SEISMIC HAZARD ANALYSIS WITH RANDOMLY LOCATED SOURCES

被引:4
作者
YUCEMEN, MS [1 ]
GULKAN, P [1 ]
机构
[1] MIDDLE EAST TECH UNIV,EARTHQUAKE ENGN RES CTR,ANKARA 06531,TURKEY
关键词
SEISMIC HAZARD; RANDOM SOURCE LOCATION; RANDOM BOUNDARY; SOURCE ZONE BOUNDARY; SEISMIC SOURCES; UNCERTAINTY; EARTHQUAKES; STATISTICAL ANALYSIS;
D O I
10.1007/BF00662600
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Demarcation of areal and linear seismic sources involves a certain degree of uncertainty and this should be reflected in the final seismic hazard results. The uncertainty associated with the description of the geographical coordinates of a source zone boundary is modeled by introducing the concept of 'random boundary', where the location of the boundary is assumed to exhibit a spatial bivariate Gaussian distribution. Here the mean vector denotes the best estimate of location and the variance reflects the magnitude of location uncertainty, which may be isotropic or may show spatial directivity. The consideration of spatial randomness in the boundaries smooths the seismicity parameters and permits the gradual transitions of these to occur across border zones. Seismic sources modeled as lines can also be attributed random geometrical properties. The sensitivity of seismic hazard results to the isotropic and direction dependent location uncertainty is examined on the basis of hypothetical case studies. Area and line source location uncertainties are examined separately because they are reflected in the eventual outcome of the analyses in a complicated manner. The effect of random source zone boundaries on the expected peak ground acceleration is tested for a specific site in Turkey by conducting a comprehensive seismic hazard analysis.
引用
收藏
页码:215 / 233
页数:19
相关论文
共 50 条
[41]   Probabilistic seismic hazard analysis for Bagan (Myanmar) [J].
Gogen, Buesra ;
Karimzadeh, Shaghayegh ;
Lourenco, Paulo B. .
ACTA GEOPHYSICA, 2024, 72 (04) :2193-2221
[42]   Probabilistic seismic hazard analysis of New Zealand [J].
Stirling, MW ;
Wesnousky, SG ;
Berryman, KR .
NEW ZEALAND JOURNAL OF GEOLOGY AND GEOPHYSICS, 1998, 41 (04) :355-375
[43]   Seismic Hazard Analysis for Jayapura City, Papua [J].
Robiana, R. ;
Cipta, A. .
4TH INTERNATIONAL SYMPOSIUM ON EARTHQUAKE AND DISASTER MITIGATION 2014 (ISEDM 2014), 2015, 1658
[44]   A Zoneless Approach for Probabilistic Seismic Hazard Analysis [J].
Hing-Ho Tsang .
华南地震, 2009, 29(S1) (S1) :50-59
[45]   Data needs for improved seismic hazard analysis [J].
Anderson, JG ;
Brune, JN ;
Anooshehpoor, A ;
Purvance, MD .
DIRECTIONS IN STRONG MOTION INSTRUMENTATION, 2005, 58 :1-24
[46]   A Bayesian seismic hazard analysis for the city of Naples [J].
Faenza, Licia ;
Pierdominici, Simona ;
Hainzl, Sebastian ;
Cinti, Francesca Romana ;
Sandri, Laura ;
Selva, Jacopo ;
Tonini, Roberto ;
Perfetti, Paolo .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 2017, 122 (03) :1990-2012
[47]   Hazard analysis of seismic submarine slope instability [J].
Rodriguez-Ochoa, Rafael ;
Nadim, Farrokh ;
Cepeda, Jose M. ;
Hicks, Michael A. ;
Liu, Zhongqiang .
GEORISK-ASSESSMENT AND MANAGEMENT OF RISK FOR ENGINEERED SYSTEMS AND GEOHAZARDS, 2015, 9 (03) :128-147
[48]   Seismic hazard analysis of Adjara region in Georgia [J].
N. Jorjiashvili ;
M. Elashvili ;
M. Gigiberia ;
I. Shengelia .
Natural Hazards, 2016, 81 :745-758
[49]   On unified analysis of uncertainty in seismic hazard assessment [J].
胡聿贤,陈汉尧 .
Acta Seismologica Sinica(English Edition), 1994, (04) :629-636
[50]   Approach for combining fault and area sources in seismic hazard assessment: application in south-eastern Spain [J].
Rivas-Medina, Alicia ;
Benito, Belen ;
Miguel Gaspar-Escribano, Jorge .
NATURAL HAZARDS AND EARTH SYSTEM SCIENCES, 2018, 18 (11) :2809-2823