Seismic Risk in Alborz: Insights from Geological Moment Rate Estimation and Fault Activity Analysis
Abstract
1. Introduction
2. Tectonic Setting and Seismicity
3. Results and Discussion
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Mazzotti, S.; Leonard, L.J.; Cassidy, J.F.; Rogers, G.C.; Halchuk, S. Seismic Hazard in Western Canada from GPS Strain Rates versus Earthquake Catalog. J. Geophys. Res. Solid. Earth 2011, 116. [Google Scholar] [CrossRef]
- Pancha, A.; Anderson, J.G.; Kreemer, C. Comparison of Seismic and Geodetic Scalar Moment Rates across the Basin and Range Province. Bull. Seismol. Soc. Am. 2006, 96, 11–32. [Google Scholar] [CrossRef][Green Version]
- D’Agostino, N.; Mantenuto, S.; D’Anastasio, E.; Avallone, A.; Barchi, M.; Collettini, C.; Radicioni, F.; Stoppini, A.; Fastellini, G. Contemporary Crustal Extension in the Umbria–Marche Apennines from Regional CGPS Networks and Comparison between Geodetic and Seismic Deformation. Tectonophysics 2009, 476, 3–12. [Google Scholar] [CrossRef]
- Derakhshani, R.; Eslami, S.S. A New Viewpoint for Seismotectonic Zoning. Am. J. Environ. Sci. 2011, 7, 212–218. [Google Scholar] [CrossRef]
- Delvaux, D.; Maddaloni, F.; Tesauro, M.; Braitenberg, C. The Congo Basin: Stratigraphy and Subsurface Structure Defined by Regional Seismic Reflection, Refraction and Well Data. Glob. Planet. Change 2021, 198, 103407. [Google Scholar] [CrossRef]
- Déprez, A.; Doubre, C.; Masson, F.; Ulrich, P. Seismic and Aseismic Deformation along the East African Rift System from a Reanalysis of the GPS Velocity Field of Africa. Geophys. J. Int. 2013, 193, 1353–1369. [Google Scholar] [CrossRef][Green Version]
- Stevens, V.L.; Avouac, J.P. Millenary Mw > 9.0 Earthquakes Required by Geodetic Strain in the Himalaya. Geophys. Res. Lett. 2016, 43, 1118–1123. [Google Scholar] [CrossRef][Green Version]
- Bos, A.G.; Spakman, W. Kinematics of the Southwestern US Deformation Zone Inferred from GPS Motion Data. J. Geophys. Res. Solid. Earth 2005, 110. [Google Scholar] [CrossRef][Green Version]
- Palano, M.; Imprescia, P.; Agnon, A.; Gresta, S. An Improved Evaluation of the Seismic/Geodetic Deformation-Rate Ratio for the Zagros Fold-and-Thrust Collisional Belt. Geophys. J. Int. 2018, 213, 194–209. [Google Scholar] [CrossRef]
- Javidfakhr, B.; Bellier, O.; Shabanian, E.; Siame, L.; Léanni, L.; Bourlès, D.; Ahmadian, S. Fault Kinematics and Active Tectonics at the Southeastern Boundary of the Eastern Alborz (Abr and Khij Fault Zones): Geodynamic Implications for NNE Iran. J. Geodyn. 2011, 52, 290–303. [Google Scholar] [CrossRef][Green Version]
- Rashidi, A. Geometric and Kinematic Characteristics of the Khazar and North Alborz Faults: Links to the Structural Evolution of the North Alborz-South Caspian Boundary, Northern Iran. J. Asian Earth Sci. 2021, 213, 104755. [Google Scholar] [CrossRef]
- Nazari, H.; Ritz, J.-F.; Burg, J.-P.; Shokri, M.; Haghipour, N.; Vizheh, M.M.; Avagyan, A.; Nashli, H.F.; Ensani, M. Active Tectonics along the Khazar Fault (Alborz, Iran). J. Asian Earth Sci. 2021, 219, 104893. [Google Scholar] [CrossRef]
- Hessami, K.; Mobayyen, F.; Tabassi, H. The Map of Active Faults of Iran; International Institute of Earthquake Engineering and Seismology Tehran: Tajrish, Iran, 2013. [Google Scholar]
- Sheykholeslami, M.R.; Javadi, H.R.; Asadi, M. Iran Fault Map on Provincial Subdivisions; Geological Survey & Mineral Explorations of Iran (GSI): Tehran, Iran, 2013. [Google Scholar]
- Rashidi, A.; Derakhshani, R. Strain and Moment Rates from GPS and Seismological Data in Northern Iran: Implications for an Evaluation of Stress Trajectories and Probabilistic Fault Rupture Hazard. Remote Sens. 2022, 14, 2219. [Google Scholar] [CrossRef]
- Trifonov, V.G.; Hessami, K.; Popov, S.V.; Zelenin, E.A.; Trikhunkov, Y.I.; Frolov, P.D.; Golovina, L.A.; Simakova, A.N.; Rashidi, A.; Latyshev, A.V. Development of the Southern Coastal Area of the Caspian Sea during the Pliocene–Quaternary According to Biostratigraphic and Magnetostratigraphic Data. Stratigr. Geol. Correl. 2022, 30, 273–291. [Google Scholar] [CrossRef]
- Nikpeyman, Y.; Nikpeyman, V.; Derakhshani, R.; Raoof, A. Assessment of a Multi-Layer Aquifer Vulnerability Using a Multi-Parameter Decision-Making Method in Mosha Plain, Iran. Water 2022, 14, 3397. [Google Scholar] [CrossRef]
- Rashidi, A.; Kianimehr, H.; Shafieibafti, S.; Mehrabi, A.; Derakhshani, R. Active Faults in the West of the Lut Block (Central Iran). Geophys. Res. 2021, 22, 70–84. [Google Scholar] [CrossRef]
- Rashidi, A.; Kianimehr, H.; Yamini-Fard, F.; Tatar, M.; Zafarani, H. Present Stress Map and Deformation Distribution in the NE Lut Block, Eastern Iran: Insights from Seismic and Geodetic Strain and Moment Rates. Pure Appl. Geophys. 2022, 179, 1887–1917. [Google Scholar] [CrossRef]
- Ezati, M.; Rashidi, A.; Gholami, E.; Mousavi, S.M.; Nemati, M.; Shafieibafti, S.; Derakhshani, R. Paleostress Analysis in the Northern Birjand, East of Iran: Insights from Inversion of Fault-Slip Data. Minerals 2022, 12, 1606. [Google Scholar] [CrossRef]
- Ezati, M.; Gholami, E.; Mousavi, S.M.; Rashidi, A.; Derakhshani, R. Active Deformation Patterns in the Northern Birjand Mountains of the Sistan Suture Zone, Iran. Appl. Sci. 2022, 12, 6625. [Google Scholar] [CrossRef]
- Kamali, Z.; Nazari, H.; Rashidi, A.; Heyhat, M.R.; Khatib, M.M.; Derakhshani, R. Seismotectonics, Geomorphology and Paleoseismology of the Doroud Fault, a Source of Seismic Hazard in Zagros. Appl. Sci. 2023, 13, 3747. [Google Scholar] [CrossRef]
- Mehrabi, A.; Pirasteh, S.; Rashidi, A.; Pourkhosravani, M.; Derakhshani, R.; Liu, G.; Mao, W.; Xiang, W. Incorporating Persistent Scatterer Interferometry and Radon Anomaly to Understand the Anar Fault Mechanism and Observing New Evidence of Intensified Activity. Remote Sens. 2021, 13, 2072. [Google Scholar] [CrossRef]
- Ambraseys, N.N.; Melville, C.P. A History of Persian Earthquakes; Cambridge University Press: Cambridge, UK, 1982; ISBN 0521021871. [Google Scholar]
- Berberian, M. Natural Hazards and the First Earthquake Catalog of Iran, Volume 1: Historical Hazards in Iran Prior to 1900. Int. Institue Earthq. Eng. Seismol. 1994, 1, 603. [Google Scholar]
- Berberian, M.; Yeats, R.S. Contribution of Archaeological Data to Studies of Earthquake History in the Iranian Plateau. J. Struct. Geol. 2001, 23, 563–584. [Google Scholar] [CrossRef]
- Berberian, M.; Yeats, R.S. Patterns of Historical Earthquake Rupture in the Iranian Plateau. Bull. Seismol. Soc. Am. 1999, 89, 120–139. [Google Scholar] [CrossRef]
- Tchalenko, J.S. Seismotectonic Framework of the North Tehran Fault. Tectonophysics 1975, 29, 411–420. [Google Scholar] [CrossRef]
- Gutenberg, B.; Richter, C.F. Magnitude and Energy of Earthquakes. Ann. Geophys. 1956, 9, 795. [Google Scholar] [CrossRef][Green Version]
- Nowroozi, A.A.; Ahmadi, G. Analysis of Earthquake Risk in Iran Based on Seismotectonic Provinces. Tectonophysics 1986, 122, 89–114. [Google Scholar] [CrossRef]
- Pourkermani, M.; Arian, M. Seismotectonics; Dez Ab Consulting Engineers Company Press: Tehran, Iran, 1997. [Google Scholar]
- Trifunac, M.D.; Brady, A.G. On the Correlation of Seismic Intensity Scales with the Peaks of Recorded Strong Ground Motion. Bull. Seismol. Soc. Am. 1975, 65, 139–162. [Google Scholar]
- Tocher, D. Movement on Faults. In Proceedings of the Second World Conference on Earthquake Engineering, Tokyo, Japan, 11–18 July 1960; Volume 1, pp. 551–564. [Google Scholar]
- Nowroozi, A.A.; Mohajer-Ashjai, A. Fault Movements and Tectonics of Eastern Iran: Boundaries of the Lut Plate. Geophys. J. Int. 1985, 83, 215–237. [Google Scholar] [CrossRef][Green Version]
- Donovan, N.C. A Statistical Evaluation of Strong Motion Data: Including the February 9, 1971 San Fernando Earthquake; Dames & Moore: San Francisco, CA, USA, 1973. [Google Scholar]
- Campbell, K. Near-Source Attenuation of Peak Horizontal Acceleration. Bull. Seismol. Soc. Am. 1981, 71, 2039–2070. [Google Scholar]
- Zolfaghari, M.R. Geodetic Deformation vs. Seismic Strain Deduced by Historical Earthquakes across the Alborz Mountains. J. Seismol. 2009, 13, 647–663. [Google Scholar] [CrossRef]
- Rizza, M.; Mahan, S.; Ritz, J.F.; Nazari, H.; Hollingsworth, J.; Salamati, R. Using Luminescence Dating of Coarse Matrix Material to Estimate the Slip Rate of the Astaneh Fault, Iran. Quat. Geochronol. 2011, 6, 390–406. [Google Scholar] [CrossRef]
- Nazari, H.; Ritz, J.F.; Walker, R.T.; Salamati, R.; Rizza, M.; Patnaik, R.; Hollingsworth, J.; Alimohammadian, H.; Jalali, A.; Kaveh Firouz, A.; et al. Palaeoseismic Evidence for a Medieval Earthquake, and Preliminary Estimate of Late Pleistocene Slip-Rate, on the Firouzkuh Strike-Slip Fault in the Central Alborz Region of Iran. J. Asian Earth Sci. 2014, 82, 124–135. [Google Scholar] [CrossRef]
- Ritz, J.-F.; Nazari, H.; Ghassemi, A.; Salamati, R.; Shafei, A.; Solaymani, S.; Vernant, P. Active Transtension inside Central Alborz: A New Insight into Northern Iran–Southern Caspian Geodynamics. Geology 2006, 34, 477–480. [Google Scholar] [CrossRef][Green Version]
- Nazari, H.; Ritz, J.-F.; Salamati, R.; Shafei, A.; Ghassemi, A.; Michelot, J.-L.; Massault, M.; Ghorashi, M. Morphological and Palaeoseismological Analysis along the Taleghan Fault (Central Alborz, Iran). Geophys. J. Int. 2009, 178, 1028–1041. [Google Scholar] [CrossRef][Green Version]
- Ritz, J.F.; Nazari, H.; Balescu, S.; Lamothe, M.; Salamati, R.; Ghassemi, A.; Shafei, A.; Ghorashi, M.; Saidi, A. Paleoearthquakes of the Past 30,000 Years along the North Tehran Fault (Iran). J. Geophys. Res. Solid. Earth 2012, 117. [Google Scholar] [CrossRef][Green Version]
- Vernant, P.; Nilforoushan, F.; Chéry, J.; Bayer, R.; Djamour, Y.; Masson, F.; Nankali, H.; Ritz, J.F.; Sedighi, M.; Tavakoli, F. Deciphering Oblique Shortening of Central Alborz in Iran Using Geodetic Data. Earth Planet. Sci. Lett. 2004, 223, 177–185. [Google Scholar] [CrossRef]
- Djamour, Y.; Vernant, P.; Bayer, R.; Hatam, Y.; Ritz, J.F.; Hinderer, J.; Luck, B.; Nankali, H.; Le Moigne, N.; Sedighi, M. Geodetic Signatures of Present-Day Tectonic Deformation in Central Alborz and Tehran Region (Iran). Geophys. J. Int. 2010, 183, 1287–1301. [Google Scholar] [CrossRef][Green Version]
- Ghassemi, M.R.; Fattahi, M.; Landgraf, A.; Ahmadi, M.; Ballato, P.; Tabatabaei, S.H. Kinematic Links between the Eastern Mosha Fault and the North Tehran Fault, Alborz Range, Northern Iran. Tectonophysics 2014, 622, 81–95. [Google Scholar] [CrossRef]
- Nazari, H.; Ritz, J.F.; Salamati, R.; Solaymani, S.; Balescu, S.; Michelot, J.L.; Ghassemi, A.; Talebian, M.; Lamothe, M.; Massault, M. Paleoseismological Analysis in Central Alborz, Iran. In Proceedings of the Conference Commemorating the 50th Anniversary of the 1957 Gobi-Altay Earthquake, Ulaanbaatar, Mongolia, 25 July–8 August 2007. [Google Scholar]
- Ward, S.N. On the Consistency of Earthquake Moment Rates, Geological Fault Data, and Space Geodetic Strain: The United States. Geophys. J. Int. 1998, 134, 172–186. [Google Scholar] [CrossRef][Green Version]
Fault Name | T | L (Km) | R (m) | Fault Name | T | L (Km) | R (m) |
---|---|---|---|---|---|---|---|
Sangavar | Earthquake Fault | 81 | 360 | F2 = Hokm Abad-Baba Cheshmeh | Quaternary Fault | 152 | 366 |
Masuleh | Active, Thrust and Reverse | 105 | 253 | Jajarm | Active, Thrust and Reverse | 78 | 435 |
F33 = Rudbar fault branch | Earthquake Fault | 10 | 252 | F36 = Siah Kuh | Quaternary Fault | 100 | 392 |
Talesh | Active and Relative Fault | 250 | 250 | Rabat Garbil | Quaternary Fault | 119 | 382 |
F33 = Rudbar fault branch | Earthquake, Thrust and Reverse | 30 | 219 | Sfarayen | Active Fault | 40 | 512 |
Rudbar | Strike-Slip | 37 | 178 | Sabzevar | Active, Thrust and Reverse | 7 | 498 |
F32 = Kabatteh fault branch | Active Fault | 42 | 190 | Doruneh1 | Active Fault | 31 | 481 |
Lahijan | Active Fault | 42 | 217 | Doruneh2 | Active, Strike-Slip | 35 | 477 |
F31 = North Alborz fault branche | Active Fault | 45 | 196 | Torud | Active Fault | 80 | 241 |
North Rudbar | Quaternary Fault | 100 | 162 | F8 = Qods | Active Fault | 23 | 280 |
Bonan | Active Fault | 76 | 112 | F9 = Alikhan | Active Fault | 64 | 277 |
Alamutrud | Active, Thrust and Reverse | 133 | 78 | F10 = Mehrkardu | Active, Strike-Slip | 33 | 348 |
F21 = Daryasar-Dikin | Active Fault | 19 | 118 | F11 = Mozaffar Abad | Active, Thrust and Reverse | 69 | 336 |
F22 = Veneda-Veres | Active Fault | 37 | 85 | Ghachab | Quaternary, Thrust and Reverse | 40 | 158 |
F23 = North of Ghazvin | Active Fault | 10 | 105 | Pishva | Quaternary Fault | 35 | 50 |
F24 = Gharib Mazraeh-Veres | Active Fault | 21 | 111 | Garmsar | Active, Thrust and Reverse | 70 | 65 |
North Ghazvin | Active, Thrust and Reverse | 64 | 129 | Eyvanaki | Thrust and Reverse | 94 | 9 |
Zanjan | Quaternary Fault | 104 | 196 | Kahrizak | Active, Thrust and Reverse | 4 | 21 |
F35 = Gomrokan | Quaternary Fault | 15 | 193 | South Tehran | Active, Thrust and Reverse | 21 | 14 |
F34–F33 = Baghestan-Qeshlagh-Aldaghlu-Shinin | Quaternary Fault | 25 | 170 | Siah Kuh | Quaternary, Thrust and Reverse | 38 | 62 |
Soltanieh | Quaternary, Thrust and Reverse | 116 | 216 | F27 = Abdareh-Khar Rud | Quaternary Fault | 41 | 147 |
F25 = Hasan Abad | Active, Thrust and Reverse | 6 | 111 | Parandak | Quaternary Fault | 42 | 111 |
Kandovan | Quaternary, Thrust and Reverse | 80 | 51 | F28 = Avaj-Ahmad Abad-Karvansara | Quaternary Fault | 47 | 190 |
F19 = Kajur-Khachak | Quaternary, Thrust and Reverse | 75 | 74 | F29 = Indes Ardmin | Quaternary Fault | 7 | 185 |
F14 = Ghasre Firozeh | Quaternary Fault | 12 | 7 | Kushk-e Nosrat | Quaternary Fault | 116 | 105 |
F15 = Sorkhe Hesar | Quaternary Fault | 12 | 12 | F29 = Indes-Aremin | Quaternary Fault | 31 | 151 |
F16 = Niavaran-North of Tehran | Quaternary Fault | 16 | 15 | F30 = Dokhan-Nobaran | Quaternary Fault | 50 | 176 |
F17 = Telo-Pajen | Active Fault | 12 | 9 | Indes | Active, Thrust and Reverse | 28 | 150 |
North Tehran | Active Fault | 176 | 11 | South Parandak | Quaternary Fault | 107 | 78 |
Taleghan | Active, Thrust and Reverse | 59 | 52 | North Parandak | Earthquake fault, Strike-Slip | 74 | 96 |
North Alborz | Active, Thrust and Reverse | 463 | 87 | Eshtehard | Active, Thrust and Reverse | 67 | 50 |
Gorgan | Active Fault | 85 | 268 | Ipak | Active, Thrust and Reverse | 52 | 76 |
Khazar | Active, Thrust and Reverse | 314 | 99 | F12 = Darin | Quaternary Fault | 43 | 44 |
F13 = Allahabad | Active Fault | 85 | 95 | F26 = Vanedar | Active Fault | 10 | 131 |
F7 = Anjilu | Quaternary Fault | 102 | 237 | Bozgush | Quaternary Fault | 73 | 398 |
F5 = Chashm-Astaneh | Quaternary Fault | 176 | 139 | Mosha | Active, Strike-Slip | 235 | 22 |
Damghan | Active and Relative | 83 | 224 | F18 = Ememzadeh Davood | Active, Strike-Slip | 11 | 14 |
Astaneh | Active Fault | 66 | 244 | Meyamey | Quaternary Fault | 137 | 316 |
F4 = Amiran | Quaternary Fault | 53 | 314 | F1 = Abr | Active, Relative Fault | 38 | 324 |
Semnan | Quaternary, Thrust and Reverse | 26 | 221 | Shavar | Active, Thrust and Reverse | 42 | 285 |
F6 = Attari | Quaternary Fault | 60 | 224 | Kushke Nosrat | Quaternary Fault | 127 | 91 |
F3 = Ramishan-Sabzevar | Quaternary Fault | 57 | 418 | Atary | Quaternary Fault | 165 | 134 |
Jagatai | Quaternary Fault | 64 | 446 | F20 = Taleghan-Kahar | Active, Thrust and Reverse Fault | 78 | 29 |
No. | Date | Lat. | Long. | M | q | i0 | r | r′ | Ref. |
---|---|---|---|---|---|---|---|---|---|
1 | c.1.8 Ma | 36.11 | 50.78 | >7 | c | >IX | - | - | B |
2 | c. 38,500–10,000 Bp | 35.82 | 52.11 | >6.5 | c | >VIII | - | - | B |
3 | c. 4500 Bp | 36.7 | 49.98 | >6.5 | c | >VIII | - | - | B |
4 | c. 4000–3000 Bp | 35.6 | 49.9 | - | - | - | - | - | A |
5 | c. 4000–3350 Bp | 34.45 | 47.92 | - | b | - | - | - | B |
6 | c. 2400–2300 Bp | 35.5 | 51.8 | 7.6 | - | 1 | - | - | A |
7 | c. 4th cent. | 35.5 | 51.8 | 7.6 | - | 1 | - | - | A |
8 | 743 | 35.3 | 52.2 | 7.2 | c | 2 | 30 | - | A |
9 | 855 | 35.6 | 51.5 | 7.1 | b | 2 | - | 540 | A |
10 | January 864 | 35.7 | 51 | 5.3 | c | 3 | - | - | A |
12 | 23 February 958 | 36 | 51.1 | 7.7 | b | 1 | 50 | 700 | A |
13 | 27 April 1008 | 34.6 | 47.4 | 7 | c | 1+ | - | - | A |
14 | 1052 | 36.6 | 50.3 | 6.8 | b | >VII+ | - | 400 | B |
15 | 10 December 1119 | 35.7 | 49.9 | 6.5 | c | 2 | - | - | A |
16 | May 1177 | 35.92 | 50.83 | 7.2 | c | - | - | 650 | B |
17 | 15 October 1485 | 36.7 | 50.5 | 7.2 | a | 2 | 28 | 650 | A |
18 | 3 July 1486 | 36.43 | 50.45 | - | c | - | - | - | B |
19 | 20 April 1608 | 36.4 | 50.5 | 7.6 | b | 1 | 26 | 600 | A |
20 | 1665 | 35.75 | 52.08 | 6.5 | c | 2 | - | - | B |
21 | 1687 | 36.3 | 52.6 | 6.5 | e | 2 | - | - | A |
22 | July 1721 | 35.68 | 50.2 | - | d | - | - | - | B |
23 | 1805 | 36.2 | 52.4 | - | c | 2 | - | 100 | A |
24 | 26 June 1808 | 35.3 | 54.5 | 6.6 | b | 2 | - | 320 | A |
25 | 9 October 1808 | 36.2 | 52.4 | - | d | 5 | - | - | A |
26 | 16 December 1808 | 36.4 | 50.3 | 5.9 | b | - | - | 200 | A |
27 | 1809 | 36.3 | 52.5 | 6.5 | b | 2 | 15 | 290 | A |
28 | June 1815 | 35.9 | 52.2 | - | d | 4 | 30 | - | A |
29 | 1825 | 36.1 | 52.6 | 6.7 | b | 2 | 24 | 360 | A |
30 | 27 March 1830 | 35.7 | 52.5 | 7.1 | b | 2 | 37 | 570 | A |
31 | 6 April 1830 | 35.73 | 52.6 | 5.3 | b | 3 | - | - | B |
32 | 1 November 1854 | - | - | - | - | VI | - | - | B |
33 | 18 April 1857 | - | - | - | - | VI | - | - | B |
34 | 1868 | 34.9 | 52.5 | 6.4 | c | - | - | 300 | A |
35 | 20 October 1876 | 35.8 | 49.8 | 5.7 | b | 2 | 19 | 150 | A |
a | b | Ms | log N | N | T (Year) |
---|---|---|---|---|---|
1.832508913 | 0.6918 | 3 | −0.255856 | 0.55481 | 1.8 |
3.2 | −0.394216 | 0.403445 | 2.4 | ||
3.4 | −0.532576 | 0.293376 | 3.4 | ||
3.6 | −0.670936 | 0.213336 | 4.6 | ||
3.8 | −0.809296 | 0.155133 | 6.4 | ||
4 | −0.947656 | 0.112809 | 8.8 | ||
4.4 | −1.224376 | 0.059652 | 16.7 | ||
4.6 | −1.362736 | 0.043377 | 23.0 | ||
4.8 | −1.501096 | 0.031543 | 31.7 | ||
5 | −1.639456 | 0.022937 | 43.5 | ||
5.2 | −1.777816 | 0.01668 | 59.9 | ||
5.4 | −1.916176 | 0.012129 | 82.4 | ||
5.6 | −2.054536 | 0.00882 | 113.3 | ||
5.8 | −2.192896 | 0.006414 | 155.9 | ||
6 | −2.331256 | 0.004664 | 214.4 | ||
6.2 | −2.469616 | 0.003391 | 294.8 | ||
6.4 | −2.607976 | 0.002466 | 405.4 | ||
6.6 | −2.746336 | 0.001793 | 557.6 | ||
6.8 | −2.884696 | 0.001304 | 766.8 | ||
7.2 | −3.161416 | 0.00069 | 1450.1 | ||
7.4 | −3.299776 | 0.000501 | 1994.2 | ||
7.6 | −3.438136 | 0.000365 | 2742.4 | ||
7.7 | −3.507316 | 0.000311 | 3216.0 |
a | b | MS | Earthquake Return Period | Useful Life (T) | DBE (R = 64%) | MCE (R = 90%) |
---|---|---|---|---|---|---|
1.832509 | 0/6918 | 3 | 1.8 | 10 | 4.08 | 5.51 |
3.2 | 2.4 | 20 | 4.52 | 5.94 | ||
3.4 | 3.4 | 30 | 4.77 | 6.2 | ||
3.6 | 4.6 | 40 | 4.95 | 6.38 | ||
3.8 | 6.4 | 50 | 5.09 | 6.52 | ||
4 | 8.8 | 60 | 5.21 | 6.63 | ||
4.4 | 16.7 | 70 | 5.3 | 6.73 | ||
4.6 | 23.0 | 80 | 5.39 | 6.81 | ||
4.8 | 31.7 | 90 | 5.46 | 6.89 | ||
5 | 43.5 | 100 | 5.53 | 6.95 | ||
5.2 | 59.9 | 110 | 5.59 | 7.01 | ||
5.4 | 82.4 | 120 | 5.64 | 7.07 | ||
5.6 | 113.3 | 130 | 5.69 | 7.12 | ||
5.8 | 155.9 | 140 | 5.74 | 7.16 | ||
6 | 214.4 | 150 | 5.78 | 7.21 | ||
6.2 | 294.8 | 160 | 5.82 | 7.25 | ||
6.4 | 405.4 | 170 | 5.86 | 7.29 | ||
6.6 | 557.6 | 180 | 5.9 | 7.32 | ||
6.8 | 766.8 | 190 | 5.93 | 7.36 | ||
7.2 | 1450.1 | 200 | 5.96 | 7.39 | ||
7.4 | 1994.2 | 210 | 5.99 | 7.42 | ||
7.6 | 2742.4 | 220 | 6.02 | 7.45 | ||
7.7 | 3216.0 | 230 | 6.05 | 7.48 |
Fault Name | Ms (Av) | SRL lr | WR | AR | Fault Name | Ms (Av) | SRL lr | WR | AR |
---|---|---|---|---|---|---|---|---|---|
Sangavar | 7.24 | 0.204 | 0.564 | 0.267 | Jagatai | 7.02 | 0.194 | 0.554 | 0.257 |
Masuleh | 7.33 | 0.208 | 0.568 | 0.272 | F2 | 7.56 | 0.218 | 0.578 | 0.282 |
F33 | 5.91 | 0.143 | 0.496 | 0.199 | Jajarm | 7.14 | 0.2 | 0.56 | 0.262 |
Talesh | 7.86 | 0.231 | 0.59 | 0.296 | F36 | 7.31 | 0.207 | 0.567 | 0.27 |
F33 | 6.58 | 0.174 | 0.533 | 0.234 | Rabat Garbil | 7.41 | 0.212 | 0.572 | 0.276 |
Rudbar | 6.7 | 0.179 | 0.538 | 0.24 | Sfarayen | 6.75 | 0.182 | 0.541 | 0.243 |
F32 | 6.77 | 0.183 | 0.542 | 0.244 | Sabzevar | 5.69 | 0.132 | 0.482 | 0.186 |
Lahijan | 6.77 | 0.182 | 0.542 | 0.244 | Doruneh1 | 6.6 | 0.175 | 0.534 | 0.235 |
F31 | 6.86 | 0.187 | 0.546 | 0.248 | Doruneh2 | 6.74 | 0.181 | 0.541 | 0.242 |
North Rudbar | 7.36 | 0.209 | 0.57 | 0.273 | Torud | 7.23 | 0.203 | 0.564 | 0.267 |
Bonan | 7.2 | 0.202 | 0.562 | 0.265 | F8 | 6.5 | 0.17 | 0.529 | 0.23 |
Alamutrud | 7.47 | 0.214 | 0.574 | 0.278 | F9 | 7.02 | 0.194 | 0.554 | 0.257 |
F21 | 6.34 | 0.163 | 0.52 | 0.222 | F10 | 6.7 | 0.179 | 0.539 | 0.24 |
F22 | 6.78 | 0.183 | 0.543 | 0.244 | F11 | 7.14 | 0.199 | 0.56 | 0.262 |
F23 | 5.95 | 0.144 | 0.498 | 0.201 | Ghachab | 6.75 | 0.182 | 0.541 | 0.243 |
F24 | 6.36 | 0.163 | 0.521 | 0.222 | Pishva | 6.74 | 0.181 | 0.541 | 0.242 |
North Ghazvin | 7.03 | 0.194 | 0.554 | 0.257 | Garmsar | 7.14 | 0.2 | 0.56 | 0.262 |
Zanjan | 7.32 | 0.208 | 0.568 | 0.271 | Eyvanaki | 7.32 | 0.208 | 0.568 | 0.271 |
F35 | 6.17 | 0.155 | 0.511 | 0.212 | Kahrizak | 6.84 | 0.186 | 0.546 | 0.247 |
F34 | 6.47 | 0.169 | 0.527 | 0.228 | South Tehran | 6.44 | 0.167 | 0.525 | 0.227 |
Soltanieh | 7.4 | 0.211 | 0.571 | 0.275 | Siah Kuh | 6.8 | 0.184 | 0.544 | 0.245 |
F25 | 5.71 | 0.133 | 0.484 | 0.188 | F27 | 6.76 | 0.182 | 0.542 | 0.243 |
Kandovan | 7.18 | 0.201 | 0.561 | 0.264 | Parandak | 6.77 | 0.183 | 0.542 | 0.244 |
F19 | 7.2 | 0.202 | 0.562 | 0.265 | F28 | 6.85 | 0.186 | 0.546 | 0.248 |
F14 | 6.03 | 0.148 | 0.503 | 0.205 | F29 | 5.83 | 0.139 | 0.491 | 0.194 |
F15 | 6.01 | 0.147 | 0.502 | 0.204 | Kushk-e Nosrat | 7.4 | 0.211 | 0.571 | 0.275 |
F16 | 6.19 | 0.156 | 0.512 | 0.214 | F29 | 6.59 | 0.174 | 0.533 | 0.235 |
F17 | 6.01 | 0.147 | 0.502 | 0.204 | F30 | 6.89 | 0.188 | 0.548 | 0.25 |
North Tehran | 7.69 | 0.224 | 0.583 | 0.288 | Indes | 6.55 | 0.173 | 0.531 | 0.233 |
Taleghan | 6.99 | 0.192 | 0.552 | 0.255 | South Parandak | 7.34 | 0.208 | 0.569 | 0.272 |
North Alborz | 8.23 | 0.247 | 0.604 | 0.313 | North Parandak | 7.19 | 0.201 | 0.562 | 0.265 |
Gorgan | 7.2 | 0.202 | 0.562 | 0.265 | Eshtehard | 7.12 | 0.199 | 0.559 | 0.262 |
Khazar | 7.99 | 0.237 | 0.595 | 0.303 | Ipak | 6.98 | 0.192 | 0.552 | 0.254 |
F13 | 7.2 | 0.202 | 0.562 | 0.265 | F12 | 6.85 | 0.186 | 0.546 | 0.248 |
F7 | 7.32 | 0.207 | 0.567 | 0.271 | F26 | 6.04 | 0.149 | 0.503 | 0.205 |
F5 | 7.64 | 0.222 | 0.581 | 0.286 | Bozgush | 7.11 | 0.198 | 0.558 | 0.261 |
Damghan | 7.19 | 0.202 | 0.562 | 0.265 | Mosha | 7.82 | 0.229 | 0.588 | 0.294 |
Astaneh | 7.05 | 0.196 | 0.556 | 0.258 | F18 | 5.96 | 0.145 | 0.499 | 0.201 |
F4 | 6.98 | 0.192 | 0.552 | 0.254 | Meyamey | 7.48 | 0.214 | 0.575 | 0.279 |
Semnan | 6.58 | 0.174 | 0.533 | 0.234 | F1 | 6.73 | 0.181 | 0.54 | 0.242 |
F6 | 7 | 0.193 | 0.553 | 0.255 | Shavar | 6.77 | 0.182 | 0.542 | 0.244 |
F3 | 6.97 | 0.192 | 0.552 | 0.254 | Kushk-e Nosrat North | 7.44 | 0.213 | 0.573 | 0.277 |
Atary | 7.61 | 0.22 | 0.58 | 0.285 | F20 | 7.21 | 0.203 | 0.563 | 0.266 |
Fault Name | Fault Length (km) | DT (km) | Ms (Av) | PGA (Av) | Fault Name | Fault Length (km) | DT (km) | Ms (Av) | PGA (Av) |
---|---|---|---|---|---|---|---|---|---|
Sangavar | 81 | 359/2 | 7/2 | 0/0132 | F2 | 152 | 365/9 | 7/6 | 0/0133 |
Masuleh | 105 | 252/7 | 7/3 | 0/0204 | Jajarm | 78 | 434/5 | 7/1 | 0/0104 |
F33 | 10 | 251/7 | 5/9 | 0/0246 | Sfarayen | 40 | 511/8 | 6/7 | 0/0086 |
Talesh | 250 | 250/7 | 7/9 | 0/0222 | Sabzevar | 7 | 497/9 | 5/7 | 0/0110 |
F33 | 30 | 219/4 | 6/6 | 0/0253 | Doruneh1 | 31 | 481/1 | 6/6 | 0/0094 |
Rudbar | 37 | 178/3 | 6/7 | 0/0321 | Doruneh2 | 35 | 476/5 | 6/7 | 0/0094 |
F32 | 42 | 190/4 | 6/8 | 0/0293 | Torud | 80 | 240/6 | 7/2 | 0/0215 |
Lahijan | 42 | 217/3 | 6/8 | 0/0249 | F8 | 23 | 279/6 | 6/5 | 0/0189 |
F31 | 45 | 195/7 | 6/9 | 0/0281 | F9 | 64 | 276/8 | 7/0 | 0/0182 |
North Rudbar | 100 | 161/8 | 7/4 | 0/0348 | F10 | 33 | 348/1 | 6/7 | 0/0140 |
Bonan | 76 | 111/8 | 7/2 | 0/0535 | F11 | 69 | 336/3 | 7/1 | 0/0143 |
Alamutrud | 133 | 77/9 | 7/5 | 0/0800 | Ghachab | 40 | 158/3 | 6/7 | 0/0368 |
F21 | 19 | 118/5 | 6/3 | 0/0556 | Pishva | 35 | 50/2 | 6/7 | 0/1326 |
F22 | 37 | 84/9 | 6/8 | 0/0756 | Garmsar | 70 | 64/9 | 7/1 | 0/0978 |
F23 | 10 | 105/0 | 5/9 | 0/0702 | Eyvanaki | 94 | 8/9 | 7/3 | 0/4400 |
F24 | 21 | 111/2 | 6/4 | 0/0597 | Kahrizak | 42 | 21/0 | 6/8 | 0/2789 |
North Ghazvin | 64 | 128/7 | 7/0 | 0/0458 | South Tehran | 21 | 14/0 | 6/4 | 0/3863 |
Zanjan | 104 | 195/7 | 7/3 | 0/0277 | Siah Kuh | 38 | 62/0 | 6/8 | 0/1059 |
F35 | 15 | 192/5 | 6/2 | 0/0322 | F27 | 41 | 147/4 | 6/8 | 0/0400 |
F34 | 25 | 170/2 | 6/5 | 0/0352 | Parandak | 42 | 111/0 | 6/8 | 0/0557 |
Soltanieh | 116 | 215/9 | 7/4 | 0/0247 | F28 | 46 | 189/7 | 6/8 | 0/0292 |
F25 | 6 | 111/2 | 5/7 | 0/0701 | F29 | 7 | 185/3 | 5/8 | 0/0368 |
Kandovan | 81 | 50/6 | 7/2 | 0/1261 | Kushk-e Nosrat | 116 | 104/6 | 7/4 | 0/0577 |
F19 | 76 | 74/4 | 7/2 | 0/0843 | F29 | 31 | 151/3 | 6/6 | 0/0397 |
F14 | 12 | 7/3 | 6/0 | 0/5723 | F30 | 49 | 176/1 | 6/9 | 0/0318 |
F15 | 12 | 12/1 | 6/0 | 0/4561 | Indes | 27 | 150/2 | 6/6 | 0/0403 |
F16 | 16 | 14/7 | 6/2 | 0/3927 | South Parandak | 107 | 78/0 | 7/3 | 0/0798 |
F17 | 12 | 8/6 | 6/0 | 0/5364 | North Parandak | 74 | 95/6 | 7/2 | 0/0639 |
North Tehran | 176 | 11/2 | 7/7 | 0/3878 | Eshtehard | 67 | 50/2 | 7/1 | 0/1274 |
Taleghan | 59 | 51/9 | 7/0 | 0/1247 | Ipak | 52 | 75/9 | 7/0 | 0/0837 |
North Alborz | 463 | 87/2 | 8/2 | 0/0785 | F12 | 43 | 443/9 | 6/9 | 0/0102 |
Gorgan | 85 | 268/1 | 7/2 | 0/0189 | F26 | 10 | 131/1 | 6/0 | 0/0529 |
Khazar | 314 | 99/2 | 8/0 | 0/0652 | Bozgush | 73 | 398/2 | 7/1 | 0/0116 |
F13 | 85 | 94/8 | 7/2 | 0/0645 | Mosha | 235 | 22/4 | 7/8 | 0/2535 |
F7 | 102 | 237/2 | 7/3 | 0/0220 | F18 | 11 | 13/8 | 6/0 | 0/4275 |
F5 | 176 | 139/3 | 7/6 | 0/0423 | Meyamey | 136 | 316/0 | 7/5 | 0/0157 |
Damghan | 83 | 224/4 | 7/2 | 0/0234 | F1 | 38 | 324/1 | 6/7 | 0/0153 |
Astaneh | 66 | 243/7 | 7/1 | 0/0212 | Shavar | 42 | 284/6 | 6/8 | 0/0179 |
F4 | 53 | 314/2 | 7/0 | 0/0156 | Kushk-e Nosrat North | 127 | 91/4 | 7/4 | 0/0672 |
Semnan | 26 | 220/9 | 6/6 | 0/0251 | Atary | 165 | 134/1 | 7/6 | 0/0440 |
F6 | 60 | 223/6 | 7/0 | 0/0236 | F20 | 78 | 29/2 | 7/2 | 0/2083 |
F3 | 57 | 418/3 | 7/0 | 0/0109 | Jagatai | 64 | 445/7 | 7/0 | 0/0101 |
Fault Name | Fault Length (KM) | Mechanism | Dip | cos (Dip) | Vertical Movement (mm/y) | Horizontal Movement (mm/y) | Average Geological Moment |
---|---|---|---|---|---|---|---|
Khazar | 550 | T | 35 | −0.904 | 2.5 | 3.05 | 1.00239 × 1018 |
North Alborz | 350 | T | 50 | 0.965 | 1 | 1.5 | 2.93793 × 1017 |
Kashachal | 190 | SS | 80 | −0.110 | 1 | 1 | 9.29455 × 1017 |
Kandovan | 85 | SS | 50 | 0.965 | 1 | 1 | 4.75664 × 1016 |
Taleqan | 90 | N | 55 | 0.022 | 1.3 | 2.85537 × 1018 | |
Mosha-S | 50 | SS | 70 | 0.633 | 2.3 | 2.3 | 9.80548 × 1016 |
Apic | 95 | T | 45 | 0.525 | 1 | 1.4 | 1.36716 × 1017 |
North Tehran | 125 | T | 45 | 0.525 | 0.7–1.0 | 1.4 | 1.7989 × 1017 |
Mosha | 70 | SS | 70 | 0.633 | 2.3 | 2.3 | 1.37277 × 1017 |
Firuz Kuh | 45 | SS | 70 | 0.633 | 2.3 | 8.82493 × 1016 | |
Chashm | 35 | SS-T | 70 | 0.633 | 2.3 | 6.86384 × 1016 | |
Astaneh | 60 | SS | 90 | −0.448 | 2.3 | 2.3 | 1.66312 × 1017 |
Shahrud | 100 | SS-T | 45 | 0.525 | 1.3–2.3 | 3.2 | 3.28941 × 1017 |
Bastam | 110 | SS-T | 45 | 0.525 | 1.0–4.0 | 1.4 | 1.58303 × 1017 |
Maraveh Tappeh | 250 | T | 45 | 0.525 | 1 | 1.4 | 3.59779 × 1017 |
Takal Kuh | 125 | T | 45 | 0.525 | 1.5 | 2.1 | 2.69835 × 1017 |
Kurkhud | 135 | SS-T | 70 | 0.633 | 0.75 | 1 | 1.15108 × 1017 |
Shoqa | 150 | SS-T | 70 | 0.633 | 1 | 1.5 | 1.91846 × 1017 |
Jajarm | 120 | SS-T | 80 | −0.110 | 0.75 | 1 | 5.87024 × 1017 |
Eshqabad | 230 | SS | 80 | −0.110 | 5.0–8.0 | 5 | 5.62565 × 1018 |
C. Eshkabad | 80 | T-SS | 70 | 0.633 | 2 | 5 | 3.4106 × 1017 |
N. Kopehdagh | 315 | T | 45 | 0.525 | 1 | 1.4 | 4.53322 × 1017 |
Baghan-Garmab | 155 | RS | 90 | −0.448 | 4 | 4 | 7.47199 × 1017 |
Shirvan | 90 | RS | 90 | −0.448 | 2 | 2 | 2.16929 × 1017 |
Naveh | 90 | RS | 90 | −0.448 | 1 | 1 | 1.08464 × 1017 |
Gareh Dagh-Khademan | 130 | RS | 90 | −0.448 | 1.3 | 1.3 | 2.03672 × 1017 |
Kashafrud | 165 | RS-T | 80 | −0.110 | 1 | 1 | 8.07158 × 1017 |
Amrudak | 150 | RS | 90 | −0.448 | 1.4 | 1.4 | 2.53083 × 1017 |
Eshtehard | 190 | T | 50 | 0.965 | 1 | 1.5 | 1.59487 × 1017 |
Kushk-e Nosrat | 250 | T | 45 | 0.525 | 1 | 1.4 | 3.59779 × 1017 |
Indes | 145 | T | 45 | 0.525 | 1 | 1.4 | 2.08672 × 1017 |
Qom | 140 | T-RS | 45 | 0.525 | 1 | 1.4 | 2.01476 × 1017 |
Robatkarim-Siahkuh | 180 | T-RS | 60 | −0.952 | 1 | 1.5 | 1.53085 × 1017 |
Kahrizak-Garmasar | 190 | T | 45 | 0.525 | 1 | 1.4 | 2.73432 × 1017 |
N. Semnan-Atari | 90 | SS-T | 80 | −0.110 | 1 | 1 | 4.40268 × 1017 |
Torud | 50 | SS | 80 | −0.110 | 0.5 | 0.5 | 1.22297 × 1017 |
Dochah | 65 | SS | 90 | −0.448 | 0.5 | 0.5 | 3.91677 × 1016 |
Mayamey | 175 | SS | 80 | −0.110 | 2.5 | 2.5 | 2.14019 × 1018 |
N-Sabzevar | 130 | T | 45 | 0.525 | 2.5 | 3.5 | 4.67713 × 1017 |
Samghan | 130 | SS-T | 90 | −0.448 | 0.5 | 0.5 | 7.83353 × 1016 |
Rivand | 150 | T | 45 | 0.525 | 0.5 | 0.7 | 1.07934 × 1017 |
Esfarayen | 125 | T | 45 | 0.525 | 0.6 | 0.8 | 1.02794 × 1017 |
Doruneh | 700 | SS | 85 | −0.984 | 1.5–2.5 | 2.5 | 9.59998 × 1017 |
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Mohammadi Nia, A.; Rashidi, A.; Khatib, M.M.; Mousavi, S.M.; Nemati, M.; Shafieibafti, S.; Derakhshani, R. Seismic Risk in Alborz: Insights from Geological Moment Rate Estimation and Fault Activity Analysis. Appl. Sci. 2023, 13, 6236. https://doi.org/10.3390/app13106236
Mohammadi Nia A, Rashidi A, Khatib MM, Mousavi SM, Nemati M, Shafieibafti S, Derakhshani R. Seismic Risk in Alborz: Insights from Geological Moment Rate Estimation and Fault Activity Analysis. Applied Sciences. 2023; 13(10):6236. https://doi.org/10.3390/app13106236
Chicago/Turabian StyleMohammadi Nia, Ali, Ahmad Rashidi, Mohammad Mahdi Khatib, Seyed Morteza Mousavi, Majid Nemati, Shahram Shafieibafti, and Reza Derakhshani. 2023. "Seismic Risk in Alborz: Insights from Geological Moment Rate Estimation and Fault Activity Analysis" Applied Sciences 13, no. 10: 6236. https://doi.org/10.3390/app13106236
APA StyleMohammadi Nia, A., Rashidi, A., Khatib, M. M., Mousavi, S. M., Nemati, M., Shafieibafti, S., & Derakhshani, R. (2023). Seismic Risk in Alborz: Insights from Geological Moment Rate Estimation and Fault Activity Analysis. Applied Sciences, 13(10), 6236. https://doi.org/10.3390/app13106236