HR: 16:15h
AN: S34A-02 [Abstracts]
TI: Response of Seismometer with Symmetric Triaxial Sensor Configuration to Complex Ground Motion
AU: * Graizer, V
EM: vgraizer@consrv.ca.gov
AF: California Geological Survey, 801 K Street, MS 12-32, Sacramento, CA 95814,
AB:
Most instruments used in seismological practice to record ground motion in all directions use three sensors
oriented toward North, East and upward. In this standard configuration horizontal and vertical sensors differ in
their construction because of gravity acceleration always applied to a vertical sensor. An alternative way of
symmetric sensor configuration was first introduced by Galperin (1955) for petroleum exploration. In this
arrangement three identical sensors are also positioned orthogonally to each other but are tilted at the same
angle of 54.7 degrees to the vertical axis (triaxial system of coordinate balanced on its corner). Records obtained
using symmetric configuration must be rotated into an earth referenced X, Y, Z coordinate system. A number of
recent seismological instruments (e.g., broadband seismometers Streckeisen STS-2, Trillium of Nanometrics
and Cronos of Kinemetrics) are using symmetric sensor configuration. In most of seismological studies it is
assumed that rotational (rocking and torsion) components of earthquake ground motion are small enough to be
neglected. However, recently examples were shown when rotational components are significant relative to
translational components of motions. Response of pendulums installed in standard configuration (vertical and
two horizontals) to complex input motion that includes rotations has been studied in a number of publications. We
consider the response of pendulums in a symmetric sensor configuration to complex input motions including
rotations, and the resultant triaxial system response. Possible implications of using symmetric sensor
configuration in strong motion studies are discussed. Considering benefits of equal design of all three sensors
in symmetric configuration, and as a result potentially lower cost of the three-component accelerograph, it may be
useful for strong motion measurements not requiring high resolution post signal processing. The disadvantage
of this configuration is that if one of the sensors is not working properly or there is a misalignment of sensors, it
results in degradation of all three components. Symmetric sensor configuration requires identical processing of
each channel putting a number of limitations on further processing of strong motion records.
DE: 7200 SEISMOLOGY
DE: 7212 Earthquake ground motions and engineering seismology
DE: 7294 Seismic instruments and networks (0935, 3025)
SC: Seismology [S]
MN: 2007 Fall Meeting