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This paper documents the occurrence of strong fortnightly oscillations in the Adriatic Sea frequently observed in the current
measurements. For that purpose, we analyzed half-decadal sea level series and long-term currents collected within different
parts and layers of the Adriatic Sea. Harmonic analysis and band-pass filter with cutoff periods at 10 and 20 days have been
applied to the series. The sea level Mf tide is found to be the only significant tidal constituent over periods between the
diurnal and semi-annual ones, having no significant phase variations in the Adriatic Sea. Moreover, the currents on periods
between 10 and 20 days could only partially be explained by atmospheric forcing. The fact that they are in-phase with the
Mf tide gives a hint on a possible mechanism responsible for the generation of these oscillations. Additionally, these currents
are usually strongly amplified during a weakly stratified season, indicating a baroclinic mechanism responsible for the multiplication
of the fortnightly currents. 相似文献
443.
M. Radulian L. Ardeleanu P. Campus J. Šílený G. F. Panza 《Studia Geophysica et Geodaetica》1996,40(4):367-380
Summary The inversion of high-frequency seismograms is performed to retrieve source mechanisms, hypocentral depths and source time functions of two weak Vrancea earthquakes (ML=3.3), one that occurred in the crust, the other in the lithospheric part of the mantle. The digital waveforms recorded by the local Romanian network are used. Synthetic seismograms are computed by the modal summation method, using the point source approximation, for horizontally layered anelastic media. For each source-to-station path a different structural model is adopted which represents the best 1-D approximation of the medium in this azimuth. Thus, lateral inhomogeneities are taken into account in a simplified way. The source is described by the full moment tensor, allowing both deviatoric and volumetric components to be resolved.Although the structural models are simplified for the range of epicentral distances (15<<<170 km) considered, we find that the fit between the synthetic and observed seismograms is satisfactory for frequencies less than a few Hz. The few P-wave polarities available are not sufficient to determine a reliable source mechanism by standard methods, while the waveform inversion allows us to retrieve source mechanisms that are stable with respect to different boundary conditions and in good agreement with the observed polarities. The source time function is the less stable inverted parameter, being the most influenced by the simplification of the structural models. 相似文献
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Studia Geophysica et Geodaetica - Приводится оценка зим в... 相似文献