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Dataset related to "Cascading Rupture of a Megathrust" submitted to Science Advance.

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DataCite Commons2022-03-16 更新2024-07-29 收录
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https://figshare.com/articles/dataset/Coseismic_slip_model_for_the_2021_M8_2_Chignik_earthquake/19323386
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This dataset includes 16 files related to Cascading Rupture of a Megathrust, in Science Advances (Elliott et al., 2022). They are:<br>1. 2021_Chignik_fault_geometry: The file contains the fault geometry used in our model inversion for the Chignik earthquake. Every row represents a subfault and the the latitude, longitude, and depth are given for each corner of the subfault.<br>2. 2021_Chignik_FFM_slip_txt: The file lists the slip predicted by our preferred Chignik earthquake model at the center of each subfault.<br>3. 2021_Chignik_FFM_slip_grd: The slip model in GMT grd format<br>4. 2020_Sandpoint_fault_geometry: The file contains the fault geometry used in our model inversion for the Sand Point earthquake. Every row represents a subfault and the the latitude, longitude, and depth are given for each corner of the subfault.<br>5. 2020_Sandpoint_FFM_slip_txt: The file lists the slip predicted by our preferred Sand Point earthquake model at the center of each subfault.<br>6. 2020_Sandpoint_FFM_slip_grd: The slip model in GMT grd format<br>7. F4a-Mu-01.txt: Predicted Coulomb stress change due to the 2020 Simeonof earthquake projected onto the megathrust as shown in Figure 4a. Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.1) at the longitude and latitude given.<br>8. F4b-Mu-04.txt: Predicted Coulomb stress change due to the 2020 Simeonof earthquake projected onto the megathrust as shown in Figure 4b. Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.4) at the longitude and latitude given.<br>9. F4c-CroSec-Mu-01.txt: Vertical profiles of predicted Coulomb stress change due to the 2020 Simeonof earthquake as shown in Figure 4c. Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.1) at the XYZ coordinates given.<br>10. F4d-CroSec-Mu-04.txt: Vertical profiles of predicted Coulomb stress change due to the 2020 Simeonof earthquake as shown in Figure 4d. Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.4) at the XYZ coordinates given.<br>11. F5a-Mu-01.txt: Predicted Coulomb stress change due to the 2021 Chignik earthquake projected onto the megathrust as shown in Figure 5a. Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.1) at the longitude and latitude given.<br>12. F5b-Mu-04.txt: Predicted Coulomb stress change due to the 2021 Chignik earthquake projected onto the megathrust as shown in Figure 5b. Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.4) at the longitude and latitude given.<br>13. S12A-normal.txt: Predicted Coulomb normal and shear stress change due to the 2020 Simeonof earthquake as shown in Figure S12a. Each row contains the predicted total stress change, shear component of stress change, and normal component of stress change in bars at the XYZ coordinates given.<br>14. S12B-CroSec.txt: Vertical profiles of predicted normal and shear Coulomb stress change due to the 2020 Simeonof earthquake as shown in Figure S12b. Each row contains the predicted total stress change, shear component of stress change, and normal component of stress change in bars at the XYZ coordinates given.<br>15. S17A-Mu-01.txt: Predicted Coulomb stress change due the 2020 Sand Point earthquake as shown in Figure S17 (left). Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.1) at the XYZ coordinates given.<br>16. S17B-Mu-04.txt: Predicted Coulomb stress change due the 2020 Sand Point earthquake as shown in Figure S17 (right). Each row contains the predicted stress change in bars (assuming coefficient of friction of 0.4) at the XYZ coordinates given.<br>
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figshare
创建时间:
2022-03-08
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