Developing Ground Motion Shaking Map for Sarpol-e Zahab, Iran (۲۰۱۷) Earthquake

Publish Year: 1397
نوع سند: مقاله ژورنالی
زبان: English
View: 250

This Paper With 11 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

این Paper در بخشهای موضوعی زیر دسته بندی شده است:

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_JSEE-20-2_006

تاریخ نمایه سازی: 5 آبان 1400

Abstract:

Providing appropriate near real time ground motion shaking map is a critical requirement to effectively manage the consequence of an earthquake. In the present study, the standard procedure adopted by USGS ShakeMap to develop the ground motion shaking map is calibrated to implement in Iran. Selecting appropriate ground motion predictions equation and properly modeling of the local site condition are two important parameters that should be properly modeled to provide an appropriate ground motion shaking map. Here, a set of local, regional and global GMPEs that show good performance in the previous studies are adopted. Besides, the approach developed by Borcherdt [۱] is used to take into account the local site condition. The VS۳۰ of the region exploited from the proxy approach proposed by Wald and Allen [۲]. The study evaluates the potential applicability of this method by compiling a database of measured and estimated VS۳۰. The results indicate that the method outperforms than random selection of the site class. The calibrated model implements to generate the ground motion shaking map of the Sarpol-e Zahab, Iran earthquake (۲۰۱۷). The result shows that the approach performs better than employing GMPEs alone. The calibrated model can be used to generate the database of ground motion shaking of past earthquakes in Iran, which is an important requirement to develop empirical fragility or vulnerability models.

Keywords:

Ground motion shaking map , Rapid loss estimation , Sarpol-e Zahab , Iran

Authors

Erfan Firuzi

International Institute of Earthquake Engineering and Seismology (IIEES)

Anooshiravan Ansari

International Institute of Earthquake Engineering and Seismology (IIEES)

Mina Rashidabadi

International Institute of Earthquake Engineering and Seismology (IIEES)

Kambod Amini-Hosseini

International Institute of Earthquake Engineering and Seismology (IIEES)

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • Borcherdt, R.D. (۱۹۹۴) Estimates of sitedependent response spectra for design ...
  • Wald, D.J. and Allen, T.I. (۲۰۰۷) Topographic slope as a ...
  • Erdik, M., Sesetyan, K., Demircioglu, M.B., Hancilar, U., and Zülfikar, ...
  • Zülfikar, A.C., Fercan, N.O.Z., Tunç, S., and Erdik, M. (۲۰۱۷) ...
  • Worden, C.B., Wald, D.J., Allen, T.I., Lin, K., Garcia, D., ...
  • Harmandar, E., Cakti, E., and Erdik, M. (۲۰۱۲) A method ...
  • Cua, G. and Wald, D.J. (۲۰۰۸) Calibrating PAGER (Prompt Assessment ...
  • Michelini, A., Faenza, L., Lauciani, V., and Malagnini, L. (۲۰۰۸) ...
  • Cauzzi, C., Fah, D., Wald, D.J., Clinton, J., Losey, S., ...
  • Marreiros, C. and Carrilho, F. (۲۰۱۲) The shake map at ...
  • Tafti, M.F., Hosseini, F., Firuzi, E., Mansouri, B., and Ansari, ...
  • Silva, V. (۲۰۱۷) Critical issues on probabilistic earthquake loss assessment. ...
  • Scherbaum, F., Cotton, F., and Smit, P. (۲۰۰۴) On the ...
  • Scherbaum, F., Delavaud, E., and Riggelsen, C. (۲۰۰۹) Model selection ...
  • Mousavi, M., Zafarani, H., Rahpeyma, S., and Azarbakht, A. (۲۰۱۴) ...
  • Zafarani, H. and Mousavi, M. (۲۰۱۴) Applicability of different ground-motion ...
  • Ghasemi, H., Zare, M., Fukushima, Y., and Koketsu, K. (۲۰۰۹) ...
  • Zafarani, H., Luzi, L., Lanzano, G., and Soghrat, M. (۲۰۱۸) ...
  • Kanno, T., Narita, A., Morikawa, N., Fujiwara, H., and Fukushima, ...
  • Kotha, S.R., Bindi, D., and Cotton, F. (۲۰۱۶) Partially non-ergodic ...
  • Abrahamson, N.A., Silva, W.J., and Kamai, R. (۲۰۱۴) Summary of ...
  • Crowley, H. and Bommer, J.J. (۲۰۰۶) Modelling seismic hazard in ...
  • Verros, S.A., Wald, D.J., Worden, C.B., Hearne, M., and Ganesh, ...
  • Jayaram, N. and Baker, J.W. (۲۰۰۹) Correlation model for spatially ...
  • Goda, K., Hong, H.P. (۲۰۰۸) Spatial correlation of peak ground ...
  • Yong, A., Hough, S.E., Iwahashi, J., and Braverman, A. (۲۰۱۲) ...
  • Allen, T.I. and Wald, D.J. (۲۰۰۹) On the use of ...
  • Wills, C.J., and Clahan, K.B. (۲۰۰۶) Developing a map of ...
  • Wills, Ch., Gutierrez, C., Perez, A. and Branum, D. (۲۰۱۵) ...
  • Gitterman, Y., Grostein, M., and Perelman, N. (۲۰۱۴) Real time ...
  • Zare, M., Kamranzad, F., Parcharidis, I., and Tsironi, V. (۲۰۱۷) ...
  • نمایش کامل مراجع