Understanding mechanisms controlling fluid injection-triggered seismicity is key in defining strategies to ameliorate it. Recent triggered events (e.g. Pohang, Mw 5.5) have exceeded predictions of average energy release by a factor of >1000x, necessitating robust methodologies to both define critical antecedent conditions and to thereby constrain anticipated event size. We define maximum event magnitudes resulting from triggering as a function of pre-existing critical stresses and fluid injection volume. Fluid injection experiments on prestressed laboratory faults confirm these estimates of triggered moment magnitudes for varied boundary conditions and injection rates. In addition, observed ratios of shear slip to dilation rates on individual faults signal triggering and may serve as a measurable proxy for impending rupture. This new framework provides a robust method of constraining maximum event size for preloaded faults and unifies prior laboratory and field observations that span sixteen decades in injection volume and four decades in length scale.

Constraining maximum event magnitude during injection-triggered seismicity / Li, Z.; Elsworth, D.; Wang, C.; Boyd, L.; Frone, Z.; Metcalfe, E.; Nieto, A.; Porse, S.; Vandermeer, W.; Podgorney, R.; Huang, H.; Mcling, T.; Neupane, G.; Chakravarty, A.; Cook, P. J.; Dobson, P. F.; Doughty, C. A.; Guglielmi, Y.; Hopp, C.; Hu, M.; Jayne, R. S.; Johnson, S. E.; Kim, K.; Kneafsey, T.; Nakagawa, S.; Newman, G.; Petrov, P.; Primo, J. C.; Robertson, M.; Rodriguez-Tribaldos, V.; Rutqvist, J.; Schoenball, M.; Sonnenthal, E. L.; Soom, F. A.; Sprinkle, S.; Ulrich, C.; Valladao, C. A.; Wood, T.; Zhang, Y. Q.; Zhou, Q.; Huang, L.; Chen, Y.; Chen, T.; Chi, B.; Feng, Z.; Frash, L. P.; Gao, K.; Jafarov, E.; Karra, S.; Makedonska, N.; Li, D.; Li, J.; Pawar, R.; Welch, N.; Fu, P.; Mellors, R. J.; Morency, C. E.; Morris, J. P.; Sherman, C. S.; Smith, M. M.; Templeton, D.; Wagoner, J. L.; White, J.; Wu, H.; Moore, J.; Brown, S.; Crandall, D.; Mackey, P.; Paronish, T.; Workman, S.; Johnston, B.; Beckers, K.; Weers, J.; Polsky, Y.; Maceira, M.; Chai, C. P.; Bonneville, A.; Burghardt, J. A.; Horner, J.; Johnson, T. C.; Knox, H.; Knox, J.; Roberts, B. Q.; Sprinkle, P.; Strickland, C. E.; Thomle, J. N.; Vermeul, V. R.; White, M. D.; Blankenship, D.; Ingraham, M.; Myers, T.; Pope, J.; Schwering, P.; Foris, A.; King, D. K.; Feldman, J.; Lee, M.; Su, J.; Baumgartner, T.; Heise, J.; Horn, M.; Pietzyk, B.; Rynders, D.; Vandine, G.; Vardiman, D.; Doe, T.; Mclennan, J.; Wu, Y. S.; Miskimins, J.; Winterfeld, P.; Kutun, K.; Zoback, M. D.; Singh, A.; Horne, R. N.; Li, K.; Hawkins, A.; Zhang, Y.; Mattson, E.; Elsworth, D.; Im, K. J.; Li, Z.; Marone, C. J.; Yildirim, E. C.; Ajo-Franklin, J.; Ghassemi, A.; Kumar, D.; Sesetty, V.; Vachaparampil, A.; Wang, H. F.; Sone, H.; Condon, K.; Haimson, B.; Roggenthen, W.; Medler, C.; Uzunlar, N.; Reimers, C.; Mcclure, M. W.. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 12:1(2021). [10.1038/s41467-020-20700-4]

Constraining maximum event magnitude during injection-triggered seismicity

Marone C. J.
Membro del Collaboration Group
;
2021

Abstract

Understanding mechanisms controlling fluid injection-triggered seismicity is key in defining strategies to ameliorate it. Recent triggered events (e.g. Pohang, Mw 5.5) have exceeded predictions of average energy release by a factor of >1000x, necessitating robust methodologies to both define critical antecedent conditions and to thereby constrain anticipated event size. We define maximum event magnitudes resulting from triggering as a function of pre-existing critical stresses and fluid injection volume. Fluid injection experiments on prestressed laboratory faults confirm these estimates of triggered moment magnitudes for varied boundary conditions and injection rates. In addition, observed ratios of shear slip to dilation rates on individual faults signal triggering and may serve as a measurable proxy for impending rupture. This new framework provides a robust method of constraining maximum event size for preloaded faults and unifies prior laboratory and field observations that span sixteen decades in injection volume and four decades in length scale.
2021
friction; earthquakes; seismology
01 Pubblicazione su rivista::01a Articolo in rivista
Constraining maximum event magnitude during injection-triggered seismicity / Li, Z.; Elsworth, D.; Wang, C.; Boyd, L.; Frone, Z.; Metcalfe, E.; Nieto, A.; Porse, S.; Vandermeer, W.; Podgorney, R.; Huang, H.; Mcling, T.; Neupane, G.; Chakravarty, A.; Cook, P. J.; Dobson, P. F.; Doughty, C. A.; Guglielmi, Y.; Hopp, C.; Hu, M.; Jayne, R. S.; Johnson, S. E.; Kim, K.; Kneafsey, T.; Nakagawa, S.; Newman, G.; Petrov, P.; Primo, J. C.; Robertson, M.; Rodriguez-Tribaldos, V.; Rutqvist, J.; Schoenball, M.; Sonnenthal, E. L.; Soom, F. A.; Sprinkle, S.; Ulrich, C.; Valladao, C. A.; Wood, T.; Zhang, Y. Q.; Zhou, Q.; Huang, L.; Chen, Y.; Chen, T.; Chi, B.; Feng, Z.; Frash, L. P.; Gao, K.; Jafarov, E.; Karra, S.; Makedonska, N.; Li, D.; Li, J.; Pawar, R.; Welch, N.; Fu, P.; Mellors, R. J.; Morency, C. E.; Morris, J. P.; Sherman, C. S.; Smith, M. M.; Templeton, D.; Wagoner, J. L.; White, J.; Wu, H.; Moore, J.; Brown, S.; Crandall, D.; Mackey, P.; Paronish, T.; Workman, S.; Johnston, B.; Beckers, K.; Weers, J.; Polsky, Y.; Maceira, M.; Chai, C. P.; Bonneville, A.; Burghardt, J. A.; Horner, J.; Johnson, T. C.; Knox, H.; Knox, J.; Roberts, B. Q.; Sprinkle, P.; Strickland, C. E.; Thomle, J. N.; Vermeul, V. R.; White, M. D.; Blankenship, D.; Ingraham, M.; Myers, T.; Pope, J.; Schwering, P.; Foris, A.; King, D. K.; Feldman, J.; Lee, M.; Su, J.; Baumgartner, T.; Heise, J.; Horn, M.; Pietzyk, B.; Rynders, D.; Vandine, G.; Vardiman, D.; Doe, T.; Mclennan, J.; Wu, Y. S.; Miskimins, J.; Winterfeld, P.; Kutun, K.; Zoback, M. D.; Singh, A.; Horne, R. N.; Li, K.; Hawkins, A.; Zhang, Y.; Mattson, E.; Elsworth, D.; Im, K. J.; Li, Z.; Marone, C. J.; Yildirim, E. C.; Ajo-Franklin, J.; Ghassemi, A.; Kumar, D.; Sesetty, V.; Vachaparampil, A.; Wang, H. F.; Sone, H.; Condon, K.; Haimson, B.; Roggenthen, W.; Medler, C.; Uzunlar, N.; Reimers, C.; Mcclure, M. W.. - In: NATURE COMMUNICATIONS. - ISSN 2041-1723. - 12:1(2021). [10.1038/s41467-020-20700-4]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1687642
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