence of Ni-rich ferrobasalts, is interpreted to be the consequence of the reservoir refilling by mafic liquids (Mg# = 70). These petrological and geochemical evidences are combined with the evolution of Mg# with depth to suggest a periodic open-system magma chamber evolution beneath the southern end of the Juan de Fuca ridge.  相似文献   
3.
Abstract Amphibolites unconformably overlain by a metasedimentary sequence of quartz-muscovite-feldspar-kyanite schists, metagraywackes and epidote-bearing amphibolites occur in the northern portion of the south-western Zamboanga metamorphic basement complex, western Mindanao. These amphibolites (here identified as the Mount Dansalan amphibolites) display relict magmatic textures inherited from cumulate gabbro protoliths. Bulk-rock major and trace-element data are consistent with this hypothesis. Together with the chemistry of relict igneous clinopyroxenes, they indicate a magmatic arc-related signature for the gabbro protoliths. Geochemical data allow us to identify various sources for the associated metasediments: the gabbro themselves for the metagraywackes and a continental basement for the quartz-muscovite-feldspar-kyanite schists. Both sources contributed to the genesis of the epidote-amphibolite metasediments. The compositions of the metamorphic mineral assemblages suggest that the rocks have undergone metamorphism at temperatures ranging from 550°C to 700°C and pressures probably in the range of 5–9 kbar. 40K–40Ar isotopic study of amphibole separates from the Mount Dansalan samples document a metamorphic event dated at 24.6 ± 1.4, 22.2 ± 1.4 and 21.2 ± 1.2 Ma. Our results are in agreement with plate tectonic models which describe the south-western Zamboanga metamorphic basement as a continental terrane. However, its evolution was not as simple as it was usually considered. In particular the basement incorporated slivers of magmatic arc crust, which cannot be unambiguously related to any of the Tertiary arcs documented in the area.  相似文献   
4.
A submersible study has been conducted in February–March 1978 at the axis of the East Pacific Rise near 21°N. The expedition CYAMEX, the first submersible program to be conducted on the East Pacific Rise, is part of the French-American-Mexican project RITA (Rivera-Tamayo), a 3-year study devoted to detailed geological and geophysical investigations of the East Pacific Rise Crest. On the basis of the 15 dives made by CYANA in the axial area of the Rise, a morphological and tectonic zonation can be established for this moderately-fast spreading center. A narrow, 0.6 to 1.2 km wide zone of extrusion (zone 1), dominated by young lava flows, is flanked by a highly fissured and faulted zone of extension (zone 2) with a width of 1 to 2 km. Further out, zone 3 is dominated by outward tilted blocks bounded by inward-facing fault scarps. Active or recent faults extend up to 12 km from the axis of extrusion of the East Pacific Rise. This represents the first determination from direct field evidence of the width of active tectonism associated with an accreting plate boundary. Massive sulfide deposits, made principally of zinc, copper and iron, were found close to the axis of the Rise. Other signs of the intense hydrothermal activity included the discovery of benthic fauna of gian size similar to that found at the axis of the Galapagos Rift. We emphasize the cyclic character of the volcanicity. The main characteristics of the geology of this segment of the East Pacific Rise can be explained by the thermal structure at depth below this moderately-fast spreading center. The geological observations are compatible with the existence of a shallow magma reservoir centered at the axis of the Rise with a half-width of the order of 10 km.  相似文献   
5.
Hekinian  R.  Juteau  T.  Gràcia  E.  Sichler  B.  Sichel  S.  Udintsev  G.  Apprioual  R.  Ligi  M. 《Marine Geophysical Researches》2000,21(6):529-560
The St. Paul F.Z. is a large structural domain made up of multiple transform faults interrupted by several Intra-Transform Ridge (ITR) spreading segments. Two regions were studied in details by submersible: (1) The ITR short (<20 km in length) segment near 0° 37N–25° 27W and 1° N–27° 42W and (2) The St. Peter and St. Paul's Rocks (SPPR) massif located at 29° 25W (¡3700 m depth). (1) The short ITR segments consist of a magma starved rift valley with recent volcanic activities at 4700 m depth. A geological profile made along the rift valley wall showed localized volcanics (basalts and dykes) which are believed to overlay and intrude the ultramafics. The geological setting and the high ultramafic/volcanic ratio suggest an extremely low magmatic supply and crustal-mantle uplift during lithospheric stretching and denudation. (2) The St. Peter and St. Paul's Rocks (SPPR) massif consists of a sigmoidal ridge within the active transform zone. The SPPR is divided into two different geological domains called the North and the South Ridges. The North Ridge consists of strongly tectonized fault scarps composed of banded and mylonitized peridotite, sporadic gabbros (3900–2500 m) and metabasalts (2700–1700 m). The South Ridge is less tectonized with undeformed, serpentinized spinel lherzolite (2000–1400 m) and basalts. Extensional motion and denudation accompanied by diapirism affected the South Ridge within a transform domain. Instead, the North Ridge was formed during an important strike-slip and faulting motion resulting in the uplifted portion of the St. Paul F.Z. transverse ridge. There is a regional compositional variation of the volcanics where E-MORBs and alkali basalts are produced on the SPPR massif and are comparable to the adjacent northern segments of the Mid-Atlantic Ridge. On the other hand, N and T- MORBs collected from the eastern part of the St. Paul F.Z. (25° 27W IRT) are similar to the volcanics from the southern segments of the MAR. The peridotites exposed in these provinces (SPPR and ITR) are similar in their REE and trace element distribution. Different degrees (3–15%) of partial melting of a mixed composite mantle consisting of spinel and amphibole bearing lherzolite veined with 5–40% clinopyroxenite gave rise to the observed MORBs and alkali basalts.  相似文献   
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8.
Résumé Les orbicules de chromites, structures typiques des corps podiformes de chromite des ophiolites, sont décrites en détail. Elles correspondent à des concrétions magmatiques en milieu turbulent soumises en fin de cristallisation à un allongement et un cisaillement contemporains de la déformation plastique de l'olivine. Les autres types de minerai des corps podiformes sont affectés d'un plan de "pull-apart" marqué par des feuillets lenticulaires et parallèles à remplissage d'olivine. Ultérieurement, un réseau de diaclases à remplissage serpentineux se développera. Ces observations sont cohérentes avec l'hypothèse de la formation des corps podiformes dans des conduits magmatiques au sein des péridotites mantelliques.
The chromite orbicules, a typical ore from chromite pods of ophiolites, are described. These are considered as magmatic concretions having suffered deformations at the end of the crystallization state, during the plastic deformation of olivine. Other ore textures display a pull-apart plane marked by lenticular olivine sheets. Later joint planes, with serpentine filling up, are developped. Our observations are in good agreement with the hypothesis of the generation of the chromite pods within magmatic pipes in the mantle peridotites.
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9.
A major reverse fault with a separation of at least a few thousand meters is exposed in the western Cordillera of Ecuador near 2°S.Ree and other incompatible elements patterns show (i) that the rocks exposed in the upthrust block to the east of the fault areMorb that had not yet been identified and (ii) that a volcanic island-arc assemblage extensively outcrops in the downthrust block west of the fault.The fault therefore bounds a steeply east-dipping thrustsheet comprising the arc and its basement. Thrustsheets of the same type are known farther north in Ecuador. They were stacked in a presently inactive subduction-zone during the early Tertiary when the island-arc, drifting from the west, finally collided with continental south America.The large dextral-slip Guayaquil-Dolores fault system, traditionally but possibly erroneously thought to be the suture-zone between continental south America and the oceanic allochthone blocks collided during the Cretaceous and Tertiary, subsequently disrupted most of that structural arrangement.
Zusammenfassung Die Gesteine einer bei 2° Südlicher Breite in der Westkordillere Ecuadors zu Tage tretenden und um mehrere tausend Meter versetzten Verwerfung wurden in geochemischer Hinsicht untersucht. Die Verteilung der seltenen Erden und der anderen inkompatiblen Elemente in den Proben zeigte östlich dieser Verwerfung das Vorkommen von Tholeiiten desMorb-Typs auf, deren Auftreten hier bis jetzt unbekannt war. Außerdem konnten die westlich der Verwerfung auftretenden Diabase, Andesite und Rhyolite dem Typ eines Inselbogens zugeordnet werden.Diese Verwerfung begrenzt infolgedessen eine stark nach Osten einfallende Schuppe des Sockels. Andere Schuppen dieser Art treten weiter im Norden Ecuadors auf, wo sie zu Beginn des Tertiärs während des Zusammentreffens des von Westen ankommenden, aus der Kreidezeit stammenden Inselbogens mit dem südamerikanischen Kontinent in eine Paläosubduktionszone eingebettet worden sind.Dieses Strukturgefüge ist anschließend zum größten Teil durch das System der rechtsseitigen Verwerfungen von Guayaquil — Dolores verdeckt worden. Dieses System wird für gewöhnlich — aber wahrscheinlich zu Unrecht — für die Nahtstelle des kontinentalen Südamerikas und der während der Kreidezeit und des Tertiärs gegen den Kontinent sto– Benden und/oder obduzierten allochtonen Blöcke ozeanischen Substrats gehalten.

Résumé Une faille inverse exposée dans la cordillère occidentale de l'Equateur vers 2°S a un rejet de plusieurs milliers de mètres. L'étude géochimique des terres rares et autres éléments incompatibles permet de reconnaître à l'est de la faille des tholéiites de ride médio-océanique jusqu'alors non identifiées, alors que les diabases, andésites et rhyolites présentes à l'ouest de la faille appartiennent à une formation d'arc insulaire.Cette faille délimite donc une écaille de socle à fort pendage vers l'est. D'autres écailles de ce type sont connues plus au nord en Equateur. Elles se sont imbriquées au début du Tertiaire dans une paléozone de subduction, lors de la collision de l'arc insulaire, venu de l'ouest, avec le continent sud-américain.Ce dispositif structural a été ensuite oblitéré en majeure partie par le systême faillé dextre de Guayaquil-Dolores, qui passe classiquement, mais probablement à tort, pour être la suture entre l'Amérique du sud continentale et les blocs allochtones à substratum océanique collés au continent et/ou obductés durant le Crétacé et le Tertiaire.

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10.
The isotope geochemistry (Sm-Nd, Pb-Pb and Rb-Sr) of mafic gneisses from the basement of the Carswell structure (Saskatchewan, Canada), rich both in Mg and incompatible elements (K, Rb, REE) has been investigated. A good Sm-Nd alignment gives a slope corresponding to an age of 3.7 Ga. However, comparison with major elements data strongly suggests that this alignment is a mixing line between Mg-rich, high CaO/Al2O3 magmas and the local felsic crust older than 2.9 Ga. The mafic magmas were probably of komatiitic affinity (MgO > 20 percent) but, nevertheless, were extracted from a source with nearly chondritic to slightly enriched light REE distribution. The age of the komatiite emplacement (1.9–2.9 Ga) is only loosely constrained by the oldest crustal residence age in the series and the subsequent metamorphic events. The granulite facies climax is dated at ca. 1.9 Ga by concordant whole rock Pb-Pb and Sm-Nd garnet-whole rock isochrons. The Rb-Sr systematics have been disturbed by later event(s) younger than 1.5–1.7 Ga, but do not permit a more precise assessment of the perturbation age.  相似文献   
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