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  • Mineral content  (1)
  • Modal summation  (1)
  • lateral heterogeneity  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Pure and applied geophysics 136 (1991), S. 529-560 
    ISSN: 1420-9136
    Keywords: Modal summation ; broad band ; Love waves ; anelasticity
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract We present an efficient scheme to compute high-frequency seismograms (up to 10 Hz) forSH-waves in a horizontally stratified medium with the mode summation method. The formalism which permits the computation of eigenvalues, eigenfunctions and related integral quantities is discussed in detail. Anelasticity is included in the model by using the variational method. Phase velocity, group velocity, energy integral and attenuation spectra of a structure enable the computation of complete strong motion seismograms, which are the basic tool for the interpretation of near-source broad-band data. Different examples computed for continental structures are discussed, where one example is the comparison between the observed transversal displacement recorded at station IVC for the November 4, Brawley 1976 earthquake and synthetic signals. In the case of a magnitudeM L =5.7 earthquake in the Friuli seismic area we apply the mode summation method to infer from waveform modeling of all three components of motion of observed data some characteristics of the source.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    Journal of seismology 1 (1997), S. 205-218 
    ISSN: 1573-157X
    Keywords: moment tensor ; waveform inversion ; modal summation ; explosions ; monitoring ; lateral heterogeneity ; point source ; source time function
    Source: Springer Online Journal Archives 1860-2000
    Topics: Geosciences , Physics
    Notes: Abstract The design of a monitoring system for detecting explosions is a very topical problem, both for routine data processing at seismological observatories as well as for the monitoring of a Comprehensive Test Ban Treaty. In this framework it is desirable to have the possibility to quantify the presence of the isotropic component in the seismic source. For this purpose a method is presented, which is based on waveform inversion for the full moment tensor retrieval. The method inverts either full waveforms or separate seismic phases and returns the mechanism and time history of a point source. Moreover, it allows to redefine the hypocentral depth of the event and, in a simplistic way, to optimize the structural model as well. In order to model strong laterally heterogeneous structures, different pairs of structural models can be used for each source-receiver path. The source is decomposed into a volumetric part (V), representing an explosive or implosive component, and into a deviatoric part, containing both the double couple (DC) and the compensated linear vector dipole (CLVD) components. The method is applied to an area in central Switzerland and to the network of the Swiss Seismological Service. The events of interest include both earthquakes and explosions. Despite some modelling inadequacies of the source-time function, the explosions can be well identified with the inverted isotropic component in the source, as long as the number of stations used for the inversion is larger than three. The results of the inversion are better for large epicenter-station distances of the order of 40–90 km.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Medical & biological engineering & computing 26 (1988), S. 349-354 
    ISSN: 1741-0444
    Keywords: Biomechanics ; Long bones ; Mineral content ; Phase velocity
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology , Medicine
    Notes: Abstract The determination of loss of bone mineral in an early stage of development is important. At the present time there exists no noninvasive or nonradiological methods which can be used for routine checks. An alternative method to obtain information about mineral content of bone is to measure the mechanical properties. A new method to measure the mechanical properties of long bones by means of the dispersion analysis of flexural waves is proposed. To be independent of the frequency spectrum of the impact pulse, the phase velocities were calculated from the signals of two accelerometers placed in vivo on the tibia. This method has the advantage that the velocities can be calculated for a frequency range. The results from this method were compared with the results from a well established measurement method for bone mineral content. Both methods were applied to 43 subjects selected in such a way that a broad range of bone mineral values was covered. The results imply that the proposed method can be used to test the mechanical properties of long bones.
    Type of Medium: Electronic Resource
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