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      KCI등재 SCOPUS SCIE

      Earthquake source characterization, moment tensor solutions, and stress field of small–moderate earthquakes occurred in the northern Red Sea Triple Junction

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      https://www.riss.kr/link?id=A104624284

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      다국어 초록 (Multilingual Abstract)

      We estimated moment tensor and centroid depth of eight small/moderate local earthquakes occurred between 2011 and 2013 in the northern Red Sea Triple Junction using a moment tensor inversion of near-source waveform data recorded by very broadband stations of the Egyptian National Seismic Network (ENSN). We also estimated the focal mechanism using the P-wave polarity data set and then compared it with the moment tensor inversion results. The moment tensor solutions are consistent with the focal mechanism obtained from the P-wave polarity data. We also estimated the stress field in the study area using the Multiple Inverse Method (MIM). Our results indicate that the axis of the minimum principal stress is a nearly horizontal NE-SW direction, while the axis of the maximum principal stress is nearly vertical. The direction of the minimum principal stress is consistent with the opening direction of the northern Red Sea zone, where the southern part of Gulf of Suez is currently under an extensional stress field with a NE-SW trending horizontal extension. These results are compatible with the kinematics of the Red Sea-Gulf of Suez rift.
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      We estimated moment tensor and centroid depth of eight small/moderate local earthquakes occurred between 2011 and 2013 in the northern Red Sea Triple Junction using a moment tensor inversion of near-source waveform data recorded by very broadband stat...

      We estimated moment tensor and centroid depth of eight small/moderate local earthquakes occurred between 2011 and 2013 in the northern Red Sea Triple Junction using a moment tensor inversion of near-source waveform data recorded by very broadband stations of the Egyptian National Seismic Network (ENSN). We also estimated the focal mechanism using the P-wave polarity data set and then compared it with the moment tensor inversion results. The moment tensor solutions are consistent with the focal mechanism obtained from the P-wave polarity data. We also estimated the stress field in the study area using the Multiple Inverse Method (MIM). Our results indicate that the axis of the minimum principal stress is a nearly horizontal NE-SW direction, while the axis of the maximum principal stress is nearly vertical. The direction of the minimum principal stress is consistent with the opening direction of the northern Red Sea zone, where the southern part of Gulf of Suez is currently under an extensional stress field with a NE-SW trending horizontal extension. These results are compatible with the kinematics of the Red Sea-Gulf of Suez rift.

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      참고문헌 (Reference)

      1 Abd el-aal, A. K., "Very broadband seismic background noise analysis of permanent good vaulted seismic stations" 17 : 223-237, 2013

      2 Dreger, D. S., "Time domain moment tensor inverse program. Berkley Automatic Seismic Moment Tensor Code 1.0"

      3 Hanks, T.C., "The use of body-wave spectra in the determination of seismic-source parameters" 62 : 561-589, 1972

      4 Fairhead, J.D., "The seismicity of the Red Sea, Gulf of Aden and Afar Tiangle" 267 : 49-74, 1970

      5 Ambraseys, N. N., "The seismicity of Egypt, Arabia and the Red Sea" Cambridge University Press 181-, 1994

      6 Cochron, J. R., "The northern Red Sea: nucleation of an oceanic spreading center within a continental rift" 6 : 1-34, 2005

      7 Jarriage, J., "The multistage tectonic evolution of the Gulf of Suez-Northern Red sea continental rift from field observations" 9 : 441-465, 1990

      8 Yamaji, A., "The multiple inverse method: A new technique to separate stresses from heterogeneous fault-slip data" 22 : 441-452, 2000

      9 Kebeasy, R., "The Geology of Egypt" A.A. Balkerma 51-59, 1990

      10 Moores, E.M., "Tectonics" W.H. Freeman and Co. 415-, 1995

      1 Abd el-aal, A. K., "Very broadband seismic background noise analysis of permanent good vaulted seismic stations" 17 : 223-237, 2013

      2 Dreger, D. S., "Time domain moment tensor inverse program. Berkley Automatic Seismic Moment Tensor Code 1.0"

      3 Hanks, T.C., "The use of body-wave spectra in the determination of seismic-source parameters" 62 : 561-589, 1972

      4 Fairhead, J.D., "The seismicity of the Red Sea, Gulf of Aden and Afar Tiangle" 267 : 49-74, 1970

      5 Ambraseys, N. N., "The seismicity of Egypt, Arabia and the Red Sea" Cambridge University Press 181-, 1994

      6 Cochron, J. R., "The northern Red Sea: nucleation of an oceanic spreading center within a continental rift" 6 : 1-34, 2005

      7 Jarriage, J., "The multistage tectonic evolution of the Gulf of Suez-Northern Red sea continental rift from field observations" 9 : 441-465, 1990

      8 Yamaji, A., "The multiple inverse method: A new technique to separate stresses from heterogeneous fault-slip data" 22 : 441-452, 2000

      9 Kebeasy, R., "The Geology of Egypt" A.A. Balkerma 51-59, 1990

      10 Moores, E.M., "Tectonics" W.H. Freeman and Co. 415-, 1995

      11 Brune, J. N., "Tectonic stress and the spectra of seismic shear waves from earthquakes" 75 : 4997-5009, 1970

      12 Lyberis, N., "Tectonic evolution of the Gulf of Suez and the Gulf of Aqaba" 153 : 209-220, 1988

      13 Angelier, J., "Tectonic analysis of fault slip data sets" 89 : 5835-5848, 1984

      14 Ben-Avraham, Z., "Structural framework of the Gulf of Aqaba, Northern Red Sea" 90 : 703-726, 1985

      15 Vasseur, G., "Stress state inferred from multiple focal mechanisms" 1 : 291-298, 1983

      16 Fukao, Y., "Source retrieval for mantel earthquakes by iterative deconvolution of long-period P-wave" 144 : 249-269, 1987

      17 Yagi, Y., "Source process of the May 2008 Wenchuan China, earthquake determined by waveform inversion of teleseismic body waves with a data covariance matrix" 64 : 13-16, 2012

      18 El Hadidy, S., "Source process of the 1992 Cairo, Egypt earthquake using far field seismogram. Report for the course of seismology 1992–1993" IISEE 25-, 1993

      19 Abd el-aal, A. K., "Simulating time-histories and pseudo-spectral accelerations from the 1992 Cairo Earthquake at the proposed El-Fayoum new city site, Egypt" 45 : 1025-1042, 2008

      20 Al-Zoubi, A., "Seismic reflection profiles across the southern Dead Sea basin" 346 : 61-69, 2002

      21 Ahern, T. K., "SEED format version 2.3reference manual"

      22 Japanese Expert Team, "Report of Japan Disaster Relief Team on the earthquake in Arab Republic of Egypt of October 12, 1992" 150-, 1993

      23 Makris, J., "Pull-apar evolution of the Red Sea" 15 : 127-134, 1992

      24 Hussein, H. M., "Present-day tectonic stress regime in Egypt and surrounding area based on inversion of earthquake focal mechanisms" 81 : 1-15, 2013

      25 Joffe, S., "Plate kinematics of the circum Red Sea – a revaluation" 141 : 5-22, 1987

      26 Bosworth, W, "Peri-Tethys Memoir 6: Peri-Tethys rift/wrench basins and passive margins" 567-606, 2001

      27 Abdel-Fattah, A. K., "Normal faulting mechanisms in the Western Desert of Egypt" 11 : 27-38, 2007

      28 Abd el-aal, A.K., "New seismic noise models obtained using very broadband stations" 170 : 1849-1857, 2013

      29 Yagi, Y., "Moment tensor inversion of near source seismograms" 45 : 133-138, 2011

      30 Abd el-aal, A. K., "Modeling of seismic hazard at the northeastern part of greater Cairo metropolitan area, Egypt" 7 : 75-90, 2010

      31 Kikuchi, M., "Inversion of complex body wave-III" 81 : 2335-2350, 1991

      32 Yagi, Y., "Introduction of uncertainty of Green’s function into waveform inversion for seismic source processes" 186 : 711-720, 2012

      33 Abd el-aal, A. K., "Ground motion prediction from nearest seismogenic zones in and around Greater Cairo Area, Egypt" 10 : 1495-1511, 2010

      34 Ambraseys, N. N., "Far-field effects of Eastern Mediterranean earthquakes in Lower Egypt" 5 : 263-268, 2001

      35 Angelier, J., "Extension and rifting: the Zeit region, Gulf of Suez" 7 : 605-612, 1985

      36 Gilbert, F., "Excitation of the normal modes of the Earth by earthquakes and explosions" 22 : 223-226, 1970

      37 Angelier, J., "Determination of the mean principal directions of stresses for a given fault population" 5 : 17-26, 1979

      38 Dziewonski, A. M., "Determination of earthquake source parameters from waveform data for studies of global and regional seismicity" 86 : 2825-2852, 1981

      39 Boatwright, J., "Detailed spectral analysis of two small New York state earthquakes" 69 : 49-79, 1978

      40 Makris, J., "Deep seismic sounding in Egypt. Unpublished technical report, Part I" Institute of Geophysics, University of Hamburg 20-, 1979

      41 Chu, D., "Current plate motions across the Red Sea" 135 : 313-328, 1998

      42 El Hadidy, S., "Crustal structure and its related causative tectonics in Northern Egypt using geophysical data" Ain Shams University 1995

      43 Gephart, J.W., "An improved method for determining the regional stress tensor using earthquake focal mechanism data: Application to the San Fernando earthquake sequence" 89 : 9305-9320, 1984

      44 Delvaux, D., "African stress pattern from formal inversion of focal mechanism data" 482 : 105-128, 2010

      45 Abou Elenean, K. M., "A study of the seismotectonics of Egypt and relation to the Mediterranean and Red Seas tectonics" Ain Shams University 1997

      46 Jost, M.L., "A student’s guide to and review of moment tensors" 60 : 37-57, 1989

      47 Boatwright, J., "A spectral theory for circular seismic sources: simple estimates of source dimension, dynamic stress drop and radiated energy" 70 : 1-27, 1980

      48 Hanks, T.C., "A moment-magnitude scale" 84 : 2348-2350, 1979

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2000-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.98 0.27 0.74
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.68 0.59 0.424 0.15
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