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91.
92.
Major- and trace-element contents and Sr–Nd isotope ratios were determined in albitite, albitized and unaltered late-Variscan granitoid samples from the world-class Na-feldspar deposits of central Sardinia, Italy. The albite deposit of high economic grade has geological, textural, and chemical features typical of metasomatic alteration affecting the host granitoids. Albitization, locally accompanied by chloritization and epidotization, was characterized by strong leaching of Mg, Fe, K, and geochemically similar trace elements, and by a significant increase of Na. Ca, and P were moderately leached in the most metasomatized rocks. Other major (Si, Ti, Ca) and trace elements (U, Th, Y, and Zr), along with light (LREE) and middle (MREE) rare-earth elements, behaved essentially immobile at the deposit scale. The Nd-isotope ratios (0.512098 to 0.512248) do not provide information on the emplacement age of the unaltered late-Variscan granitoids. On the other hand, their Sr-isotope ratios fit an errorchron of 274±29 Ma (1σ error), in fair agreement with all published ages of Sardinian Variscan granitoids. The very low Rb content of albitized rocks precludes application of the Rb–Sr radiometric system to determine the age of albitization. The Sm–Nd system is not applicable either, because the 143Nd/144Nd ratios of albitized rocks and unaltered granitoids overlap. The overlap confirms that Sm and Nd were substantially immobile during albitization. On the other hand, the measured 87Sr/86Sr ratios of the albitized rocks are appreciably lower than those of the unaltered host granitoids, whereas, their initial Sr-isotope ratios are higher. This seems to suggest that a) albitization was induced by non-magmatic fluids rich in radiogenic Sr, and b) albitization occurred shortly after the granitoid emplacement. This conclusion is supported by Nd isotopes, because unaltered granitoids and albitites fit the same reference isochron at 274 Ma. The fluids acquired radiogenic Sr by circulation through the Lower Paleozoic metasedimentary basement. Specifically, it is estimated that Sr supplied by the non-carbonatic basement represents about 22 wt% of total Sr in albitite.  相似文献   
93.
The marine sector surrounding Panarea Island (Aeolian Islands, South Italy) is affected by widespread submarine emissions of CO2 -rich gases and thermal water discharges which have been known since the Roman Age. On November 3rd, 2002 an anomalous degassing event affected the area, probably in response to a submarine explosion. The concentrations of minor reactive gases (CO, CH4 and H2) of samples collected in November and December, 2002 show drastic compositional changes when compared to previous samples collected from the same area in the 1980s. In particular the samples collected after the November 3rd phenomenon display relative increases in H2 and CO and a strong decrease in the CH4 contents, while other gas species show no significant change. The interaction of the original gas with seawater explains the variable contents of CO2, H2S, N2, Ar and He which characterize the different samples, but cannot explain the large variations of CO, CH4 and H2 which are instead compatible with changes in the redox, temperature and pressure conditions of the system. Two models, both implying an increasing input of magmatic fluids are compatible with the observed variations of minor reactive species. In the first one, the input of magmatic fluids drives the hydrothermal system towards atypical (more oxidizing) redox conditions, slowly pressurizing the system up to a critical state. In the second one, the hydrothermal system is flashed by the rising high-T volcanic fluid, suddenly released by a magmatic body at depth. The two models have different implications for volcanic surveillance and risk assessment: In the first case, the November 3rd event may represent both the culmination of a relatively slow process which caused the overpressurization of the hydrothermal system and the beginning of a new phase of quiescence. The possible evolution of the second model is unforeseeable because it is mainly related to the thermal, baric and compositional state of the deep magmatic system that is poorly known.  相似文献   
94.
A two-dimensional analytical solution for stress, strain rate, and velocity is obtained for parallel-sided and wedge-shaped blocks with generalized viscous rheology (linearly viscous and power-law) deforming in plane strain. The main assumptions used in the derivation of the solution are that the material is incompressible, the longitudinal gradient in shear stress is much less than the vertical gradient of vertical normal stress, and the longitudinal strain rate varies linearly in the horizontal direction. Velocity boundary conditions are specified at the top of the block, and shear stress boundary conditions at the base of the block. In the one-dimensional case (where stress and strain rate do not vary in the longitudinal direction), the solution reduces to a well-known solution for the deformation of parallel-sided ice sheets [Nye, J. F. (1957) The distribution of stress and velocity in glaciers and ice sheets. Proceedings of the Royal Society of London A-239, 113–133]. The stress equilibrium for tapered wedges [Platt, J. P. (1986) Dynamics of orogenic wedges and the uplift of high-pressure metamorphic rocks. Geological Society of America Bulletin 97, 1037–1053] is a special case of the present stress solution. Implementation of the solution requires the subdivision of the wedge into vertical segments, and yields the tectonic normal and shear stresses that must be applied to the rear of a block with specified rheology in order to maintain a given longitudinal strain rate. The solution makes it possible to model deformation patterns analytically with longitudinally varying strain rate (including coeval compression and extension) and with vertical components of velocity reflecting the effects of underplating.  相似文献   
95.
Natural processes encountered in mining, hydrogeologic, environmental, etc. applications usually are poorly known because of scarcity of data over the area of interest. Therefore, stochastic estimation techniques are the tool of choice for a careful accounting of the heterogeneity and uncertainty involved. Within such a framework, a better utilization of all available data concerning the process of interest and all other natural processes related to it, is of primary importance. Because many natural processes show complicated spatial trends, the hypothesis of spatial homogeneity cannot be invoked always, and the more general theory of intrinsic spatial random fields should be employed. Efficient use of secondary information in terms of the intrinsic model requires that suitable permissibility criteria for the generalized covariances and cross-covariances are satisfied. A set of permissibility criteria are presented for the situation of two intrinsic random fields. These criteria are more general and comprehensive than the ones currently available in the geostatistical literature. A constrained least-square technique is implemented for the inference of the generalized covariance and cross-covariance parameters, and a synthetic example is used to illustrate the methodology. The numerical results show that the use of secondary information can lead to significant reductions in the estimation errors.  相似文献   
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The northern and the southern basin of Lake Lugano, Switzerland, are separated by an artificial dam. The flow of the water is not only influenced by the outflow of the northern basin but also by gravitational oscillations (seiches) of both basins. A longperiodic peak around 100 minutes can be explained by a mathematical model. The interaction of the internal waves is a coupled oscillation with a period of 74 hours.   相似文献   
100.
Summary A widespread volcanism mainly consisting of pyroclastic products and lava flows is found in the Southern Alps of Lombardy. The volcanics are interbedded with Anisian-Ladinian carbonatic sequences and continental terrigenous or transitional deposits of Ladinian-Carnian age. The petrographic and geochemical data for this volcanism indicate a calc-alkaline affinity with characters similar to those of convergent continental margins. In this sector of the Alps the geological evidences show that in the middle Triassic general extensional movements were the dominant deformation event, and do not support the existence of a subduction zone during this period. The apparent contrast between the tectonic environment and the type of magmas erupted in the Anisian-Carnian is tentatively explained by partial melting during the early stage of rifting of an upper mantle deeply modified during the previous Hercynian orogenesis and contaminated by crustal material. This hypothesis is in agreement with the preliminary Sr isotopic ratios (0.705 and 0.709). K/Ar and Rb/Sr ages on biotites date the beginning of the volcanism at around 225 m.y.
Zusammenfassung In den Südalpen der Lombardei befindet sich ein weitverbreiteter Vulkanismus, der hauptsächlich aus pyroklastischen Produkten und Lavaströmen besteht. Vulkanische Produkte sind mit anisisch-ladinischen beckenartigen Karbonat-Schichtfolgen oder mit ladinisch-karnischen kontinental-terrestrischen oder Übergangsablagerungen eingebettet. Die petrographischen und geochemischen Daten für diesen Vulkanismus weisen auf eine den konvergenten Kontinentalschelfen ähnliche kalkalkaline Affinität hin. In diesem Sektor der Alpen zeigen die geologischen Beobachtungen, daß die dominanten Verformungsereignisse der mittleren Trias allgemeine Dehnungsbewegungen waren und weisen nicht auf die Existenz einer Subduktionszone zu dieser Zeit hin. Der scheinbare Widerspruch zwischen dem tektonischen Milieu und dem im Anis bis Karn ausgeworfenen Magmatyp wird versuchsweise mit einer Teilaufschmelzung eines während der vorhergehenden herzynischen Orogenese tief veränderten und mit Krustenmaterial verunreinigten oberen Mantels während der Frühphase einer Grabenbildung erklärt. Diese Hypothese ist im Einklang mit den präliminaren Sr-Isotopenverhältnissen (0.705 und 0.709). K/Ar und Rb/Sr Altersmessungen an Biotiten datieren den Anfang der vulkanischen Tätigkeit um 225 Ma.

Résumé Un volcanisme très répandu constitué surtout par des produits pyroclastiques et par des coulées de lave se trouve dans les Alpes Méridionales en Lombardie. Ces produits volcaniques sont intercalés dans la série carbonatique du bassin d'âge Anisien-Ladinien et dans les dépôts terrigènes continentaux ou transitionnels d'âge Ladinien-Carnien. Les données pétrographiques et géochimiques de ces produits volcaniques montrent une affinité calcoalcaline avec des caractères semblables à ceux des marges continentales convergentes. Dans le Trias moyen de cette partie des Alpes, les données géologiques indiquent que le motif dominant de la déformation est un mouvement d'extension très répandu, tandis qu'il n'y a aucune évidence de l'existence d'une zone de subduction durant cette période. Le contraste entre le style tectonique et le type de magma mis en place dans l'Anisien-Carnien, peut être expliqué par une fusion partielle du manteau supérieur pendant un stade précoce d'effondrement modifié intensément pendant la précédente orogenèse hercynienne et contaminé par des matériaux d'origine crustale. Cette hypothèse est en accord avec des données préliminaires des rapports isotopiques du Sr (0.705 et 0.709). Des âges K/Ar et Rb/Sr sur des biotites donnent 225 m.a. environ pour le début de l'activité volcanique.

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