KOERI’s Tsunami Warning System in the Eastern Mediterranean and Its Connected Seas: A Decade of Achievements and Challenges
Abstract
:1. Introduction
2. NEAMTWS System Architecture
3. Monitoring and Service Area of the KOERI Tsunami Service Provider
4. Seismic Monitoring
5. Automatic Determination of Earthquake Parameters: SeisComP3 and Early-Est
6. Sea Level Monitoring
7. KOERI–TSP Decision Support System
8. Operational Tools—From EC–JRC to TsuComp with Enhanced Products
9. Communication Channels
10. Getting Ready for the Real Event
10.1. Internal Tsunami Exercises
10.2. Communication Test Exercises
10.3. NEAMTWS Tsunami Exercises
10.3.1. NEAMWave12
10.3.2. NEAMWave14
10.3.3. NEAMWave17
10.3.4. NEAMWave21
11. An Overview of the Operational Performance
12. Lessons Learnt from Recent Tsunami Events
12.1. 20 July 2017 Bodrum–Kos Earthquake and Tsunami
12.2. 30 October 2020 Samos–Izmir Earthquake and Tsunami
13. Discussions and Conclusions Regarding Gaps and Areas of Improvement in the System
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Meral Ozel, N.; Necmioglu, O.; Yalciner, A.C.; Kalafat, D.; Mustafa, E. Tsunami hazard in the Eastern Mediterranean and its connected seas: Toward a Tsunami warning center in Turkey. Soil Dyn. Earthq. Eng. 2011, 31, 598–610. [Google Scholar] [CrossRef]
- Schindelé, F.; Gailler, A.; Hébert, H.; Loevenbruck, A.; Gutierrez, E.; Monnier, A.; Roudil, P.; Reymond, D.; Rivera, L. Implementation and Challenges of the Tsunami Warning System in the Western Mediterranean. Pure Appl. Geophys. 2015, 172, 821–833. [Google Scholar] [CrossRef] [Green Version]
- Amato, A.; Avallone, A.; Basili, R.; Bernardi, F.; Brizuela, B.; Graziani, L.; Herrero, A.; Lorenzino, M.C.; Lorito, S.; Mele, F.M.; et al. From Seismic Monitoring to Tsunami Warning in the Mediterranean Sea. Seismol. Res. Lett. 2021, 92, 1796–1816. [Google Scholar] [CrossRef]
- Interim Operational Users Guide for NEAMTWS, Version 1.10. 2011. Available online: http://www.ioc-tsunami.org/index.php?option=com_oe&task=viewDocumentRecord&docID=8129 (accessed on 17 November 2021).
- Cambaz, M.D.; Turhan, F.; Yılmazer, M.; Kekovalı, K.; Necmioğlu, Ö.; Kalafat, D. An Investigation on the Evaluation of Seismic Network and Catalogue of Regional Earthquake-Tsunami Monitoring Center (RETMC-KOERI). Yerbilimleri 2019, 40, 110–135. [Google Scholar]
- Cambaz, M.D.; Turhan, F.; Yılmazer, M.; Kekovalı, K.; Necmioğlu, Ö.; Kalafat, D. A Review on Kandilli Observatory and Earthquake Research Institute (KOERI) Seismic Network and Earthquake Catalog: 2008–2018. Adv. Geosci. 2019, 51, 15–23. [Google Scholar] [CrossRef] [Green Version]
- Cambaz, M.D.; Özer, M.; Güneş, Y.; Ergün, T.; Öğütçü, Z.; Altuncu-Poyraz, S.; Köseoğlu, A.; Turhan, F.; Yilmazer, M.; Kekovali, K.; et al. Evolution of the Kandilli Observatory and Earthquake Research Institute (KOERI) Seismic Network and the Data Center Facilities as a Primary Node of EIDA. Seismol. Res. Lett. 2021, 92, 1571–1580. [Google Scholar] [CrossRef]
- Kalafat, D. Statistical Evaluation of Turkey Earthquake Data (1900–2015): A Case study. East. Anatol. J. Sci. 2016, 2, 14–36. [Google Scholar]
- Möllhoff, M.; Bean, C.J.; Baptie, B.J. SN-CAST: Seismic network capability assessment software tool for regional networks-examples from Ireland. J. Seismol. 2019, 23, 493–504. [Google Scholar] [CrossRef]
- Hanka, W.; Saul, J.; Weber, B.; Becker, J.; Harjadi, P.; Fauzi; GITEWS Seismology Group. Real-time earthquake monitoring for tsunami warning in the Indian Ocean and beyond. Nat. Hazards Earth Syst. Sci. 2010, 10, 2611–2622. [Google Scholar] [CrossRef]
- Olivieri, M.; Clinton, J. An Almost Fair Comparison between Earthworm and SeisComp3. Seismol. Res. Lett. 2012, 83, 720–727. [Google Scholar] [CrossRef] [Green Version]
- Lomax, A.; Michelini, A. Mwpd: A duration-amplitude procedure for rapid determination of earthquake magnitude and tsunamigenic potential from P waveforms. Geophys. J. Int. 2009, 176, 200–214. [Google Scholar] [CrossRef] [Green Version]
- Lomax, A.; Michelini, A. Tsunami early warning using earthquake rupture duration, Geophys. Res. Lett. 2009, 36, L09306. [Google Scholar] [CrossRef] [Green Version]
- Lomax, A.; Michelini, A. Tsunami early warning using earthquake rupture duration and P-wave dominant period: The importance of length and depth of faulting, Geophys. J. Int. 2011, 185, 283–291. [Google Scholar] [CrossRef] [Green Version]
- Lomax, A.; Michelini, A. Tsunami early warning within 5 minutes. Pure Appl. Geophys. 2012, 170, 1385–1395. [Google Scholar] [CrossRef]
- Bernardi, F.; Lomax, A.; Michelini, A.; Lauciani, V.; Piatanesi, A.; Lorito, S. Appraising the Early-est earthquake monitoring system for tsunami alerting at the Italian Candidate Tsunami Service Provider. Nat. Hazards Earth Syst. Sci. 2015, 15, 1–40. [Google Scholar] [CrossRef] [Green Version]
- Annunziato, A. The Inexpensive Device for Sea Level Measurements. Sci. Tsunami Hazards-J. Tsunami Soc. Int. 2015, 34, 199. [Google Scholar]
- Flanders Marine Institute (VLIZ); Intergovernmental Oceanographic Commission (IOC). Sea Level Station Monitoring Facility. 2021. Available online: http://www.ioc-sealevelmonitoring.org (accessed on 17 November 2021).
- The Inexpensive Device for Sea Level Measurements. Available online: https://webcritech.jrc.ec.europa.eu/TAD_server/Home (accessed on 17 November 2021).
- Necmioglu, O.; Ozel, N.M. Earthquake Scenario-Based Tsunami Wave Heights in the Eastern Mediterranean and Connected Seas. Pure Appl. Geophys. 2015, 172, 3617–3638. [Google Scholar] [CrossRef]
- Necmioğlu, Ö. Tsunami Hazard in Turkey and Surroundings. Ph.D. Thesis, Department of Geophysics, Kandilli Observatory and Earthquake Research Institute, Boğaziçi University, Istanbul, Turkey, 2014. [Google Scholar]
- Wessel, P.; Smith, W.H.F.; Scharrop, R.; Luis, J.F.; Wobbe, F. Generic Mapping Tools: Improved version released. Eos Trans. AGU 2013, 94, 409–410. [Google Scholar] [CrossRef] [Green Version]
- Annunziato, A.; Fonio, C.; Mugnai, F.; Galliano, D. Tsunami Decision Support Systems. TDSS-2015. In Outcomes of the 6th JRC ECML Crisis Management Technology Workshop; Publications Office of the European Union: Luxembourg, 2015. [Google Scholar]
- Hammitzsch, M.; Carrilho, F.J.; Necmioglu, O.; Lendholt, M.; Reißland, S.; Schulz, J.; Omira, R.; Comoglu, M.; Ozel, N.M.; Wächter, J. Meeting UNESCO-IOC ICG/NEAMTWS requirements and beyond with TRIDEC’s Crisis Management Demonstrator for Tsunamis. In Proceedings of the Twenty-third International Offshore and Polar Engineering Conference, Anchorage, AK, USA, 30 June–5 July 2013. [Google Scholar]
- Necmioğlu, Ö.; Matias, L.M.; Schindelé, F.; Behrens, J.; Arthurton, R.; Tinti, S.; Rudloff, A.; Crochet, E.; Gonzalez, M.; Santoro, F.; et al. Exercise NEAMWave 12 A Tsunami Warning and Communication Exercise for the North-Eastern Atlantic, the Mediterranean, and Connected Seas Region, Exercise Manual and Evaluation Report; UNESCO Intergovernmental Oceanographic Commission Technical Series 103; UNESCO: Paris, France, 2012; Available online: https://unesdoc.unesco.org/ark:/48223/pf0000218990 (accessed on 17 November 2021).
- Behrens, J.; Carrilho, F.; Crochet, E.; Gonzalez, M.; Guymer, T.; Imperiali, O.; Matias, L.M.; Melis, N.; Necmioğlu, O.; Santini, M.; et al. Exercise NEAMWave 14. A Tsunami Warning and Communication Exercise for the North-Eastern Atlantic, the Mediterranean, and Connected Seas Region, 28–30 October 2014, Volume I: Manual; IOC Technical Series No 114 Vol.1; UNESCO: Paris, France, 2014. (In English) [Google Scholar]
- Özer Sözdinler, C.; Panunzi, E.; Imperiali, O.; Necmioğlu, O.; Santini, M.; Charalampakis, M.; Yalçıner, A.C.; Intergovernmental Oceanographic Commission. Tsunami Exercise NEAMWave17—A Tsunami Warning and Communication Exercise for the North-eastern Atlantic, the Mediterranean, and Connected Seas Region, 31 October–3 November 2017; Volume 1: Exercise Instructions; IOC Technical Series No.134 Vol.1; UNESCO: Paris, France, 2017. (In English) [Google Scholar]
- Özer Sözdinler, C.; Charalampakis, M.; Gaite, B.; Romano, F.; Carrilho, F.; Kalligeris, N.; Necmioglu, O.; Roudil, P. NEAMWave 21 Tsunami Exercise. A Tsunami Warning and Communication Exercise for the North-Eastern Atlantic, the Mediterranean, and Connected Seas Region. Exercise Manual (Vol.1): Exercise Instructions (Part 1) and Exercise Supplements (Part 2); (IOC/2021/TS/164 Vol. 1); UNESCO: Paris, France, 2021; Available online: https://unesdoc.unesco.org/ark:/48223/pf0000375341.locale=en (accessed on 17 November 2021).
- Easy Wave. Available online: https://gitext.gfz-potsdam.de/geoperil/easyWave (accessed on 17 November 2021).
- Hammitzsch, M.; Spazier, J.; Reißland, S.; Necmioglu, O.; Comoglu, M.; Sozdinler, C.O.; Carrilho, F.; Wächter, J. TRIDEC Cloud—A Web-based Platform for Tsunami Early Warning tested with NEAMWave14 Scenarios. In Proceedings of the EGU General Assembly Conference Abstracts 2015, Vienna, Austria, 12–17 April 2015. [Google Scholar]
- TRIDEC Cloud. Available online: https://trideccloud.gfz-potsdam.de/ (accessed on 17 November 2021).
- Heidarzadeh, M.; Necmioglu, Ö.; Ishibe, T.; Yalciner, A.C. Bodrum–Kos (Turkey–Greece) Mw 6.6 earthquake and tsunami of 20 July 2017: A test for the Mediterranean tsunami warning system. Geosci. Lett. 2017, 4, 31. [Google Scholar] [CrossRef] [Green Version]
- Necmioğlu, Ö.; Yalçıner, A.C.; Kalafat, D.; Süzen, L.; Tanırcan, G.; Annunziato, A.; Santini, M.; Güney Doğan, G.; Tüfekçi Enginar, D.; Güneş, Y.; et al. Addressing Challenges and Requirements for Local Tsunami Awareness, Warning and Mitigation: A “Last Mile” Case Study for Bodrum-Turkey. In Proceedings of the 5th International Conference on Earthquake Engineering and Seismology, Ankara, Turkey, 8–11 October 2019. [Google Scholar]
- Papadopoulos, G.A.; Fokaefs, A. Near-field tsunami early warning and emergency planning in the Mediterranean Sea. Res. Geophys. 2013, 3, 24–31. [Google Scholar] [CrossRef]
- Necmioğlu, Ö. Design and challenges for a tsunami early warning system in the Marmara Sea. Earth Planets Space 2016, 68, 13. [Google Scholar] [CrossRef] [Green Version]
- Cetin, K.O.; Mylonakis, G.; Sextos, A.; Stewart, J. (Eds.) Seismological and Engineering Effects of the M 7.0 Samos Island (Aegean Sea) Earthquake. 2020. Available online: https://www.researchgate.net/publication/348277359_Seismological_and_Engineering_Effects_of_the_M_70_Samos_Island_Aegean_Sea_Earthquake (accessed on 31 December 2020).
- Aksoy, M.E. Post-event field observations in the İzmir–Sığacık village for the tsunami of the 30 October 2020 Samos (Greece) Mw 6.9 earthquake. Acta Geophys. 2021, 69, 1113–1125. [Google Scholar] [CrossRef]
- Dogan, G.G.; Yalciner, A.C.; Yuksel, Y.; Ulutas, E.; Polat, O.; Guler, I.; Sahin, C.; Tarih, A.; Kanoglu, U. The 30 October 2020 Aegean Sea Tsunami: Post-Event Field Survey along Turkish Coast. Pure Appl. Geophys. 2021, 178, 785–812. [Google Scholar] [CrossRef]
- Triantafyllou, I.; Gogou, M.; Mavroulis, S.; Lekkas, E.; Papadopoulos, G.A.; Thravalos, M. The Tsunami Caused by the 30 October 2020 Samos (Aegean Sea) Mw7.0 Earthquake: Hydrodynamic Features, Source Properties and Impact Assessment from Post-Event Field Survey and Video Records. J. Mar. Sci. Eng. 2021, 9, 68. [Google Scholar] [CrossRef]
- U.S. Indian Ocean Tsunami Warning System Program (US IOTWS). Tsunami Warning Center Reference Guide Supported by the United States Agency for International Development and Partners; The United States Agency for International Development: Bangkok, Thailand, 2007; 311p. [Google Scholar]
- Wang, Y.; Heidarzadeh, M.; Satake, K.; Mulia, E.I.; Yamada, M. A Tsunami Warning System Based on Offshore Bottom Pressure Gauges and Data Assimilation for Crete Island in the Eastern Mediterranean Basin. JGR Solid Earth 2020, 125, e2020JB020293. [Google Scholar] [CrossRef]
- Necmioglu, F.; Turhan, D.S. Cambaz: A Comparison of Tsunami Warning through Decision Matrix, Pre-calculated Tsunami Scenario Database and Near-Real Time Tsunami Modelling: The Case of 30 October 2020 Mw6.9 Earthquake. In Proceedings of the 6th International Conference on Earthquake Engineering and Seismology (6th ICEES), Gebze, Turkey, 13–15 October 2021. [Google Scholar]
- Selva, J.; Lorito, S.; Volpe, M.; Romano, F.; Tonini, R.; Perfetti, P.; Bernardi, F.; Taroni, M.; Scala, A.; Babeyko, A.; et al. Probabilistic tsunami forecasting for early warning. Nat. Commun. 2021, 12, 5677. [Google Scholar] [CrossRef] [PubMed]
- Behrens, J. How to Handle Diverging TSP Warning Messages and Know about the Inherent Uncertainty. In Proceedings of the 14th Session of ICG/NEAMTWS, Lisbon, Portugal, 21–23 November 2017; Available online: http://legacy.ioc-unesco.org/index.php?option=com_oe&task=viewDocumentRecord&docID=20623 (accessed on 17 November 2021).
Mwp ≥ 6.0 LOCATION OFFSHORE or ≤100 KM INLAND DEPTH ≥ 100 KM | ISSUE INFORMATION FOR LOCAL, REGIONAL AND BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 60 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
5.5 ≤ mb or Mwp ≤ 5.9 LOCATION OFFSHORE or ≤40 KM INLAND DEPTH < 100 KM | ISSUE INFORMATION FOR LOCAL, REGIONAL AND BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 60 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
6.0 ≤ Mwp ≤ 6.4 LOCATION 40–100 INLAND DEPTH < 100 KM | ISSUE INFORMATION FOR LOCAL, REGIONAL AND BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 60 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
6.0 ≤ Mwp ≤ 6.4 LOCATION OFFSHORE or ≤40 KM INLAND DEPTH < 100 KM | ISSUE ADVISORY FOR LOCAL AND INFORMATION FOR REGIONAL AND BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 120 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
6.5 ≤ Mw ≤ 6.9 LOCATION ≤ 100 KM INLAND DEPTH < 100 KM | ISSUE WATCH FOR LOCAL, ADVISORY FOR REGIONAL AND INFORMATION FOR BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 180 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
7.0 ≤ Mw ≤ 7.4 LOCATION ≤ 100 KM INLAND DEPTH < 100 KM | ISSUE WATCH FOR LOCAL AND REGIONAL AND ADVISORY FOR BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 240 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
Mw ≥ 7.5 LOCATION ≤ 100 KM INLAND DEPTH < 100 KM | ISSUE WATCH FOR LOCAL, REGIONAL AND BASIN–WIDE TFPs. MONITOR SEA LEVEL STATIONS AT ALL DISTANCES FOR 360 MIN AND VERIFY WHETHER TSUNAMI IS GENERATED OR NOT. |
MAGNITUDE REVISIONS | IF THE MAGNITUDE IS REVISED, WHICH REQUIRES A NEW MESSAGE WITH A DIFFERENT ALERT LEVEL ISSUE A NEW MESSAGE AFTER 15 MIN OF EARTHQUAKE ORIGIN TIME BASED ON THIS REVISED MAGNITUDE. UPDATE MESSAGE NUMBER MANUALLY AS 002. FOR EXAMPLE, IF THE INITIAL MAGNITUDE IS 6.5 ≤ Mw < 7.0 AND THE REVISED MAGNITUDE IS STILL 6.5 ≤ Mw < 7.0, DO NOT ISSUE A NEW MESSAGE BASED ON MAGNITUDE REVISION. HOWEVER, IF THE INITIAL MAGNITUDE IS 6.5 ≤ Mw < 7.0 AND THE REVISED MAGNITUDE IS Mw 7.0 ≥ OR 6.0 ≤ Mw < 6.5, THEN ISSUE A NEW MESSAGE WITH THE UPDATED ALERT LEVELS. |
SEA–LEVEL OBSERVATIONS | MONITOR SEA–LEVEL STATIONS FOR ALL CASES AS DESCRIBED ABOVE. IF THE SEA LEVEL OBSERVATION CONFIRMS THE TSUNAMI AND VERIFIES THE ALERT LEVEL DETERMINED BY THE INITIAL MESSAGE (FOR EXAMPLE, IF THE ALERT LEVEL IS ADVISORY FOR THE TFP AND THE MEASURED WAVE HEIGHT IS BETWEEN 0.2M AND 0.5M OR IF THE ALERT LEVEL IS WATCH FOR THE TFP AND THE MEASURED WAVE HEIGHT IS HIGHER THAN 0.5M) THEN ISSUE AN ONGOING MESSAGE KEEPING THE SAME ALERT LEVELS DEFINED IN THE INITIAL MESSAGE. IF AT A LATER STAGE A HIGHER WAVE HEIGHT IS OBSERVED AT THE SEA LEVEL STATION EVEN IT DOES NOT CORRESPOND TO A HIGHER ALERT LEVEL, THEN ISSUE AN ONGOING MESSAGE WITH THE UPDATED OBSERVATION. IF THE SEA LEVEL OBSERVATION CONFIRMS THE TSUNAMI BUT THE OBSERVED WAVE HEIGHT CORRESPONDS TO A HIGHER LEVEL OF ALERT (FOR EXAMPLE, IF THE ALERT LEVEL IS ADVISORY FOR THE TFP AND THE MEASURED WAVE HEIGHT IS HIGHER THAN 0.5M), THEN ISSUE AN ONGOING MESSAGE WITH UPDATED ALERT LEVEL. IF THE SEA LEVEL OBSERVATION CONFIRMS THE TSUNAMI BUT THE OBSERVED WAVE HEIGHT CORRESPONDS TO A LOWER LEVEL OF ALERT (FOR EXAMPLE, IF THE ALERT LEVEL IS WATCH FOR THE TFP AND THE MEASURED WAVE HEIGHT IS BETWEEN 0.2M AND 0.5M OR IF THE ALERT LEVEL IS ADVISORY FOR THE TFP AND THE MEASURED WAVE HEIGHT IS LESS THAN 0.2M), THEN ISSUE AN ONGOING MESSAGE KEEPING THE SAME ALERT LEVELS DEFINED IN THE INITIAL MESSAGE. |
CANCELATION MESSAGE | IF A WATCH AND/OR ADVISORY MESSAGE HAS BEEN ISSUED AND TSUNAMI IS NOT VERIFIED WITHIN THE CORRESPONDING TIME FRAME GIVEN ABOVE, THEN ISSUE A CANCELLATION MESSAGE. |
END MESSAGE | IF A WATCH AND/OR ADVISORY MESSAGE HAS BEEN ISSUED AND TSUNAMI IS VERIFIED AND OBSERVED, THEN ISSUE AN END MESSAGE IN CONSULTATION WITH THE CIVIL PROTECTION AGENCY. |
Event # | Message # | Date | UTC Time | Location | Latitude (KOERI) | Longtitude (KOERI) | Latitude (USGS) | Longtitude (USGS) | Δ Epicenter (ΔE) | Δ Hypocenter (ΔH) | Depth (KOERI) | Depth (USGS) | Δ Depth (ΔD) | Magnitude (KOERI-TSP) | Magnitude (USGS) | Δ Magnitude (ΔM) | Alert Level | Latency (min) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
1 | N/A | 9 July 2012 | 13:55 | Eastern Mediterranean | 35.51 | 28.99 | 35.604 | 28.919 | 12.3 | 36.8 | 21.1 | 55.8 | −34.7 | 6.0 ML | 5.6 mww | 0.4 | N/A | N/A |
2 | N/A | 12 September 2012 | 03:27 | Eastern Mediterranean | 34.48 | 23.99 | 34.783 | 24.11 | 35.4 | 41.9 | 10 | 32.4 | −22.4 | 5.5 ML | 5.5 mww | 0.0 | N/A | N/A |
3 | N/A | 23 December 2012 | 13:31 | Black Sea | 42.49 | 41.02 | 42.42 | 41.075 | 9.0 | 13.6 | 5 | 15.2 | −10.2 | 5.8 Mw(mB) | 5.7 mww | 0.1 | N/A | N/A |
4 | 1 | 8 January 2013 | 14:16 | Aegean Sea | 39.66 | 25.53 | 39.656 | 25.54 | 1.0 | 3.0 | 10 | 12.8 | −2.8 | 6.2 ML | 5.7 mww | 0.5 | INFORMATION | 29 |
5 | 2 | 17 January 2013 | 21:17 | Egypt | 31.75 | 30.45 | 32.027 | 30.624 | 34.9 | 36.3 | 10 | 20.0 | −10 | 5.5 Mw(mB) | 4.9 mb | 0.6 | INFORMATION | 9 |
6 | 3 | 17 February 2013 | 03:12 | Ionian Sea | 37.33 | 20.74 | 37.329 | 20.74 | 0.1 | 6.4 | 10 | 3.6 | 6.4 | 5.4 | 4.9 mb | 0.5 | INFORMATION | 6 |
7 | 4 | 15 June 2013 | 16:11 | Crete | 34.19 | 24.88 | 34.4 | 25.02 | 26.7 | 26.7 | 10 | 10.0 | 0 | 6.0 Mw (mB) | 6.2 Mwp | 0.2 | INFORMATION | 6 |
8 | 5 | 16 June 2013 | 21:39 | Crete | 34.16 | 24.97 | 34.347 | 25.159 | 27.1 | 28.6 | 10 | 19.0 | −9 | 5.9 Mw (mB) | 6.0 mww | 0.1 | INFORMATION | 6 |
9 | 6 | 12 October 2013 | 13:11 | Greece | 35.56 | 23.31 | 35.5142 | 23.2523 | 7.3 | 10.1 | 47 | 40.0 | 7 | 6.4 Mw | 6.6 mww | 0.2 | WATCH | 14 |
10 | 7 | 28 December 2013 | 15:21 | Antalya Bay—Turkey | 35.95 | 31.27 | 36.028 | 31.31 | 9.4 | 32.1 | 10 | 40.7 | −30.7 | 6.1 Mwp | 5.9 mww | 0.2 | INFORMATION | 6 |
11 | 8 | 24 May 2014 | 09:25 | Aegean Sea | 40.24 | 25.33 | 40.2893 | 25.3889 | 7.4 | 18.2 | 23 | 6.4 | 16.57 | 6.6 Mw | 6.9 Mw | 0.3 | WATCH | 18 |
12 | 9 | 29 August 2014 | 03:45 | Aegean Sea | 36.63 | 23.54 | 36.685 | 23.706 | 16.0 | 17.1 | 86 | 80.0 | 6 | 5.6 Mw | 5.8 mww | 0.2 | INFORMATION | 9 |
13 | 10 | 16 April 2015 | 18:07 | Crete | 35.06 | 26.88 | 35.1891 | 26.8235 | 15.2 | 15.6 | 16.5 | 20.0 | −3.5 | 6.2 Mw | 6.0 mww | 0.2 | INFORMATION | 6 |
14 | 11 | 12 June 2017 | 12:28 | Lesbos | 38.83 | 26.32 | 38.9296 | 26.365 | 11.7 | 11.9 | 10 | 12.0 | -2 | 6.3 Mwp | 6.3 mww | 0.0 | ADVISORY | 10 |
15 | 12 | 20 July 2017 | 22:31 | Bodrum-Kos | 36.96 | 27.51 | 36.9293 | 27.4139 | 9.2 | 10.0 | 11 | 7.0 | 4 | 6.6 Mw | 6.6 mww | 0.0 | WATCH | 19 |
16 | 13 | 5 February 2019 | 02:26 | Albania | 39.07 | 20.54 | 39.052 | 20.5868 | 4.5 | 5.0 | 10 | 7.7 | 2.27 | 5.6 Mw | 5.4 mww | 0.2 | INFORMATION | 5 |
17 | 14 | 20 March 2019 | 06:34 | Aydın-Turkey | 37.45 | 29.43 | 37.4078 | 29.531 | 10.1 | 14.9 | 19 | 8.0 | 11 | 5.8 Mwp | 5.7 mww | 0.1 | INFORMATION | 13 |
18 | 15 | 1 June 2019 | 04:26 | Greece-Albania | 40.48 | 20.51 | 40.5257 | 20.7025 | 17.1 | 17.1 | 10 | 10.0 | 0 | 5.5 Mwp | 5.2 mww | 0.3 | INFORMATION | 8 |
19 | 16 | 19 July 2019 | 11:13 | Greece | 38.11 | 23.51 | 38.0951 | 23.5251 | 2.1 | 10.2 | 20 | 10.0 | 10 | 5.5 Mwp | 5.3 mww | 0.2 | INFORMATION | 9 |
20 | 17 | 21 September 2019 | 14:04 | Albania | 41.34 | 19.42 | 41.3375 | 19.5303 | 9.2 | 9.2 | 20 | 20.0 | 0 | 5.8 Mw | 5.6 mww | 0.2 | INFORMATION | 9 |
21 | 18 | 26 September 2019 | 10:59 | Marmara Sea | 40.83 | 28.17 | 40.9035 | 28.1502 | 8.3 | 8.6 | 10 | 8.0 | 2 | 5.7 Mwp | 5.7 mww | 0.0 | INFORMATION | 8 |
22 | 19 | 26 November 2019 | 02:54 | Albania | 41.39 | 19.41 | 41.5138 | 19.5256 | 16.8 | 20.6 | 10 | 22.0 | −12 | 6.5 Mwp | 6.4 mww | 0.1 | WATCH | 6 |
23 | 20 | 27 November 2019 | 07:23 | Crete | 35.53 | 23.11 | 35.7174 | 23.2284 | 23.4 | 23.5 | 71 | 69.0 | 2 | 6.1 Mwp | 6.0 mww | 0.1 | ADVISORY | 9 |
24 | 21 | 10 December 2019 | 21:58 | Crete | 35.1 | 26.34 | 35.4972 | 26.4467 | 45.2 | 52.0 | 83.5 | 57.9 | 25.6 | 5.7 Mw | 5.4 mww | 0.3 | INFORMATION | 9 |
25 | 22 | 30 January 2020 | 01:28 | Dodecanese Islands | 35.13 | 27.94 | 35.1565 | 27.8845 | 5.8 | 5.8 | 10 | 10.0 | 0 | 6.1 Mwp | 5.5 mww | 0.6 | ADVISORY | 7 |
26 | 23 | 30 January 2020 | 11:21 | Dodecanese Islands | 35.08 | 27.79 | 35.1817 | 27.7814 | 11.3 | 11.3 | 10 | 10.0 | 0 | 5.8 Mwp | 5.7 mww | 0.1 | INFORMATION | 8 |
27 | 24 | 21 March 2020 | 00:49 | Greece-Albania | 39.41 | 20.48 | 39.3567 | 20.6383 | 14.8 | 14.8 | 10 | 10.0 | 0 | 5.8 Mwp | 5.7 mww | 0.1 | INFORMATION | 6 |
28 | 25 | 2 May 2020 | 12:51 | Crete | 34.06 | 25.67 | 34.1818 | 25.7101 | 14.0 | 14.0 | 10 | 10.0 | 0 | 6.7 Mwp | 6.5 mww | 0.2 | ADVISORY | 12 |
29 | N/A | 18 May 2020 | 23:22 | Crete | 34.14 | 25.53 | 34.1855 | 25.5173 | 5.2 | 7.2 | 5 | 10.0 | −5 | 5.6 Mwp | 5.7 mww | 0.1 | N/A | N/A |
30 | 26 | 20 May 2020 | 23:43 | Crete | 35.07 | 20.25 | 35.1594 | 20.2775 | 10.3 | 10.8 | 10 | 13.5 | −3.5 | 5.7 Mwp | 5.7 mww | 0.0 | INFORMATION | 8 |
31 | 27 | 18 September 2020 | 16:28 | Crete | 34.71 | 25.18 | 35.0368 | 25.3034 | 38.0 | 39.1 | 35 | 44.0 | −9 | 5.8 Mwp | 5.9 mww | 0.1 | INFORMATION | 7 |
32 | 28 | 30 October 2020 | 11:51 | Samos Island | 37.89 | 26.83 | 37.8973 | 26.7838 | 4.1 | 11.8 | 10 | 21.0 | −11 | 7.0 Mwp | 7.0 mww | 0.0 | WATCH | 11 |
33 | 29 | 3 March 2021 | 10:16 | Greece | 39.8 | 22.16 | 39.7546 | 22.1757 | 5.2 | 5.6 | 10 | 8.0 | 2 | 6.3 Mwp | 6.3 mww | 0.0 | INFORMATION | 9 |
34 | 30 | 21 June 2021 | 22:14 | Dodecanese Islands | 36.37 | 27.08 | 36.4391 | 27.0416 | 8.4 | 8.9 | 12 | 9.0 | 3.0 | 5.6 Mwp | 5.5 mww | 0.1 | INFORMATION | 8 |
35 | 31 | 1 August 2021 | 04:31 | Dodecanese Islands | 36.34 | 27.06 | 36.3958 | 27.0112 | 7.6 | 10.2 | 17 | 10.1 | 6.9 | 5.8 Mwp | 5.6 mww | 0.2 | INFORMATION | 8 |
36 | 32 | 27 September 2021 | 06:17 | Crete | 35.17 | 25.22 | 35.244 | 25.2697 | 9.4 | 10.2 | 10 | 6.0 | 4 | 6.1 Mwp | 6.0 mww | 0.1 | ADVISORY | 13 |
37 | 33 | 12 October 2021 | 09:24 | Crete | 34.91 | 26.26 | 35.1693 | 26.2163 | 29.1 | 29.5 | 15 | 20.0 | −5 | 6.2 Mwp | 6.4 mww | 0.2 | ADVISORY | 6 |
38 | 34 | 19 October 2021 | 05:32 | Crete | 34.46 | 28.35 | 34.5883 | 28.3882 | 14.7 | 34.8 | 10 | 41.5 | −31.5 | 6.0 Mwp | 5.9 mww | 0.1 | INFORMATION | 9 |
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Necmioğlu, Ö.; Turhan, F.; Özer Sözdinler, C.; Yılmazer, M.; Güneş, Y.; Cambaz, M.D.; Altuncu Poyraz, S.; Ergün, T.; Kalafat, D.; Özener, H. KOERI’s Tsunami Warning System in the Eastern Mediterranean and Its Connected Seas: A Decade of Achievements and Challenges. Appl. Sci. 2021, 11, 11247. https://doi.org/10.3390/app112311247
Necmioğlu Ö, Turhan F, Özer Sözdinler C, Yılmazer M, Güneş Y, Cambaz MD, Altuncu Poyraz S, Ergün T, Kalafat D, Özener H. KOERI’s Tsunami Warning System in the Eastern Mediterranean and Its Connected Seas: A Decade of Achievements and Challenges. Applied Sciences. 2021; 11(23):11247. https://doi.org/10.3390/app112311247
Chicago/Turabian StyleNecmioğlu, Öcal, Fatih Turhan, Ceren Özer Sözdinler, Mehmet Yılmazer, Yavuz Güneş, Musavver Didem Cambaz, Selda Altuncu Poyraz, Tuğçe Ergün, Doğan Kalafat, and Haluk Özener. 2021. "KOERI’s Tsunami Warning System in the Eastern Mediterranean and Its Connected Seas: A Decade of Achievements and Challenges" Applied Sciences 11, no. 23: 11247. https://doi.org/10.3390/app112311247
APA StyleNecmioğlu, Ö., Turhan, F., Özer Sözdinler, C., Yılmazer, M., Güneş, Y., Cambaz, M. D., Altuncu Poyraz, S., Ergün, T., Kalafat, D., & Özener, H. (2021). KOERI’s Tsunami Warning System in the Eastern Mediterranean and Its Connected Seas: A Decade of Achievements and Challenges. Applied Sciences, 11(23), 11247. https://doi.org/10.3390/app112311247