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11.
Combining Lu–Hf garnet geochronology with in situ trace element analyses in garnet allowed us to gain new insight into the metamorphic evolution of UHP–UHT rocks in the Stary Gierałtów region, in the Polish Sudetes. Prograde garnet growth recorded by Rayleigh-type heavy REE (HREE) zoning in the felsic granulites indicates that the obtained 386.6 ± 4.9 Ma Lu–Hf age represents the time of garnet crystallization on a prograde UHP metamorphic path. The surrounding rocks were metamorphosed at the same time as indicated by 381.2 ± 6.7 Ma Sm–Nd garnet age obtained for the mid-crustal metapelites. The second metamorphic episode, which affected most of the lower crust in the Orlica–Śnieżnik Massif (OSM) occurred at ca. 340 Ma as determined by U–Pb zircon and Sm–Nd garnet dating of granulites in this and previous studies is interpreted as a high temperature event, which took place on a retrograde path.

Trace element distribution in garnets from the layered granulites showed significant differences in distribution of medium and HREE in garnets from mafic and felsic protoliths over the course of the metamorphic evolution. This had strong impact on the isotopic dating results and led to “decoupling” of the Sm–Nd and Lu–Hf clocks, which recorded timing of the two different metamorphic episodes separated by as much as 40 Ma. Moreover, the preservation of the HREE growth zonation profile in garnets from the felsic granulites whose minimum metamorphic temperature was established at 900 °C implies that the Lu–Hf system under relatively dry conditions does not undergo significant diffusional re-equilibration even at such extreme temperatures and therefore it sill provides the age of prograde garnet growth. Under hydrous conditions, at least some resetting will take place, as documented by the partially relaxed HREE zonation profile in the amphibolitised mafic granulite, which yielded a 10 Ma younger age. The HREE distribution study appeared to be a particularly valuable and essential tool, which allowed us to distinguish garnet growth from post-growth complexities and hence, provide improved age interpretation. Medium REE, on the other hand, did not show any obvious correlation with the isotopic signature of garnet.

Two distinct metamorphic episodes recorded in the Stary Gierałtów region show that buoyancy-driven uplift of UHP rocks can be arrested at the base of a continental crust if not supported by any additional force. In our case study, the UHP rocks would have never reached the surface if their uplift had not been resumed after a long pause under a different tectonic regime. The multistage, discontinuous uplift revealed by the UHP rocks of the OSM provides a new scenario for the exhumation of continental crust from mantle depths distinct from the fast-track exhumation histories recognized in UHP terranes elsewhere.  相似文献   

12.
The results of seismic measurements along the deep seismic sounding profile VII and terrestrial heat flow measurements used for construction of heat generation models for the crust in the Paleozoic Platform region, the Sudetic Mountains (Variscan Internides) and the European Precambrian Platform show considerable differences in mantle heat flow and temperatures. At the base of the crust variations from 440–510°C in the models of Precambrian Platform to 700–820°C for the Paleozoic Platform and the Variscan Internides (Sudets) are found. These differences are associated with considerable mantle heat flow variations.The calculated models show mantle heat flow of about 8.4–12.6 mW m–2 for the Precambrian Platform and 31 mW m–2 to 40.2 mW m–2 for Paleozoic orogenic areas. The heat flow contribution originating from crustal radioactivity is almost the same for the different tectonic units (from 33.5 mW m–2 to 37.6 mW m–2). Considerable physical differences in the lower crust and upper mantle between the Precambrian Platform and the adjacent areas, produced by lateral temperature variations, could be expected. On the basis of carbon ratio data it can be concluded that the Carboniferous paleogeothermal gradient was much lower in the Precambrian Platform area than in the Paleozoic Platform region.  相似文献   
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Flotation tests for sphalerite, smithsonite and dolomite were carried out in a Hallimond tube at various pH values and two concentrations of collector.Adsorption of 5-alkylsalicylaldoximes on the surface of minerals was examined and isotherms for 5-butylsalicylaldoxime plotted.It was shown that sorption intensity of 5-alkylsalicylaldoximes on the surface of minerals decreased in the order: smithsonite, sphalerite and dolomite.Relationship between length of aliphatic chain and collecting activity of 5-alkylsalicylaldoximes was investigated in microflotation tests in a Hallimond tube.5-Propylsalicylaldoxime proved to have the best selectivity in flotation for the range of parameters studied, taking the difference in flotation rates of smithsonite and dolomite as a criterion.It was found that modifications of pH value resulted in changes in both adsorption and flotation.  相似文献   
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Our GIS based project aims at producing a classification scheme to develop a typology of the bottom of the Bay of Gdansk in the southern Baltic. The typology was based on the abiotic factors which are used to define water body types by the European Water Framework Directive (WFD). Significance analysis of particular factors has shown that within the discussed area wave exposure seems to play the most important role. All other factors are to a greater or lesser degree correlated with these two. Taking into consideration the shallows and the varied coastline of the investigated area it was decided to make use of the SWAN numerical wave model to determine the influence of wave impact upon the bottom. The model was used to produce raster maps of orbital velocity near the bottom for each wind scenario. With the help of the GIS analysis the maps were turned into layers: the mean velocity and the maximum velocity at the bottom. To produce the layer of yearly amount of solar radiation a GIS model was built which main parameters were the layer of depth and three layers of turbidity for three seasons. The layers of the maximum orbital velocity and of the solar radiation at the bottom were then used in a classificatory procedure consisted in an iterative sequence of the three following steps: cluster formation, dendrogram analysis and classification using the maximum likelihood method. Ecological importance of the classification has been obtained by means of the aggregation of a part of classes based upon the statistics calculated for them within the GIS system with the help of the zonal function out of the following parameters: salinity, depth, mean and maximum orbital velocity at the bottom, temperature differences between warm and cold seasons, solar radiation, and type of sediments. The method proposed here makes it possible to produce high resolution thematic maps of the bottom even with incomplete data cover of the investigated area.  相似文献   
15.
The chemical composition of metamorphosed siliciclastic rocks in the Orlica-?nie?nik Dome (Bohemian Massif) identifies the main sources for the Neoproterozoic [the M?ynowiec Formation (MF)], Early Cambrian [the Stronie Formation (SF)] and Late Cambrian/Early Ordovician [the Goszów quartzites (GQ)] sediments. The MF developed from erosion of a Cadomian magmatic arc along the northern Gondwana margin. The variegated SF, with supra-subduction affinities, shows chemical characteristics pointing to erosion of the freshly exhumed Cadomian orogen and detritus deposition in the back-arc basin. The very different chemical features of the GQ indicate deposition in a basin sited on a passive continental margin. The explanation proposed for the observed changes in chemical composition involves three main stages: (1) The pre ~540 Ma evolution of an active continental margin and related back-arc basin ceased with the collision and accretion of the magmatic arc to the Gondwana margin; (2) Early Cambrian rift to drift transition (540–500 Ma) and development of a depositional basin filled with detritus derived from remnants of the magmatic arc; (3) Peri-Gondwana break-up leading to the formation of shallow-water passive margin depositional basins filled with quartz-rich detritus resembling Early Ordovician Armorican quartzites known from other parts of the Variscan Belt.  相似文献   
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The Kamieniec Metamorphic Belt comprises a volcano-sedimentary succession exposed within a collision zone between the Saxothuringian and Brunovistulian crustal domains of the European Variscides. The studied rocks recorded two metamorphic episodes. The first episode, M1, occurred at conditions of c. 485 ± 25 °C and 18 ± 1.8 kbar related to burial within a subduction zone. The subsequent episode, M2, was linked to the final phases of exhumation to mid-crustal level, associated with pressure and temperature (P–T) conditions ranging from c. 520 ± 26 °C and 6 ± 0.6 kbar through 555 ± 28 °C and 7 kbar ± 0.7 to ~590 ± 30 °C and 3–4 ± 0.4 kbar. The documented deformation record is ascribed to three events, D1 to D3, interpreted as related to the burial and subsequent exhumation of the Kamieniec Metamorphic Belt. The D1 event must have witnessed the subduction of the Kamieniec Metamorphic Belt rock succession whereas the D2 event was associated with the exhumation and folding of the Kamieniec Metamorphic Belt in an E-W-directed shortening regime. A subsequent folding related to the D2 event was initiated at HP conditions, however, the planar fabric produced during a late stage of the D2 event, defined by a low-pressure mineral assemblage M2, indicates that the D2 final stage was synchronous with the onset of the M2 episode. Consequently, the entire D2 event seems to have been associated with the exhumation of the Kamieniec Metamorphic Belt to mid crustal level. The third deformation event D3, synchronous with the M2 episode, marked the last stage of the exhumation, and was linked to emplacement of granitoid veins and lenses. The latter resulted in heating and rheological weakening of the entire rock succession and in the formation of non-coaxial shear zones.  相似文献   
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An example of groundwater resources evaluation methodology by numerical modeling in the complex, unconsolidated, multi-aquifer system of the Swidnica area (~627 km2) is presented. In this study Groundwater Modeling System (GMS) was used to develop a conceptual model on the basis of data from several hundred boreholes and to calibrate a numerical, multi-aquifer model. A steady state calibration was performed using historical natural groundwater table (quasi-natural simulation) data and abundant pumping test transmissivity data. The calibrated recharge was first spatially distributed based on surface lithology and then adjusted until a good match between calculated and measured heads was obtained. The quasi-natural simulation budget input of ~165,000 m3/day consisted of 40.5% of lateral inflow from the SW fault model boundary, 34.5% of average net recharge from precipitation, 13% of infiltration from the Mietkowskie Lake and 12% of river infiltration. The budget output (the same as input) consisted of ~ 88% of river drainage and ~ 12% of lateral outflow. The final, abstraction-influenced simulation representing the current stationary condition was used to verify the model by cross referencing present well drawdowns with well abstractions and by comparison of the groundwater discharge to the rivers with the field baseflow measurements. In this simulation, the total well abstraction of ~53,000 m3/d resulted in 9% increase in overall water balance up to ~180,000 m3/day, 38% increased river infiltration, 24% reduced river drainage, 17% reduced lateral outflow and ~3 times increased downward leakage to the deepest, productive aquifer. The Swidnica study case shows an example, which analyzes an impact of well abstractions on the decline of groundwater table and river discharges, concluding that reserves of renewable water resources are still available. It shows also, that by setting up a conceptual model within the numerical model environment and by applying a quasi-3D solution, complex multi-aquifer systems can be well and efficiently modeled.
Resumen Se presenta un ejemplo de metodología de evaluación de recursos de aguas aubterráneas por medio de modelación numérica en el sistema multi-acuífero, complejo, no consolidado del área de Swidnica (~627 km2). Em este estudio se utilizó un sistema de modelamiento de aguas subterráneas (GMS) para desarrollar un modelo conceptual sobre la base de datos de varios cientos de pozos y para calibrar un modelo multi-acuífero numérico. Se llevó a cabo calibración de un estado constante mediante el uso de datos históricos del manto de aguas subterráneas (simulación casi natural) y de abundantes datos de transmisividad de las pruebas de bombeo. En primer lugar se distribuyó la recarga calibrada en base a la litología de superficie y luego se ajustó hasta obtener una buena correlación entre las cimas calculadas y las medidas. El casi natural presupuesto en la simulación de ~165,000 m3/día consistió de 40.5 % de influjo lateral del límite del modelo de la falla SO, 34.5% de recarga neta promedio de precipitación, 13 % de infiltración del lago Mietkowskie y 12% de infiltración de los ríos. El presupuesto de los productos (output) (igual que el input)consistió de ~ 88 % de drenaje de los ríos y ~ 12 % de flujo lateral. La simulación final, influida por la abstracción, que representa la condición estacionaria actual se utilizó para verificar el modelo mediante la verificación cruzada de los conos de abstracción actuales con abstracciones de los pozos y mediante la comparación de la descarga de aguas subterráneas a los ríos con las medidas de flujo de base de terreno. En esta simulación, la abstracción total de los pozos de ~53,000 m3/d dio como resultado un incremento de 9 % en el balance de gua total de hasta ~180,000 m3/día, un incremento de 38 % infiltración de los ríos, una reducción de 24 % del drenaje a los ríos, una reducción de 17 % del eflujo lateral y un incremento de ~3 veces de filtración hacia abajo al acuífero má profundo productivo. El caso de estudio Swidnica muestra un ejemplo que analiza el impacto de las instalaciones de abstraccion de pozos sobre el decrecimiento del mato de aguas subterráneas y descargas de ríos. Sin embargo, la conclusión es que las reservas de recursos aguas renovables están disponibles todavía. También muestra que los sistemas multi-acuíferos complejos se puede modelar eficientemente y satisfactoriamente al establecer un modelo conceptual dentro del ambiente de un modelo numérico y mediante la aplicación de soluciones casi 3D.

Resumé Un exemple méthodologique dévaluation des ressources en eau souterraine par modélisation numérique dun système aquifère multiple complexe et non-consolidé de la région de Swidnica (~627 km2) est présenté. Le système de modélisation de leau souterraine GMS (Groundwater Modeling System) est utilisé afin de développer un modèle conceptuel basé sur les données provenant de plusieurs centaines de puits, ainsi que pour caler le modèle numérique daquifère multiple. Une calibration en régime permanent a été effectuée en utilisant les données historiques du niveau naturel de la nappe phréatique (simulation quasi-naturelle) et les données de transmissivité provenant de nombreux essais de pompage. La recharge calibrée a été obtenue en utilisant dabord des valeurs spatiallement distribuées en fonction de la lithologie de surface qui ont par la suite été ajustées jusquà ce quune bonne correspondance entre les charges mesurées et simulées soit obtenue. Le bilan des intrants deau pour la simulation quasi-naturelle de ~165,000 m3/j est réparti comme suit: 40.5% provenant dentrée deau latérale le long de la limite sud-ouest du modèle qui représente une faille, 34.5% de recharge moyenne nette provenant des précipitations, 13% dinfiltration provenant du lac Mietkowskie et 12% dinfiltration provenant de rivières. Le bilan des extrants deau qui forme le même volume que les intrants est réparti entre ~88% de drainage par les rivières et ~12% découlement latéral. La simulation finale influencée par le captage qui représente les conditions actuelles a été utilisée afin de vérifier le modèle en comparant le rabattement actuel avec le captage des puits et en comparant lécoulement deau vers les rivières avec les valeurs découlement de base des rivières mesurées sur le terrain. Dans cette simulation, le total deau pompé (~53,000 m3/j) produit une augmentation de 9% dans le bilan deau total qui devient ~180,000 m3/j, une augmentation de 38% dinfiltration par les rivières, une réduction de 24% du drainage par les rivières, une réduction de 17% de lécoulement de sortie latéral et une augmentation denviron 3 fois du drainage vers le bas vers laquifère le plus productif. Létude de cas de Swidnica montre un exemple qui analyse limpact dinstallation de puits de captage sur le déclin de la nappe phréatique et sur la décharge dans les rivières, en concluant par contre, que les réserves en eau renouvelable sont toujours disponibles. Cet exemple montre également quen construisant un modèle conceptuel avec un environnement de modèle numérique et quen appliquant une solution quasi 3D, les systèmes multiaquifères complexes peuvent être bien et efficacement modélisés.
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