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The interaction between displacement waveform and delamination is explored.
(D) Displacement waveform (solid line) obtained from the integration of the de-trended velocity waveform.
To investigate the velocity and acceleration of the finger movement, we calculated their waveforms from the measured displacement waveform.
The corrected displacement waveform shows a remarkable match with the high-sampling GPS displacement record at CONZ (Fig. 6(D)).
Finally, we can calculate the displacement waveform by integrating the frequency- and trend-compensated velocity signal as shown in Fig. 4(f).
(9)Here, u(t) is the displacement waveform, and e(t) is the acceleration envelope, in the frequency range 0.1 10 Hz.
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(bottom) Comparison of observed displacement waveforms (black traces) and synthetic displacement waveforms (red traces).
Displacement waveforms are filtered between 75 and 200 s.
Fig. 6 Displacement waveforms at station OIT009 modeled by using waveforms at smaller-sized events.
Nevertheless, the synthetic velocity and displacement waveforms explained the phases in the observed waveforms well.
In near-field waveform data processing, we integrated acceleration or differentiated displacement waveforms to velocity.
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