Geophysical Monitoring for Geologic Carbon Storage. Группа авторов
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Название: Geophysical Monitoring for Geologic Carbon Storage

Автор: Группа авторов

Издательство: John Wiley & Sons Limited

Жанр: География

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isbn: 9781119156840

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СКАЧАТЬ the 25‐station network. Lower travel time error results in better location results (Fig. 4.6 b vs. f and d vs. h). S‐wave arrivals provide important constraint on the event location, particularly the depth (Fig. 4.6 d vs. b and h vs. f).

      4.3.3. Location Accuracy for Different Surface Seismic Networks

Schematic illustration of the initial (blue dots) and relocated (red dots) microseismic events obtained using different distributions of seismic stations (green triangles) for the synthetic study in Figure 4.4. Schematic illustration of the initial (blue dots) and relocated (red dots) microseismic events obtained using 25 seismic stations (green triangles) for the synthetic study in Figure 4.4. Schematic illustration of event location accuracy versus the total number of seismic stations: (a) mean horizontal location errors, (b) mean vertical location errors, (c) mean location errors, (d) mean location errors normalized relative to the error obtained with five seismic stations. Schematic illustration of (a,b) two examples of the irregularly distributed 25 seismic stations (green triangles). Schematic illustration of comparison between mean event location accuracy for regularly spaced 25 seismic stations (red dot) and irregularly spaced 25 seismic stations (blue dots).