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11.
Dieter Lorenz-Petzold 《Astrophysics and Space Science》1984,103(2):395-396
We wish to point out that the anisotropic LRS-BDT-Bianchi type-V vacuum solution recently given by Ram and Singh is wrong. Moreover, the correct solution is nothing but an isotropic FRW (k=–1) solution given by us previously. 相似文献
12.
Data collected every 20 minutes for 18 months by a meteorological buoy moored on Lake Sempach in Switzerland (maximum depth
86 m, surface area 14.1 km2) are used to calculate different processes contributing to the net heat flux between water and atmosphere. The processes
considered are shortwave and longwave radiation, evaporation/condensation and sensible heat transfer. The temporal resolution
of the measurements allows the evaluation of the processes occurring on three different time scales: diurnal variations, weather
events of a few days and yearly cycles. The heat content of the lake is calculated from quasi-continuous measurements of water
temperature at different depths. The yearly amplitude of the heat content is 1100·106 J/m2. Short-time variations of the heat flux determined from water temperature analysis agree well with the flux variations modeled
using meteorological data. However, the latter generally underestimates the measured net heat flux in the long term. Wind
measurements, together with the net heat flux, are used to calculate the Flux Richardson Number and the Monin-Obukov Length.
Examples are given to show the predominant influence of the wind on the stratification of the upper water column and thus
on the surface water temperature.
相似文献
13.
The fractionation of the oxygen isotopes between water molecules from different sites in CuSO4 · 5H2O has been measured for crystallization temperatures of 25, 40 and 50°C. The temperature dependence found provides a basis for the determination of crystallization temperatures from such intracrystalline oxygen isotope effects; also for hydrated crystals of mineralogical and geological interest. Necessary suppositions for the application of this method are discussed. 相似文献
14.
The palynological contents as well as macroscopic charcoal fragments from a calcareous sandstone pebble from Quaternary glacial deposits of the North Sea (80 km SW of the Dogger Bank) are described. The taxonomic composition of the palynoflora points to a Late Jurassic (or Late Jurassic/Early Cretaceous) age of the sandstone. The charcoal is interpreted as direct evidence of palaeo‐wildfire occurring during this period in the source area of the sediments of this particular sandstone. This finding, together with already published data on Mesozoic deposits, allows to conclude that wildfires were obviously widespread during this period in the area of the modern day North Sea and adjacent areas. Copyright © 2012 John Wiley & Sons, Ltd. 相似文献
15.
Gondwana breakup: no evidence for a Davie Fracture Zone offshore northern Mozambique,Tanzania and Kenya 总被引:1,自引:0,他引:1 下载免费PDF全文
Plate tectonic reconstructions assume a major inactive transform fault, the Davie Fracture Zone, in the West Somali Basin, along which Madagascar is thought to have migrated southwards following Gondwana breakup in the Mesozoic. Based on the interpretation of reflection seismic data, we show that the Walu Ridge offshore Kenya and the Kerimbas Basin offshore northern Mozambique are tectonically unrelated to the southward motion of Madagascar and correlate with Late Cretaceous volcanism and inversion in Kenya and the evolution of the East African Rift System respectively. Offshore Tanzania, geophysical data do not show basement structures indicating the presence of a major transform fault. These results challenge the commonly supported transform margin concept and imply a more southerly pre‐breakup position of Madagascar within Gondwana. Opening of the West Somali Basin by SW‐propagating oblique rifting and seafloor spreading is proposed. 相似文献
16.
17.
Christian Timm Kaj Hoernle Reinhard Werner Folkmar Hauff Paul van den Bogaard James White Nick Mortimer Dieter Garbe-Schönberg 《Earth》2010,98(1-2):38-64
In order to constrain better the distribution, age, geochemistry and origin of widespread Cenozoic intraplate volcanism on Zealandia, the New Zealand micro-continent, we report new 40Ar/39Ar and geochemical (major and trace element and Sr–Nd–Hf–Pb isotope) data from offshore (Chatham Rise, Campbell and Challenger Plateaus) and onland (North, South, Auckland, Campbell, Chatham and Antipodes Islands of New Zealand) volcanism on Zealandia. The samples include nephelinite, basanite through phonolite, alkali basalt through trachyte/rhyolite, and minor tholeiite and basaltic andesite, all of which have ocean island basalt (OIB)-type trace element signatures and which range in age from 64.8 to 0.17 Ma. Isotope ratios show a wide range in composition (87Sr/86Sr = 0.7027–0.7050, 143Nd/144Nd = 0.5128–0.5131, 177Hf/176Hf = 0.2829–0.2831, 206Pb/204Pb = 18.62–20.67, 207Pb/204Pb = 15.54–15.72 and 208Pb/204Pb = 38.27–40.34) with samples plotting between mid-ocean-ridge basalts (MORB) and Cretaceous New Zealand intraplate volcanic rocks.Major characteristics of Zealandia's Cenozoic volcanism include longevity, irregular distribution and lack of age progressions in the direction of plate motion, or indeed any systematic temporal or spatial geochemical variations. We believe that these characteristics can be best explained in the context of lithospheric detachment, which causes upwelling and melting of the upper asthenospheric mantle and portions of the removed lithosphere. We propose that a large-scale seismic low-velocity anomaly, that stretches from beneath West Antarctica to Zealandia at a depth of > 600 km may represent a geochemical reservoir that has been in existence since the Cretaceous, and has been supplying the upper mantle beneath Zealandia with HIMU-type plume material throughout the Cenozoic. In addition, the sources of the Cenozoic intraplate volcanism may be at least partially derived through melting of locally detached Zealandia lower lithosphere. 相似文献
18.
Dieter Richter 《International Journal of Earth Sciences》1962,51(2):574-600
Zusammenfassung Die bereits kaledonisch gefalteten Massive in den Ardennen wurden von der variscisdien Tektogenese (asturische Phase) mehr oder weniger überprägt. Vorstellungen über diese Überprägung älterer Strukturen und deren Vergitterung mit jüngeren Verformungsrichtungen sowie über den Einfluß der kaledonischen Kerne (Unterstockwerk) auf das Faltenstreichen der devonischen Mantel-Schichten (Oberstockwerk) lassen sich vor allem in der Antiklinalzone der Hochardennen im Massiv von Rocroi, im Massiv von Serpont und im Massiv von Stavelot gewinnen.
Résumé Les massifs des Ardennes, déjà plissés à l'ère caledonienne furent plus ou moins remaniés par la tectogénèse hercynienne (phase asturienne). C'est surtout dans la zone anticlinale des hautes Ardennes, dans le massif de Rocroi, dans le massif de Serpont et dans le massif de Stavelot qu'on peut se faire une idée en bons affleurements de ce remaniement de structures plus anciennes et de leurs interférences avec des directions de déformation plus jeunes ainsi que de l'influence des anciens massifs calédoniens (étage inférieur) sur la direction du plissement des couches de revêtement dévoniennes (étage supérieur).Dans ces massifs, les couches du dévonien sont plus ou moins fortement plissés ou disposés par écailles avec le socle calédonien. Dans le massif de Rocroi, dans le massif de Serpont et dans la partie ouest du massif des Stavelot les couches du socle présentent des structures qui sont totalement différentes des couches de revêtement dévoniennes et coupé de façon discordante des couches gedinniennes inférieures.Dans le massif de Rocroi et surtout dans le massif de Serpont, la tectogénèse hercynienne a exercé le même effet que l'orogénèse calédonienne plus ancienne sous l'influence d'un plan d'efforts semblable orienté Nord-Sud. L'auteur, à l'aide d'un exemple, celui du massif de Serpont, essaye d'analyser la structure du plissement calédonien originel déroulement des plis des couches gedinniennes et reformation constructive de la déformation conditionnée par le clivage hercynien.A la différence des deux massifs occidentaux, dans le massif de Stavelot, les structures de plissement calédoniens orientées d'est en ouest furent remaniées sous angle oblique par la tectogénèse hercynienne. Ce mouvement a entraîné, à différents endroits, le déplacement des axes calédoniens en direction hercynienne. C'est ce qui a produit un style de mouvement et de structure étranger aux autres massifs. Le fort rétrécissement hercynien eut pour conséquence des charriages à différents endroits.相似文献
19.
Dieter Prümm 《Boundary-Layer Meteorology》1974,6(1-2):341-347
From measurements during the Atlantic Trade Wind Experiment (ATEX) 1969, amplitudes and phases of the diurnal harmonic water-temperature variation between the sea surface and 50-m depth and of the semi-diurnal wind variation between 1 and 8 m were obtained. If the vertical diffusion of heat in the ocean is thought to be constant, a coefficient of K= 320 cm2 s–1 in the equation of diffusion fits best the observed data in the mixed layer. However, the measurements point to a decrease of K with depth.The height variation of the semi-diurnal zonal wind wave is caused by the influence of eddy viscosity. Our data are well fitted by results of the equation of diffusion, using the assumption of Lettau (1974) that the transfer coefficient of vertical transport of momentum is not only a function of height but also depends on time because of the semi-diurnal variation of surface stress. 相似文献
20.
Günther A. Wagner Lutz Christian Maul Manfred Löscher H. Dieter Schreiber 《Quaternary Science Reviews》2011,30(11-12):1464-1473
The mandible of Homo heidelbergensis was found 1907 in the sand pit Grafenrain at Mauer in coarse fluvial sands 24 m below the surface, deposited in a former course of the Neckar River. These ‘Mauer sands’ are overlain by a series of glacial-climate loess deposits with intercalated interglacial palaeosols, which can be correlated with Quaternary climate history, thus indicating an early Middle Pleistocene age for H. heidelbergensis. The ‘Mauer sands’ are famous for their rather rich mammal fauna, which clearly indicates interglacial climate conditions. The faunal evidence – in particular the micromammals – place the ‘Mauer sands’ into MIS 15 or MIS 13 although most stratigraphic arguments favour correlation to MIS 15 and therefore to an age of ca 600 ka. 相似文献