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51.
52.
Data from the East Greenland Current in 2002 are evaluated using optimum multiparameter analysis. The current is followed from north of Fram Strait to the Denmark Strait Sill and the contributions of different source waters, in mass fractions, are deduced. From the results it can be concluded that, at least in spring 2002, the East Greenland Current was the main source for the waters found at the Denmark Strait Sill, contributing to the overflow into the North Atlantic. The East Greenland Current carried water masses from different source regions in the Arctic Ocean, the West Spitsbergen Current and the Greenland Sea. The results agree well with the known circulation of the western Nordic Seas but also add knowledge both to the quantification and to the mixing processes, showing the importance of the locally formed Greenland Sea Arctic Intermediate Water for the East Greenland Current and the Denmark Strait.  相似文献   
53.
The aliphatic, aromatic and polar (NSO) fractions of seabed petroleums and sediment bitumen extracts from the Guaymas Basin hydrothermal system have been analyzed by gas chromatography and gas chromatography-mass spectrometry (free and silylated). The oils were collected from the interiors and exteriors of high temperature hydrothermal vents and represent hydrothermal pyrolyzates that have migrated to the seafloor by hydrothermal fluid circulation. The downcore sediments are representative of both thermally unaltered and thermally altered sediments. The survey has revealed the presence of oxygenated compounds in samples with a high degree of thermal maturity. Phenols are one class of oxygenated compounds found in these samples. A group of methyl-, dimethyl- and trimethyl-isoprenoidyl phenols (C27-C29) is present in all of the seabed NSO fractions, with the methyl- and dimethyl-isoprenoidyl phenols occurring as major components, and a trimethyl-isoprenoidyl phenol as a minor component. A homologous series of n-alkylphenols (C13-C33) has also been found in the seabed petroleums. These phenols are most likely derived from the hydrothermal alteration of sedimentary organic matter. The n-alkylphenols are probably synthesized under hydrothermal conditions, but the isoprenoidyl phenols are probably hydrothermal alteration products of natural product precursors. The suites of phenols do not appear to be useful tracers of high temperature hydrothermal processes.  相似文献   
54.
Four new U/Pb-zircon ages are reported from northern Vestranden, the northernmost part of the Western Gneiss Region of Norway, Scandinavian Caledonides. The age of a basement tonalite (1819±6 Ma), together with earlier datings on granites, indicates that the dominantly granitoid basement in Vestranden began to form more than 1800 Ma years ago. The minimum age of a subsequent Precambrian migmatization event is given by a U/Pb age of 1630±80 Ma found a granite dyke which cuts migmatitic veining in the basement gneisses. While age and lithology suggest general similarity and thereby favour a correlation between the basement granites of the northern part of Vestranden and Svecofennian granites farther to the east, no detailed chronological information is at present available that support such a correlation.No Sveconorwegian-Grenvillian ages have previously been reported from northern Vestranden. Also in the presently studied cases events between c. 1630 Ma and 430 Ma ago did not affect the U-Pb isotope system of zircons. About 430 Ma ago, substantial parts of Vestranden experienced Caledonian high-grade metamorphism and partial anatectic melting. Migmatite neosomes in northern Vestranden, yielded an U/Pb zircon age of 434±22 Ma. Relatively high temperatures persisted throughout much of the Silurian and probably into the Devonian. Large amounts of pegmatite intruded at the end of this period. One of these dykes yielded an U/Pb-zircon age of 404±2 Ma.
Zusammenfassung Vier neue U-Pb-Zirkonalter liegen aus dem nördlichen Vestranden-Bereich des westnorwegischen Gneissgebiets vor. Das Alter einer Tonalitintrusion (1819±6 Ma) bestätigt zusammen mit anderen Altersbestimmungen, daß das präkambrische Fundament der zentralskandinavischen Kaledoniden sich im Vestrandengebiet bereits vor mehr als 1800 Ma zu bilden begann. Das Minimalalter einer darauf folgenden präkambrischen Migmatisierung wird durch ein 1630±20 Ma Alter durchsetzender Granitgänge begrenzt. Zwar deuten die bisher vorliegenden Ergebnisse eine Gleichaltrigkeit der Granitgesteine im nördlichen Vestranden und den Svekofenniden weiter östlich an, ermöglichen aber derzeit noch keine präzise Korrelation des geologischen Geschehens.Sveconorwegische (Grenville) Isotopenalter sind bisher nicht aus dem nördlichen Vestranden bekannt. Auch die neuen Daten weisen keine Störung der U-Pb-Isotopensysteme zwischen etwa 1630 und 430 Ma auf.Beträchtliche Teile des Vestrandenbereiches wurden vor ca. 430 Ma einer kaledonischen, höhergradigen Metamorphose und anatektischer Aufschmelzung unterworfen. Die Neosome eines Migmatites ergaben ein Alter von 434±22 Ma, was erneut die Existenz zweier verschiedener Migmatisierungsetappen im Präkambrium bzw. in Silur bestätigt. Höhere Temperaturen bestanden danach bis in das Devon. Größere Pegmatitmengen wurden am Ende dieser Zeitspanne gebildet. Einer dieser Pegmatitkörper ergab ein U-Pb-Zirkonalter von 404±2 Ma.

Résumé Cette note fait état de 4 nouvelles déterminations d'âge (méthode U/Pb sur zircon) dans le Vestranden septentrional, qui forme la partie nord de la région gneissique occidentale de la Norvège (Calédonides). L'âge d'une tonalite (1819±6 Ma), joint à des datations antérieures effectuées sur des granites, indique que la formation du socle granitoîde dans le Vestranden a commencé il y a plus de 1800 Ma. L'âge maximal d'une migmatitisation précambrienne ultérieure est donné par la mesure de 1630±80 Ma effectuée sur un dyke de granite qui recoupe le rubanement migmatitique. L'âge et la lithologie indiquent une similitude d'ensemble et, partant, suggèrent une corrélation entre les granites du nord du Vestranden et ceux des Svécofennides situés plus à l'est; toutefois, on ne dispose aujourd'hui d'aucune donnée chronologique à l'appui d'une telle corrélation.Jusqu'à présent, aucun âge svéconorvégien-grenvillien n'a été enregisré dans le Vestranden septentrional. De même, dans les cas étudiés ici, aucun événement n'a affecté le système isotopique U-Pb entre 1630 et 430 Ma. A environ 430 Ma, des parties importantes du Vestranden ont enregistré un métamorphisme calédonien de degré élevé et une fusion anatectique partielle. Les néosomes d'une migmatite ont fourni un âge U/Pb sur zircon de 434±22 Ma. Des températures relativement élevées se sont maintenues pendant la plus grande partie du Silurien et jusqu'au cours du Dévonien. De grandes quantités de pegmatite ont été intrudées à la fin de cette période; un de ces dykes a donné un âge U/Pb sur zircon de 404±2 Ma.

- - . 1819±6 . , , - 1800 . . , , 1630±80 . , . , .- - 1630-430 . . . 434=22 . . , , , ; , , -, 404=2 . .
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An erosional channel and upslope-climbing sediment waves have been observed in Ytre Orkdalsfjorden and the marine fjord branch Gaulosen off the mouth of Gaula River in Trondheimsfjorden, central Norway. The submarine channel (up to 100–150 m wide and 12 m deep) is interpreted as the pathway of hyperpycnal flows and turbidity currents. It can be traced for 20 km on the seafloor from the mouth of Gaula River down to 500 m of water depth. Based on swath bathymetry and seismic data, the sediment waves are shown to have an accumulated thickness of 50–60 m. They are up to 8 m high, have up to 1-km-long crests, and wavelengths of 100–900 m. The sediment waves are attributed to hyperpycnal flows and turbidity currents overflowing the banks of the channel. Many of the sediment waves were instigated by pre-existing topography created by mass movements since early Holocene times.  相似文献   
57.
The uptake of atmospheric carbon dioxide in the water transported over the Bering–Chukchi shelves has been assessed from the change in carbon-related chemical constituents. The calculated uptake of atmospheric CO2 from the time that the water enters the Bering Sea shelf until it reaches the northern Chukchi Sea shelf slope (1 year) was estimated to be 86±22 g C m−2 in the upper 100 m. Combining the average uptake per m3 with a volume flow of 0.83×106 m3 s−1 through the Bering Strait yields a flux of 22×1012 g C year−1. We have also estimated the relative contribution from cooling, biology, freshening, CaCO3 dissolution, and denitrification for the modification of the seawater pCO2 over the shelf. The latter three had negligible impact on pCO2 compared to biology and cooling. Biology was found to be almost twice as important as cooling for lowering the pCO2 in the water on the Bering–Chukchi shelves. Those results were compared with earlier surveys made in the Barents Sea, where the uptake of atmospheric CO2 was about half that estimated in the Bering–Chukchi Seas. Cooling and biology were of nearly equal significance in the Barents Sea in driving the flux of CO2 into the ocean. The differences between the two regions are discussed. The loss of inorganic carbon due to primary production was estimated from the change in phosphate concentration in the water column. A larger loss of nitrate relative to phosphate compared to the classical ΔN/ΔP ratio of 16 was found. This excess loss was about 30% of the initial nitrate concentration and could possibly be explained by denitrification in the sediment of the Bering and Chukchi Seas.  相似文献   
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60.
Fine-grained glaciomarine and glacial deposits on the outer Mid Norwegian continental shelf show complex variations in shear strength and degree of consolidation. At the Smørbukk Sør field (approx. 65°N, 7°E) about 80 m of variably overconsolidated clayey till is found on top of normally- or possibly underconsolidated glaciomarine and marine sediments. A high gas content is found below 60 m, and the porewater in the rather soft sediments in the lower part of the borehole may have been partly trapped by gas hydrates when the overlying hard till was deposited. The variations in geotechnical properties of the 80 m thick till section are suggested to result mainly from compaction below grounded ice during the last glaciation, and we interpret the strength variations in the till to reflect shifts between freeze of sediment porewater onto the base of the ice causing highly overconsolidated intervals, and thermal equilibrium or melting at the ice sole resulting in intervals of softer till.A large ridge northwest of Smørbukk (Skjoldryggen) is probably partly formed by ice push during ice flow oscillations at the same time as the described till at Smørbukk was deposited. This ridge retarded the ice flow and hence the frictional heating at the end of surges, creating pulses of net freezing base ice and consolidation of the substratum. The described process has possibly affected a wide area up-ice of Skjoldryggen, and may be common in areas with a complex glacial history and a fine-grained substratum.  相似文献   
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